BENZAMIDE COMPOUNDS AND THEIR USE AS HERBICIDES

Information

  • Patent Application
  • 20200369629
  • Publication Number
    20200369629
  • Date Filed
    November 28, 2018
    6 years ago
  • Date Published
    November 26, 2020
    4 years ago
Abstract
The present invention relates to benzamide compounds of formula (I), their N-oxides and salts thereof and to compositions comprising the same. The invention also relates to the use of the benzamide compounds or of the compositions comprising such compounds for controlling unwanted vegetation. Furthermore, the invention relates to methods of applying such compounds. In formula (I), the variables have the following meanings: R1 is Cl or CH3; R2 is selected from the group consisting of halogen, CF3, S—CH3, S(O)—CH3 and S(O)2—CH3; R3 is selected from the group consisting of C1-C6-alkyl, C1-C6-haloalkyl and C3-C10-cycloalkyl-Z—, where Z is a covalent bond or CH2.
Description

The present invention relates to benzamide compounds and salts thereof and to compositions comprising the same. The invention also relates to the use of the benzamide compounds or of the compositions comprising such compounds for controlling unwanted vegetation. Furthermore, the invention relates to methods of applying such compounds.


For the purposes of controlling unwanted vegetation, especially in crops, there is an ongoing need for new herbicides which have high activities and selectivities together with a substantial lack of toxicity for humans and animals.


WO 2012/028579 describes N-(tetrazol-4-yl)- and N-(triazol-3-yl)arylcarboxylic acid amides carrying 3 substituents in the 2-, 3- and 4-positions of the aryl ring and their use as herbicides.


WO2013/017559 describes N-(tetrazol-5-yl)- and N-(triazol-5-yl)arylcarboxylic acid amides carrying 3 substituents in the 2-, 3- and 4-positions of the aryl ring and their use as herbicides.


WO2015/052153 describes N-(tetrazol-5-yl)- and N-(triazol-5-yl)arylcarboxylic acid amides carrying at least 2 substituents in the 2- and 6-positions of the aryl ring and a further substituent on the amide nitrogen and their use as herbicides.


WO2017/102275 describes N-(tetrazol-5-yl)- and N-(triazol-5-yl)benzamides carrying a urea group in 3-position and two further substituents in the 2- and 6-positions of the aryl ring, and their use as herbicides.


The compounds of the prior art often suffer from insufficient herbicidal activity in particular at low application rates and/or unsatisfactory selectivity resulting in a low compatibility with crop plants.


Accordingly, it is an object of the present invention to provide further benzamide compounds having a strong herbicidal activity, in particular even at low application rates, a sufficiently low toxicity for humans and animals and/or a high compatibility with crop plants. The benzamide compounds should also show a broad activity spectrum against a large number of different unwanted plants.


These and further objectives are achieved by the compounds of formula (I) defined below and their agriculturally suitable salts.


Therefore, in a first aspect the present invention relates to compounds of formula (I),




embedded image


wherein

    • R1 is Cl or CH3;
    • R2 is selected from the group consisting of halogen, CF3, S—CH3, S(O)—CH3 and S(O)2—CH3;
    • R3 is selected from the group consisting of C1-C6-alkyl, C1-C6-haloalkyl and C3-C10-cycloalkyl-Z—, where Z is a covalent bond or CH2;
    • to their N-oxides and to the agriculturally suitable salts thereof.


The compounds of the present invention, i.e. the compounds of formula (I) and their agriculturally suitable salts, are particularly useful for controlling unwanted vegetation. Therefore, the invention also relates to the use of a compound of formula (I) or an agriculturally suitable salt thereof or of a composition comprising at least one compound of formula (I) or an agriculturally suitable salt thereof for combating or controlling unwanted vegetation.


The invention also relates to a composition comprising at least one compound of formula (I), or a salt thereof, and at least one auxiliary. In particular, the invention relates to an agricultural composition comprising at least one compound of formula (I) or an agriculturally suitable salt thereof, and at least one auxiliary customary for crop protection formulations.


The present invention also relates to a method for combating or controlling unwanted vegetation, which method comprises allowing a herbicidally effective amount of at least one compound of formula (I) or a salt thereof, to act on unwanted plants, their seed and/or their habitat.


Depending on the kind of R3, the compounds of formula (I) may have one or more centers of chirality, in which case they are present as mixtures of enantiomers or diastereomers. Just by way of example, if R3 is 1-methylpropyl (sec-butyl), the carbon atom of the propyl group which carries the methyl group is a stereogenic center. The invention provides both the pure enantiomers or pure diastereomers of the compounds of formula (I), and their mixtures and the use according to the invention of the pure enantiomers or pure diastereomers of the compound of formula (I) or its mixtures. Suitable compounds of formula (I) also include all possible geometrical stereoisomers (cis/trans isomers) and mixtures thereof. Cis/trans isomers may be present with respect to an alkene, carbon-nitrogen double-bond, nitrogen-sulfur double bond or amide group. The term “stereoisomer(s)” encompasses both optical isomers, such as enantiomers or diastereomers, the latter existing due to more than one center of chirality in the molecule, as well as geometrical isomers (cis/trans isomers).


The present invention moreover relates to compounds as defined herein, wherein one or more of the atoms depicted in formula (I) have been replaced by its stable, preferably non-radioactive isotope (e.g., hydrogen by deuterium, 12C by 13 C, 14N by 15N, 16O by 18O) and in particular wherein at least one hydrogen atom has been replaced by a deuterium atom. Of course, the compounds according to the invention contain more of the respective isotope than this naturally occurs and thus is anyway present in the compounds of formula (I).


The compounds of the present invention may be amorphous or may exist in one ore more different crystalline states (polymorphs) which may have different macroscopic properties such as stability or show different biological properties such as activities. The present invention includes both amorphous and crystalline compounds of formula (I), their enantiomers or diastereomers, mixtures of different crystalline states of the respective compound of formula (I), its enantiomers or diastereomers, as well as amorphous or crystalline salts thereof.


Salts of the compounds of the present invention are preferably agriculturally suitable salts. They can be formed in a customary method, e.g. by reacting the compound with an acid if the compound of the present invention has a basic functionality or by reacting the compound with a suitable base if the compound of the present invention has an acidic functionality.


Useful agriculturally suitable salts are especially the salts of those cations or the acid addition salts of those acids whose cations and anions, respectively, do not have any adverse effect on the herbicidal action of the compounds according to the present invention. Suitable cations are in particular the ions of the alkali metals, preferably lithium, sodium and potassium, of the alkaline earth metals, preferably calcium, magnesium and barium, and of the transition metals, preferably manganese, copper, zinc and iron, and also ammonium (NH4+) and substituted ammonium in which one to four of the hydrogen atoms are replaced by C1-C4-alkyl, C1-C4-hydroxyalkyl, C1-C4-alkoxy, C1-C4-alkoxy-C1-C4-alkyl, hydroxy-C1-C4-alkoxy-C1-C4-alkyl, phenyl or benzyl. Examples of substituted ammonium ions comprise methylammonium, isopropylammonium, dimethylammonium, diisopropylammonium, trimethylammonium, tetramethylammonium, tetraethylammonium, tetrabutylammonium, 2-hydroxyethylammonium, 2-(2-hydroxyethoxy)ethylammonium, bis(2-hydroxyethyl)ammonium, benzyltrimethylammonium and benzl-triethylammonium, furthermore phosphonium ions, sulfonium ions, preferably tri(C1-C4-alkyl)sulfonium, and sulfoxonium ions, preferably tri(C1-C4-alkyl)sulfoxonium.


Anions of useful acid addition salts are primarily chloride, bromide, fluoride, hydrogensulfate, sulfate, dihydrogenphosphate, hydrogenphosphate, phosphate, nitrate, bicarbonate, carbonate, hexafluorosilicate, hexafluorophosphate, benzoate, and the anions of C1-C4-alkanoic acids, preferably formate, acetate, propionate and butyrate. They can be formed by reacting compounds of the present invention with an acid of the corresponding anion, preferably with hydrochloric acid, hydrobromic acid, sulfuric acid, phosphoric acid or nitric acid.


The N-oxides of compounds I are compounds in which a nitrogen atom, e.g. a ring nitrogen atom of the tetrazole ring, is present in oxidized form, i.e. as a group N+—O—. The N-oxides are generally prepared by oxidation of the compound of formula I, e.g. with hydrogen peroxide or peroxy acids like meta-chloroperoxybenzoic acid (mCPBA), peroxyacetic acid or Caro's acid (peroxymonosulfuric acid).


The term “undesired vegetation” (“weeds”) is understood to include any vegetation growing in non-crop-areas or at a crop plant site or locus of seeded and otherwise desired crop, where the vegetation is any plant species, including their germinant seeds, emerging seedlings and established vegetation, other than the seeded or desired crop (if any). Weeds, in the broadest sense, are plants considered undesirable in a particular location.


The organic moieties mentioned in the above definitions of the variables are—like the term halogen—collective terms for individual listings of the individual group members. The prefix Cn-Cm indicates in each case the possible number of carbon atoms in the group.


The term “halogen” denotes in each case fluorine, bromine, chlorine or iodine, in particular fluorine, chlorine or bromine.


The term “alkyl” as used herein denotes in each case a straight-chain or branched alkyl group having usually from 1 to 6 carbon atoms (C1-C6-alkyl), preferably 1 to 4 carbon atoms (C1-C4-alkyl), in particular from 1 to 3 carbon atoms (C1-C3-alkyl) and specifically 1 or 2 carbon atoms (C1-C2-alkyl). C1-C2-Alkyl is methyl or ethyl. C1-C3-Alkyl is methyl, ethyl, n-propyl or isopropyl. Examples of C1-C4-alkyl are methyl, ethyl, n-propyl, iso-propyl, n-butyl, 2-butyl(sec-butyl), isobutyl and tert-butyl. Examples for C1-C6-alkyl are, apart those mentioned for C1-C4-alkyl, n-pentyl, 1-methylbutyl, 2-methylbutyl, 3-methylbutyl, 2,2-dimethylpropyl, 1-ethylpropyl, n-hexyl, 1,1-dimethylpropyl, 1,2-dimethylpropyl, 1-methylpentyl, 2-methylpentyl, 3-methylpentyl, 4-methylpentyl, 1,1-dimethylbutyl, 1,2-dimethylbutyl, 1,3-dimethylbutyl, 2,2-dimethylbutyl, 2,3-dimethylbutyl, 3,3-dimethylbutyl, 1-ethylbutyl, 2-ethylbutyl, 1,1,2-trimethylpropyl, 1,2,2-trimethylpropyl, 1-ethyl-1-methylpropyl and 1-ethyl-2-methylpropyl.


The term “haloalkyl” as used herein denotes in each case a straight-chain or branched alkyl group having usually from 1 to 6 carbon atoms (“C1-C6-haloalkyl”), more frequently 1 to 4 carbon atoms (“C1-C4-haloalkyl”), preferably 1 to 3 carbon atoms (“C1-C3-haloalkyl”), and in particular 1 or 2 carbon atoms (“C1-C2-haloalkyl”), wherein the hydrogen atoms of this group are partially or totally replaced with halogen atoms. In this context, the term “partially or completely halogenated” will be taken to mean that 1 or more, e.g. 1, 2, 3, 4 or 5 or all of the hydrogen atoms of a given radical have been replaced by a halogen atom, in particular by fluorine or chlorine. Preferred haloalkyl moieties are selected from C1-C4-haloalkyl, more preferably from C1-C3-haloalkyl, in particular from C1-C2-haloalkyl, e.g. from halomethyl. Specifically, haloalkyl is fluorinated alkyl, i.e. the hydrogen atoms of this group are partially or totally replaced with fluorine atoms. Very specifically, haloalkyl is fluorinated C1-C2-alkyl. Fluorinated methyl is methyl in which 1, 2 or 3 of the hydrogen atoms are replaced by fluorine atoms. Examples are fluoromethyl, difluoromethyl and trifluoromethyl. Halomethyl is methyl in which 1, 2 or 3 of the hydrogen atoms are replaced by halogen atoms. Examples are bromomethyl, chloromethyl, dichloromethyl, trichloromethyl, fluoromethyl, difluoromethyl, trifluoromethyl, chlorofluoromethyl, dichlorofluoromethyl, chlorodifluoromethyl and the like. Examples for fluorinated C1-C2-alkyl are fluoromethyl, difluoromethyl, trifluoromethyl, 1-fluoroethyl, 2-fluoroethyl, 2,2-difluoroethyl, 2,2,2-trifluoroethyl, pentafluoroethyl, and the like. Examples for C1-C2-haloalkyl are, apart those mentioned for fluorinated C1-C2-alkyl, chloromethyl, dichloromethyl, trichloromethyl, bromomethyl, chlorofluoromethyl, dichlorofluoromethyl, chlorodifluoromethyl, 1-chloroethyl, 2-chloroethyl, 2,2,-dichloroethyl, 2,2,2-trichloroethyl, 2-chloro-2-fluoroethyl, 2-chloro-2,2-difluoroethyl, 2,2-dichloro-2-fluoroethyl, 1-bromoethyl, and the like. Examples for C1-C3-haloalkyl are, apart those mentioned for C1-C2-haloalkyl, 1-fluoropropyl, 2-fluoropropyl, 3-fluoropropyl, 3,3-difluoropropyl, 3,3,3-trifluoropropyl, heptafluoropropyl, 1,1,1-trifluoroprop-2-yl, 3-chloropropyl and the like. Examples for C1-C4-haloalkyl are, apart those mentioned for C1-C2-haloalkyl, 1-fluoropropyl, 2-fluoropropyl, 3-fluoropropyl, 3,3-difluoropropyl, 3,3,3-trifluoropropyl, heptafluoropropyl, 1,1,1-trifluoroprop-2-yl, 3-chloropropyl, 4-chlorobutyl and the like. The term “cycloalkyl” as used herein denotes in each case a mono- or bicyclic saturated cycloaliphatic radical having usually from 3 to 10 carbon atoms (“C3-C10-cycloalkyl”), preferably 3 to 7 carbon atoms (“C3-C7-cycloalkyl”), in particular 3 to 6 carbon atoms (“C3-C6-cycloalkyl”) or specifically 3 or 4 carbon atoms (“C3-C4-cycloalkyl”). Examples of monocyclic radicals having 3 or 4 carbon atoms (monocyclic C3-C4-cycloalkyl) comprise cyclopropyl and cyclobutyl. Examples of monocyclic radicals having 3 to 6 carbon atoms (monocyclic C3-C6-cycloalkyl) comprise cyclopropyl, cyclobutyl, cyclopentyl and cyclohexyl. Examples of monocyclic radicals having 3 to 7 carbon atoms (monocyclic C3-C7-cycloalkyl) comprise cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl and cycloheptyl. Examples of monocyclic radicals having 3 to 10 carbon atoms (monocyclic C3-C10-cycloalkyl) comprise cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl, cyclooctyl, cyclononyl and cyclodecyl. Examples of bicyclic radicals having 7 or 8 carbon atoms (bicyclic C7-C8-cycloalkyl) comprise bicyclo[2.1.1]hexyl, bicyclo[2.2.1]heptyl, bicyclo[3.1.1]heptyl, bicyclo[2.2.1]heptyl, bicyclo[2.2.2]octyl and bicyclo[3.2.1]octyl. Preferably, the term cycloalkyl denotes a monocyclic saturated cycloaliphatic radical.


The remarks made below as to preferred embodiments of the variables (substituents) of the compounds of formula (I) are valid on their own as well as preferably in combination with each other, as well as in combination with the stereoisomers, salts, or N-oxides thereof. The remarks made below concerning preferred embodiments of the variables further are valid on their own as well as preferably in combination with each other concerning the compounds of formulae I, where applicable, as well as concerning the uses and methods according to the invention and the composition according to the invention.


Preferred compounds according to the invention are compounds of formula (I) or a stereoisomer, or salt thereof, wherein the salt is an agriculturally suitable salt. Particularly preferred compounds according to the invention are compounds of formula (I) or a salt thereof, especially an agriculturally suitable salt thereof.


In preferred compounds according to the invention the radical R2 in formula (I) is selected from the group consisting of halogen and CF3. More preferably, the radical R2 in formula (I) is selected from the group consisting of Br, Cl and CF3.


In a preferred embodiment of the invention, the radical R3 in formula (I) is selected from the group consisting of C1-C6-alkyl, C1-C4-haloalkyl and Z—C3-C6-cycloalkyl, more preferably from the group consisting of C1-C6-alkyl, C1-C3-haloalkyl and C3-C6-cycloalkyl (i.e. Z is a bond), in particular from the group consisting of C1-C4-alkyl, fluorinated C1-C2-alkyl and C3-C4-cycloalkyl, especially from the group consisting of methyl, ethyl, n-propyl, isopropyl, 2,2,2-trifluoroethyl and cyclopropyl.


In an alternatively preferred embodiment of the invention the radical R3 in formula (I) is C1-C6-alkyl, in particular C1-C4-alkyl, especially methyl or ethyl, and very specifically methyl.


A first particular group 1 of embodiments relates to compounds according to the invention, wherein R1 is methyl. In this first group of preferred embodiments, R2 and R3 are as defined above and have in particular the meanings given as “in particular”, “preferred” or “special” meanings. In this first group of embodiments, in which R1 is methyl, R2 in formula (I) is in particular selected from the group consisting of Br, Cl and CF3 and R3 is preferably C1-C6-alkyl, in particular C1-C4-alkyl, especially methyl or ethyl, and very specifically methyl. In this first group of embodiments, in which R1 is methyl, R2 in formula (I) is especially Br and R3 is preferably C1-C6-alkyl, in particular C1-C4-alkyl, especially methyl or ethyl, and very specifically methyl.


A further particular group 2 of embodiments relates to compounds according to the invention, wherein R1 is Cl. In this group 2 of particular embodiments, R2 and R3 are as defined above and have in particular the meanings given as “in particular”, “preferred” or “special” meanings. In this group 2 of embodiments, in which R1 is Cl, R2 in formula (I) is preferably selected from the group consisting of Br, Cl and CF3 and R3 is preferably C1-C6-alkyl, in particular C1-C4-alkyl, especially methyl or ethyl, and very specifically ethyl. In this group 2 of embodiments, in which R1 is Cl, R2 in formula (I) is more preferably Cl or Br and R3 is preferably C1-C6-alkyl, in particular C1-C4-alkyl, especially methyl or ethyl, and very specifically ethyl. In this group 2 of embodiments, in which R1 is Cl, R2 in formula (I) is in particular Br and R3 is preferably C1-C6-alkyl, in particular C1-C4-alkyl, especially methyl or ethyl, and very specifically ethyl.


Particular examples of the compounds of the present invention are the compounds of formula (I), their agriculturally acceptable salts, the N-oxides of the compounds of formula (I) and the salts of said N-oxides, where in formula (I) the combination of R1, R2 and R3 is as defined in the lines 1 to 72 of table A:












TABLE A






R1
R2
R3


















1
CH3
Br
CH3


2
CH3
Br
C2H5


3
CH3
Br
CH2CH2CH3


4
CH3
Br
CH(CH3)2


5
CH3
Br
c-C3H5


6
CH3
Br
CH2CF3


7
CH3
Cl
CH3


8
CH3
Cl
C2H5


9
CH3
Cl
CH2CH2CH3


10
CH3
Cl
CH(CH3)2


11
CH3
Cl
c-C3H5


12
CH3
Cl
CH2CF3


13
CH3
CF3
CH3


14
CH3
CF3
C2H5


15
CH3
CF3
CH2CH2CH3


16
CH3
CF3
CH(CH3)2


17
CH3
CF3
c-C3H5


18
CH3
CF3
CH2CF3


19
CH3
S—CH3
CH3


20
CH3
S—CH3
C2H5


21
CH3
S—CH3
CH2CH2CH3


22
CH3
S—CH3
CH(CH3)2


23
CH3
S—CH3
c-C3H5


24
CH3
S—CH3
CH2CF3


25
CH3
S(O)—CH3
CH3


26
CH3
S(O)—CH3
C2H5


27
CH3
S(O)—CH3
CH2CH2CH3


28
CH3
S(O)—CH3
CH(CH3)2


29
CH3
S(O)—CH3
c-C3H5


30
CH3
S(O)—CH3
CH2CF3


31
CH3
S(O)2—CH3
CH3


32
CH3
S(O)2—CH3
C2H5


33
CH3
S(O)2—CH3
CH2CH2CH3


34
CH3
S(O)2—CH3
CH(CH3)2


35
CH3
S(O)2—CH3
c-C3H5


36
CH3
S(O)2—CH3
CH2CF3


37
Cl
Br
CH3


38
Cl
Br
C2H5


39
Cl
Br
CH2CH2CH3


40
Cl
Br
CH(CH3)2


41
Cl
Br
c-C3H5


42
Cl
Br
CH2CF3


43
Cl
Cl
CH3


44
Cl
Cl
C2H5


45
Cl
Cl
CH2CH2CH3


46
Cl
Cl
CH(CH3)2


47
Cl
Cl
c-C3H5


48
Cl
Cl
CH2CF3


49
Cl
CF3
CH3


50
Cl
CF3
C2H5


51
Cl
CF3
CH2CH2CH3


52
Cl
CF3
CH(CH3)2


53
Cl
CF3
c-C3H5


54
Cl
CF3
CH2CF3


55
Cl
S—CH3
CH3


56
Cl
S—CH3
C2H5


57
Cl
S—CH3
CH2CH2CH3


58
Cl
S—CH3
CH(CH3)2


59
Cl
S—CH3
c-C3H5


60
Cl
S—CH3
CH2CF3


61
Cl
S(O)—CH3
CH3


62
Cl
S(O)—CH3
C2H5


63
01
S(O)—CH3
CH2CH2CH3


64
Cl
S(O)—CH3
CH(CH3)2


65
Cl
S(O)—CH3
c-C3H5


66
Cl
S(O)—CH3
CH2CF3


67
Cl
S(O)2—CH3
CH3


68
Cl
S(O)2—CH3
C2H5


69
Cl
S(O)2—CH3
CH2CH2CH3


70
Cl
S(O)2—CH3
CH(CH3)2


71
Cl
S(O)2—CH3
c-C3H5


72
Cl
S(O)2—CH3
CH2CF3





c-C3H5 means cyclopropyl.






A particularly preferred example of the compounds of the present invention is the compound 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)-carbamoyl]amino]benzamide (R1=methyl, R2αBr, R3=methyl), the agriculturally suitable salts thereof, an N-oxide thereof and the agriculturally suitable salts of said N-oxide.


Another particularly preferred example of the compounds of the present invention is the compound 4-bromo-2-chloro-6-fluoro-N-(1-methyltetrazol-5-yl)-3-[[ethyl(2,2,2-trifluoroethyl)-carbamoyl]amino]benzamide (R1═Cl, R2═Br, R3═ethyl), the agriculturally suitable salts thereof, an N-oxide thereof and the agriculturally suitable salts of said N-oxide.


Yet another particularly preferred example of the compounds of the present invention is the compound 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[ethyl(2,2,2-trifluoroethyl)-carbamoyl]amino]benzamide (R1=methyl, R2═Br, R3=ethyl), the agriculturally suitable salts thereof, an N-oxide thereof and the agriculturally suitable salts of said N-oxide.


A further particularly preferred example of the compounds of the present invention is the compound 2,4-dichloro-6-fluoro-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)-carbamoyl]amino]benzamide (R1═Cl, R2═Cl, R3=methyl), the agriculturally suitable salts thereof, an N-oxide thereof and the agriculturally suitable salts of said N-oxide.


The compounds of the formula (I) can be prepared from the corresponding 2,4-disubstituted 3-amino-6-fluoro-N-(1-methyltetrazol-5-yl)benzamides of the formula (II), which comprises reacting the compound of formula (II) with phosgene or a phosgene equivalent (III), such as diphosgene, i.e. trichloromethyl chloroformiate (R═Cl, R′═OCCl3), or triphosgene, i.e. bis-trichloromethylcarbonate (R, R′═OCCl3), and a secondary amine of the formula (IV), as depicted in the following scheme 1. Instead of phosgene or the phosgene equivalent carbonyldiimidazole may be used.




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The reaction of the compound of the formula (II) with phosgene or phosgene equivalent (III) and the secondary amine of formula (IV) can be performed by analogy to the preparation of mixed ureas by reaction of two different amine with phosgene or phosgene equivalent. Preferably, the compound of the formula (II) is firstly reacted with phosgene or phosgene equivalent (III) to obtain an intermediate compound or compound mixture, which is subsequently reacted with the secondary amine of the formula (IV). The intermediate compound or compound mixture may be isolated from the reaction mixture. For economical reasons, the intermediate compound or compound mixture is usually not isolated but the reaction mixture obtained from the reaction of the compound (II) with the phosgene or phosgene equivalent is subjected to the reaction with the secondary amine of formula (IV).


Further details can be taken from the preparation examples contained herein. Apart from that, a skilled person will easily find suitable reaction conditions for the synthesis depicted in scheme 1 by routine.


The compounds of the formula (II) are known, e.g. from WO 2017/102275, or can be easily prepared by analogy to the methods described in WO 2017/102275 or from the corresponding 2,4-disubstituted-3-nitro-6-fluorobenzamide compound by reduction of the 3-nitrogroup according to standard procedures. The secondary amines of the formula (IV) are likewise commercially available.


The reaction mixtures are worked up in the customary manner, for example by mixing with water, separating the phases, and, if appropriate, purifying the crude products by chromatography, for example on alumina or on silica gel. Some of the intermediates and end products may be obtained in the form of colorless or pale brown viscous oils which are freed or purified from volatile components under reduced pressure and at moderately elevated temperature. If the intermediates and end products are obtained as solids, they may be purified by recrystallization or trituration.


The compounds of formula (I) and their agriculturally suitable salts are useful as herbicides. They are useful as such or as an appropriately formulated composition. The herbicidal compositions comprising the compound (I), in particular the preferred aspects thereof, control vegetation on non-crop areas very efficiently, especially at high rates of application. They act against broad-leaved weeds and weed grasses in crops such as wheat, rice, corn, soybeans and cotton without causing any significant damage to the crop plants. This effect is mainly observed at low rates of application.


Depending on the application method in question, the compounds of formula (I), in particular the preferred aspects thereof, or compositions comprising them can additionally be employed in a further number of crop plants for eliminating unwanted plants. Examples of suitable crops are the following:



Allium cepa, Ananas comosus, Arachis hypogaea, Asparagus officinalis, Avena sativa, Beta vulgaris spec. altissima, Beta vulgaris spec. rapa, Brassica napus var. napus, Brassica napus var. napobrassica, Brassica rapa var. silvestris, Brassica oleracea, Brassica nigra, Camellia sinensis, Carthamus tinctorius, Carya illinoinensis, Citrus limon, Citrus sinensis, Coffea arabica (Coffea canephora, Coffea liberica), Cucumis sativus, Cynodon dactylon, Daucus carota, Elaeis guineensis, Fragaria vesca, Glycine max, Gossypium hirsutum, (Gossypium arboreum, Gossypium herbaceum, Gossypium vitifolium), Helianthus annuus, Hevea brasiliensis, Hordeum vulgare, Humulus lupulus, Ipomoea batatas, Juglans regia, Lens culinaris, Linum usitatissimum, Lycopersicon lycopersicum, Malus spec., Manihot esculenta, Medicago sativa, Musa spec., Nicotiana tabacum (N.rustica), Olea europaea, Oryza sativa, Phaseolus lunatus, Phaseolus vulgaris, Picea abies, Pinus spec., Pistacia vera, Pisum sativum, Prunus avium, Prunus persica, Pyrus communis, Prunus armeniaca, Prunus cerasus, Prunus dulcis and Prunus domestica, Ribes sylvestre, Ricinus communis, Saccharum officinarum, Secale cereale, Sinapis alba, Solanum tuberosum, Sorghum bicolor (s. vulgare), Theobroma cacao, Trifolium pratense, Triticum aestivum, Triticale, Triticum durum, Vicia faba, Vitis vinifera, Zea mays.


The compounds of the present invention are particularly suitable for use in crops from the family poaceae, in particular crops of the tribum triticeae, e.g. crops of the generae hordeum, sorghum, triticium and secale, and crops of the generae zea, e.g. zea mays and oryza, e.g. oryza sativa.


The term “crop plants” also includes plants which have been modified by breeding, mutagenesis or genetic engineering. Genetically modified plants are plants whose genetic material has been modified in a manner which does not occur under natural conditions by crossing, mutations or natural recombination (i.e. reassembly of the genetic information). Here, in general, one or more genes are integrated into the genetic material of the plant to improve the properties of the plant.


Accordingly, the term “crop plants” also includes plants which, by breeding and genetic engineering, have acquired tolerance to certain classes of herbicides, such as hydroxyphenylpyruvate dioxygenase (HPPD) inhibitors, acetolactate synthase (ALS) inhibitors, such as, for example, sulfonylureas (EP-A-0257993, U.S. Pat. No. 5,013,659) or imidazolinones (see, for example, U.S. Pat. No. 6,222,100, WO 01/82685, WO 00/26390, WO 97/41218, WO 98/02526, WO 98/02527, WO 04/106529, WO 05/20673, WO 03/14357, WO 03/13225, WO 03/14356, WO 04/16073), enolpyruvylshikimate 3-phosphate synthase (EPSPS) inhibitors, such as, for example, glyphosate (see, for example, WO 92/00377), glutamine synthetase (GS) inhibitors, such as, for example, glufosinate (see, for example, EP-A-0242236, EP-A-242246), or oxynil herbicides (see, for example, U.S. Pat. No. 5,559,024).


In a preferred embodiment, the term “crop plants” refers to plants that comprise in their genomes a gene encoding a herbicide-tolerant wild-type or mutated HPPD protein. Such a gene may be an endogenous gene or a transgene, as described hereinafter.


By a “herbicide-tolerant” or “herbicide-resistant” plant, it is intended that a plant that is tolerant or resistant to at least one herbicide at a level that would normally kill, or inhibit the growth of, a normal or wild-type plant. By “herbicide-tolerant wild-type or mutated HPPD protein” or “herbicide-resistant wild-type or mutated HPPD protein”, it is intended that such a HPPD protein displays higher HPPD activity, relative to the HPPD activity of a wild-type or reference HPPD protein, when in the presence of at least one herbicide that is known to interfere with HPPD activity and at a concentration or level of the herbicide that is known to inhibit the HPPD activity of the reference wild-type HPPD protein. Furthermore, the HPPD activity of such a herbicide-tolerant or herbicide-resistant HPPD protein may be referred to herein as “herbicide-tolerant” or “herbicide-resistant” HPPD activity.


The term “mutated HPPD nucleic acid” refers to an HPPD nucleic acid having a sequence that is mutated from a wild-type HPPD nucleic acid and that confers increased “HPPD-inhibiting herbicide” tolerance to a plant in which it is expressed. Furthermore, the term “mutated hydroxyphenyl pyruvate dioxygenase (mutated HPPD)” refers to the replacement of an amino acid of the wild-type primary sequences SEQ ID NO: 2, 5, 8, 11, 14, 17, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 53, 55, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, a variant, a derivative, a homologue, an orthologue, or paralogue thereof, with another amino acid. The expression “mutated amino acid” will be used below to designate the amino acid which is replaced by another amino acid, thereby designating the site of the mutation in the primary sequence of the protein.


Several HPPDs and their primary sequences have been described in the state of the art, in particular the HPPDs of bacteria such as Pseudomonas (Ruetschi et al., Eur. J. Biochem., 205, 459-466, 1992, WO96/38567), of plants such as Arabidopsis (W096/38567, Genebank AF047834) or of carrot (WO96/38567, Genebank 87257), of Coccicoides (Genebank COITRP), HPPDs of Brassica, cotton, Synechocystis, and tomato (U.S. Pat. No. 7,297,541), of mammals such as the mouse or the pig. Furthermore, artificial HPPD sequences have been described, for example in U.S. Pat. Nos. 6,768,044; 6,268,549;


In a preferred embodiment, the nucleotide sequence of (i) comprises the sequence of SEQ ID NO: 1, 51, 3, 4, 6, 7, 9, 10, 12, 13, 15, 16, 18, 19, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49, 52, 54, 56, 68, 69 or a variant or derivative thereof.


In a particularly preferred embodiment, the mutated HPPD nucleic acid useful for the present invention comprises a mutated nucleic acid sequence of SEQ ID NO: 1 or SEQ ID NO: 52, or a variant or derivative thereof.


Furthermore, it will be understood by the person skilled in the art that the nucleotide sequences of (i) or (ii) encompass homologues, paralogues and orthologues of SEQ ID NO: 1, 51, 3, 4, 6, 7, 9, 10, 12, 13, 15, 16, 18, 19, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49, 52, 54, 56, 68, 69, as defined hereinafter.


The term “variant” with respect to a sequence (e.g., a polypeptide or nucleic acid sequence such as—for example—a transcription regulating nucleotide sequence of the invention) is intended to mean substantially similar sequences. For nucleotide sequences comprising an open reading frame, variants include those sequences that, because of the degeneracy of the genetic code, encode the identical amino acid sequence of the native protein. Naturally occurring allelic variants such as these can be identified with the use of well-known molecular biology techniques, as, for example, with polymerase chain reaction (PCR) and hybridization techniques. Variant nucleotide sequences also include synthetically derived nucleotide sequences, such as those generated, for example, by using site-directed mutagenesis and for open reading frames, encode the native protein, as well as those that encode a polypeptide having amino acid substitutions relative to the native protein. Generally, nucleotide sequence variants of the invention will have at least 30, 40, 50, 60, to 70%, e.g., preferably 71%, 72%, 73%, 74%, 75%, 76%, 77%, 78%, to 79%, generally at least 80%, e.g., 81%-84%, at least 85%, e.g., 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, to 98% and 99% nucleotide “ sequence identity” to the nucleotide sequence of SEQ ID NO:1, 51, 3, 4, 6, 7, 9, 10, 12, 13, 15, 16, 18, 19, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49, 52, 54, 56, 68, 69, 47, or 49. By “variant” polypeptide is intended a polypeptide derived from the protein of SEQ ID NO: 2, 5, 8, 11, 14, 17, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 53, 55, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, by deletion (so-called truncation) or addition of one or more amino acids to the N-terminal and/or C-terminal end of the native protein; deletion or addition of one or more amino acids at one or more sites in the native protein; or substitution of one or more amino acids at one or more sites in the native protein. Such variants may result from, for example, genetic polymorphism or from human manipulation. Methods for such manipulations are generally known in the art.


In a preferred embodiment, variants of the polynucleotides useful for the present invention will have at least 30, 40, 50, 60, to 70%, e.g., preferably 71%, 72%, 73%, 74%, 75%, 76%, 77%, 78%, to 79%, generally at least 80%, e.g., 81%-84%, at least 85%, e.g., 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, to 98% and 99% nucleotide “ sequence identity” to the nucleotide sequence of SEQ ID NO:1, 47, 49, or SEQ ID NO: 52. It is recognized that the polynucleotide molecules and polypeptides of the invention encompass polynucleotide molecules and polypeptides comprising a nucleotide or an amino acid sequence that is sufficiently identical to nucleotide sequences set forth in SEQ ID NOs: 1, 51, 3, 4, 6, 7, 9, 10, 12, 13, 15, 16, 18, 19, 21, 23, 25, 27, 29, 31, 33, 35, 37, 39, 41, 43, 45, 47, 49, 52, 54, 56, 68, 69, 47, or 49, or to the amino acid sequences set forth in SEQ ID NOs: 2, 5, 8, 11, 14, 17, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 53, 55, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, 48, or 50 . The term “sufficiently identical” is used herein to refer to a first amino acid or nucleotide sequence that contains a sufficient or minimum number of identical or equivalent (e.g., with a similar side chain) amino acid residues or nucleotides to a second amino acid or nucleotide sequence such that the first and second amino acid or nucleotide sequences have a common structural domain and/or common functional activity.


“Sequence identity” refers to the extent to which two optimally aligned DNA or amino acid sequences are invariant throughout a window of alignment of components, e.g., nucleotides or amino acids. An “identity fraction” for aligned segments of a test sequence and a reference sequence is the number of identical components that are shared by the two aligned sequences divided by the total number of components in reference sequence segment, i.e., the entire reference sequence or a smaller defined part of the reference sequence. “Percent identity” is the identity fraction times 100. Optimal alignment of sequences for aligning a comparison window are well known to those skilled in the art and may be conducted by tools such as the local homology algorithm of Smith and Waterman, the homology alignment algorithm of Needleman and Wunsch, the search for similarity method of Pearson and Lipman, and preferably by computerized implementations of these algorithms such as GAP, BESTFIT, FASTA, and TFASTA available as part of the GCG. Wisconsin Package. (Accelrys Inc. Burlington, Mass.)


The terms “polynucleotide(s)”, “nucleic acid sequence(s)”, “nucleotide sequence(s)”, “ nucleic acid(s)” , “nucleic acid molecule” are used interchangeably herein and refer to nucleotides, either ribonucleotides or deoxyribonucleotides or a combination of both, in a polymeric unbranched form of any length.


“Derivatives” of a protein encompass peptides, oligopeptides, polypeptides, proteins and enzymes having amino acid substitutions, deletions and/or insertions relative to the unmodified protein in question and having similar biological and functional activity as the unmodified protein from which they are derived.


“Homologues” of a protein encompass peptides, oligopeptides, polypeptides, proteins and enzymes having amino acid substitutions, deletions and/or insertions relative to the unmodified protein in question and having similar biological and functional activity as the unmodified protein from which they are derived.


A deletion refers to removal of one or more amino acids from a protein.


An insertion refers to one or more amino acid residues being introduced into a predetermined site in a protein. Insertions may comprise N-terminal and/or C-terminal fusions as well as intra-sequence insertions of single or multiple amino acids. Generally, insertions within the amino acid sequence will be smaller than N- or C-terminal fusions, of the order of about 1 to 10 residues. Examples of N- or C-terminal fusion proteins or peptides include the binding domain or activation domain of a transcriptional activator as used in the yeast two-hybrid system, phage coat proteins, (histidine)-6-tag, glutathione S-transferase-tag, protein A, maltose-binding protein, dihydrofolate reductase, Tag⋅ 100 epitope, c-myc epitope, FLAG®-epitope, lacZ, CMP (calmodulin-binding peptide), HA epitope, protein C epitope and VSV epitope.


A substitution refers to replacement of amino acids of the protein with other amino acids having similar properties (such as similar hydrophobicity, hydrophilicity, antigenicity, propensity to form or break a -helical structures or β-sheet structures). Amino acid substitutions are typically of single residues, but may be clustered depending upon functional constraints placed upon the polypeptide and may range from 1 to 10 amino acids; insertions will usually be of the order of about 1 to 10 amino acid residues. The amino acid substitutions are preferably conservative amino acid substitutions. Conservative substitution tables are well known in the art (see for example Creighton (1984) Proteins. W.H. Freeman and Company (Eds).


Amino acid substitutions, deletions and/or insertions may readily be made using peptide synthetic techniques well known in the art, such as solid phase peptide synthesis and the like, or by recombinant DNA manipulation. Methods for the manipulation of DNA sequences to produce substitution, insertion or deletion variants of a protein are well known in the art. For example, techniques for making substitution mutations at predetermined sites in DNA are well known to those skilled in the art and include M13 mutagenesis, T7-Gen in vitro mutagenesis (USB, Cleveland, Ohio), QuikChange Site Directed mutagenesis (Stratagene, San Diego, Calif.), PCR-mediated site-directed mutagenesis or other site-directed mutagenesis protocols. “Derivatives” further include peptides, oligopeptides, polypeptides which may, compared to the amino acid sequence of the naturally-occurring form of the protein, such as the protein of interest, comprise substitutions of amino acids with non-naturally occurring amino acid residues, or additions of non-naturally occurring amino acid residues. “Derivatives” of a protein also encompass peptides, oligopeptides, polypeptides which comprise naturally occurring altered (glycosylated, acylated, prenylated, phosphorylated, myristoylated, sulphated etc.) or non-naturally altered amino acid residues compared to the amino acid sequence of a naturally-occurring form of the polypeptide. A derivative may also comprise one or more non-amino acid substituents or additions compared to the amino acid sequence from which it is derived, for example a reporter molecule or other ligand, covalently or non-covalently bound to the amino acid sequence, such as a reporter molecule which is bound to facilitate its detection, and non-naturally occurring amino acid residues relative to the amino acid sequence of a naturally-occurring protein. Furthermore, “derivatives” also include fusions of the naturally-occurring form of the protein with tagging peptides such as FLAG, HIS6 or thioredoxin (for a review of tagging peptides, see Terpe, Appl. Microbiol. Biotechnol. 60, 523-533, 2003).


“Orthologues” and “paralogues” encompass evolutionary concepts used to describe the ancestral relationships of genes. Paralogues are genes within the same species that have originated through duplication of an ancestral gene; orthologues are genes from different organisms that have originated through speciation, and are also derived from a common ancestral gene.


It is well-known in the art that paralogues and orthologues may share distinct domains harboring suitable amino acid residues at given sites, such as binding pockets for particular substrates or binding motifs for interaction with other proteins.


The term “domain” refers to a set of amino acids conserved at specific positions along an alignment of sequences of evolutionarily related proteins. While amino acids at other positions can vary between homologues, amino acids that are highly conserved at specific positions indicate amino acids that are likely essential in the structure, stability or function of a protein. Identified by their high degree of conservation in aligned sequences of a family of protein homologues, they can be used as identifiers to determine if any polypeptide in question belongs to a previously identified polypeptide family.


The term “motif” or “consensus sequence” refers to a short conserved region in the sequence of evolutionarily related proteins. Motifs are frequently highly conserved parts of domains, but may also include only part of the domain, or be located outside of conserved domain (if all of the amino acids of the motif fall outside of a defined domain).


Specialist databases exist for the identification of domains, for example, SMART (Schultz et al. (1998) Proc. Natl. Acad. Sci. USA 95, 5857-5864; Letunic et al. (2002) Nucleic Acids Res 30, 242-244), InterPro (Mulder et al., (2003) Nucl. Acids. Res. 31, 315-318), Prosite (Bucher and Bairoch (1994), A generalized profile syntax for biomolecular sequences motifs and its function in automatic sequence interpretation. (In) ISMB-94; Proceedings 2nd International Conference on Intelligent Systems for Molecular Biology. Altman R., Brutlag D., Karp P., Lathrop R., Searls D., Eds., pp53-61, AAAI Press, Menlo Park; Hulo et al., Nucl. Acids. Res. 32:D134-D137, (2004)), or Pfam (Bateman et al., Nucleic Acids Research 30(1): 276-280 (2002)). A set of tools for in silico analysis of protein sequences is available on the ExPASy proteomics server (Swiss Institute of Bioinformatics (Gasteiger et al., ExPASy: the proteomics server for in-depth protein knowledge and analysis, Nucleic Acids Res. 31:3784-3788(2003)). Domains or motifs may also be identified using routine techniques, such as by sequence alignment.


Methods for the alignment of sequences for comparison are well known in the art, such methods include GAP, BESTFIT, BLAST, FASTA and TFASTA. GAP uses the algorithm of Needleman and Wunsch ((1970) J Mol Biol 48: 443-453) to find the global (i.e. spanning the complete sequences) alignment of two sequences that maximizes the number of matches and minimizes the number of gaps. The BLAST algorithm (Altschul et al. (1990) J Mol Biol 215: 403-10) calculates percent sequence identity and performs a statistical analysis of the similarity between the two sequences. The software for performing BLAST analysis is publicly available through the National Centre for Biotechnology Information (NCBI). Homologues may readily be identified using, for example, the ClustalW multiple sequence alignment algorithm (version 1.83), with the default pairwise alignment parameters, and a scoring method in percentage. Global percentages of similarity and identity may also be determined using one of the methods available in the MatGAT software package (Campanella et al., BMC Bioinformatics. 2003 Jul 10;4:29. MatGAT: an application that generates similarity/identity matrices using protein or DNA sequences.). Minor manual editing may be performed to optimise alignment between conserved motifs, as would be apparent to a person skilled in the art. Furthermore, instead of using full-length sequences for the identification of homologues, specific domains may also be used. The sequence identity values may be determined over the entire nucleic acid or amino acid sequence or over selected domains or conserved motif(s), using the programs mentioned above using the default parameters. For local alignments, the Smith-Waterman algorithm is particularly useful (Smith T F, Waterman M S (1981) J. Mol. Biol 147(1);195-7). By substituting one or more of the key amino acid residues, the herbicide tolerance or resistance of a plant to the herbicide as described herein could be remarkably increased as compared to the activity of the wild type HPPD enzymes with SEQ ID NO: 2, 5, 8, 11, 14, 17, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 53, 55, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67. Preferred substitutions of mutated HPPD are those that increase the herbicide tolerance of the plant, but leave the biological activitiy of the dioxygenase activity substantially unaffected.


It will be understood by the person skilled in the art that amino acids located in a close proximity to the positions of amino acids mentioned below may also be substituted. Thus, in another embodiment the mutated HPPD useful for the present invention comprises a sequence of SEQ ID NO: 2, 5, 8, 11, 14, 17, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 53, 55, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, or a variant, derivative, orthologue, paralogue or homologue thereof, wherein an amino acid ±3, ±2 or ±1 amino acid positions from a key amino acid is substituted by any other amino acid.


Based on techniques well-known in the art, a highly characteristic sequence pattern can be developed, by means of which further of mutated HPPD candidates with the desired activity may be searched.


Searching for further mutated HPPD candidates by applying a suitable sequence pattern would also be encompassed by the present invention. It will be understood by a skilled reader that the present sequence pattern is not limited by the exact distances between two adjacent amino acid residues of said pattern. Each of the distances between two neighbours in the above patterns may, for example, vary independently of each other by up to ±10, ±5, ±3, ±2 or ±1 amino acid positions without substantially affecting the desired activity.


In line with said above functional and spatial analysis of individual amino acid residues based on the crystallographic data as obtained according to the present invention, unique partial amino acid sequences characteristic of potentially useful mutated HPPD candidates of the invention may be identified.


In a particularly preferred embodiment, the mutated HPPD refers to a variant or derivative of SEQ ID NO: 2 wherein the substitutions are selected from the following Table 4a.









TABLE 4A







(Sequence ID No: 2): single amino acid substitutions










Key amino acid position
Substituents







Val212
Ile, Leu



Val213
Thr, Ala



Asn215
Ala, His



Ala236
Leu, Ser, Arg



Phe238
Val, Ala



Leu250
Val, Met



Ser252
Thr



Pro265
Ala



Asn267
Tyr, Gln



Gln278
His, Asn, Ser



Ile279
Thr



Arg309
Lys, Ala



Leu320
Asn, Gln, His, Tyr,



Pro321
Ala, Arg, Gly, Asn



Leu334
Glu, Cys



Leu353
Met, Tyr, Ala, Ser



Phe366
Ile, Leu, Tyr



Gly371
Ile, Phe



Thr375
Pro



Phe377
Ala, Leu, Ser



Gly403
Arg



Phe404
Leu, Pro



Lys406
Thr



Gly407
Cys, His



Phe409
Ile, His



Glu411
Thr



Leu412
Met, Phe, Trp, Ala, Ser



Ile416
Val, Phe



Ser410
Gly



Val254
Ala










Furthermore, by substituting at least two of the key amino acid residues of SEQ ID NO: 2 with specific residues, the herbicide tolerance or resistance could be remarkably increased as compared to the activity of the wild type HPPD enzymes or HPPD enzymes in which only one amino acid residue had been substituted. Therefore, in another preferred embodiment, the variant or derivative of the mutated HPPD refers to a polypeptide of SEQ ID NO: 2, wherein two, three, four or five key amino acids are substituted by another amino acid residue. Particularly preferred double, triple, quadruple, or quintuple mutations are described in Table 4b.









TABLE 4b







(with reference to Sequence ID No: 2): combined amino


acid substitutions










Combination
Key amino acid position and



No
and its substitutents







1
A236L, E411T



2
L320H, P321A



3
L320H, P321R



4
L320N, P321A



5
L320N, P321R



6
L320Q, P321A



7
L320Q, P321R



8
L320Y, P321A



9
L320Y, P321R



10
L353M, P321R



11
L353M, P321R, A236L



12
L353M, P321R, A236L, E411T



13
L353M, P321R, E411T



14
L353M, P321R, L320H



15
L353M, P321R, L320N



16
L353M, P321R, L320Q



17
L353M, P321R, L320Y



18
L353M, P321R, V212I



19
L353M, P321R, V212I, L334E



20
L353M, P321R, V212L, L334E



21
L353M, P321R, V212L, L334E, A236L



22
L353M, P321R, V212L, L334E, A236L, E411T



23
L353M, P321R, V212L, L334E, E411T



24
L353M, P321R, V212L, L334E, L320H



25
L353M, P321R, V212L, L334E, L320N



26
L353M, P321R, V212L, L334E, L320Q



27
L353M, P321R, V212L, L334E, L320Y



28
L353M, V212I










In a particularly preferred embodiment, the mutated HPPD enzyme comprising a polypeptide of SEQ ID NO: 2, a variant, derivative, homologue, paralogue or orthologue thereof, useful for the present invention comprises one or more of the following: the amino acid corresponding to or at position 320 is histidine, asparagine or glutamine; the amino acid position 334 is glutamic acid; the amino acid position 353 is methionine; the amino acid corresponding to or at position 321 alanine or arginine; the amino acid corresponding to or at position 212 is isoleucine.


In an especially particularly preferred embodiment, the mutated HPPD refers to a polypeptide comprising SEQ ID NO: 2, wherein the leucine corresponding to or at position 320 is substituted by a histidine, and the proline corresponding to or at position 321 is substituted by an alanine.


In another especially particularly preferred embodiment, the mutated HPPD refers to a polypeptide comprising SEQ ID NO: 2, wherein Leucine corresponding to or at position 353 is substituted by a Methionine, the Proline corresponding to or at position 321 is substituted by an Arginine, and the Leucine corresponding to or at position 320 is substituted by an Asparagine.


In another especially particularly preferred embodiment, the mutated HPPD refers to a polypeptide comprising SEQ ID NO: 2, wherein the Leucine corresponding to or at position 353 is substituted by a Methionine, the Proline corresponding to or at position 321 is substituted by an Arginine, and the Leucine corresponding to or at position 320 is substituted by a glutamine. In another preferred embodiment, the mutated HPPD refers to a variant or derivative of SEQ ID NO: 53 wherein the substitutions are selected from the following Table 4c.









TABLE 4c







(Sequence ID No 53): single amino acid substitutions











Key amino

Preferred



acid position
Substituents
substituents







Val228
Thr, Ala
Thr, Ala



Asn230
Ala, His
Ala, His



Ala251
Ser, Arg
Ser, Arg



Phe253
Val, Ala
Val, Ala



Leu265
Val, Met
Val, Met



Ser267
Thr
Thr



Pro280
Ala
Ala



Asn282
Tyr, Gln
Tyr, Gln



Lys291
Arg, Ala
Arg



Gln293
Ala, Leu, Ile, Val, His, Asn, Ser
His, Asn, Ser



Ile294
Thr
Thr



Arg324
Lys, Ala
Lys, Ala



Met335
Ala, Trp, Phe, Leu, Ile, Val,
Gln, Asn,




Asn, Gln, His, Tyr, Ser, Thr, Cys
His, Tyr



Pro336
Ala, Arg, Gly, Asn
Ala, Gly



Ser337
Ala, Pro, Thr
Pro, Thr



Pro339
Deletion
Deletion



Pro340
Gly
Gly



Glu363
Gln
Gln



Leu368
Met, Tyr,
Met



Phe381
Ile, Leu, Tyr
Ile, Leu



Leu385
Ala, Val, Gln, Asp
Val, Asp



Gly386
Ile, Phe
Ile, Phe



Thr390
Pro
Pro



Phe392
Ala, Leu, Ser
Ala



Ile393
Ala, Leu, Phe, Val
Leu



Phe419
Leu, Pro
Leu, Pro



Lys421
Thr
Thr



Gly422
His, Met, Phe, Cys
His, Cys



Phe424
Ile, His
Ile, His



Leu427
Phe, Trp, Ala, Ser, Met
Phe



Ile431
Val, Phe
Val, Phe



Ser425
Gly
Gly



Val269
Ala
Ala










In another preferred embodiment, the variant or derivative of the mutated HPPD useful for the present invention refers to a polypeptide of SEQ ID NO: 53, a homologue, orthologue, or paralogue thereof, wherein two, three, four or five key amino acids are substituted by another amino acid residue. Particularly preferred double, triple, quadruple, or quintuple mutations are described in Table 4d.









TABLE 4d







(reference to Sequence ID No: 53): combined


amino acid substitutions










Combination
Key amino

Preferred


No
acid position
Substituents
substituents





1
Pro336
Ala, Arg
Ala



Glu363
Gln
Gln


2
Pro336
Ala, Arg
Ala



Glu363
Gln
Gln



Leu385
Ala, Val
Val


3
Pro336
Ala, Arg
Ala



Glu363
Gln
Gln



Leu385
Ala, Val
Val



Ile393
Ala, Leu
Leu


4
Leu385
Ala, Val
Val



Ile393
Ala, Leu
Leu


5
Met335
Ala, Trp, Phe, Leu,
Gln, Asn, His, Tyr




Ile, Val, Asn, Gln,





His, Tyr, Ser, Thr, Cys




Pro336
Ala, Arg, Gly
Ala, Gly


6
Met335
Ala, Trp, Phe, Leu, Ile,
Gln, Asn, His, Tyr




Val, Asn, Gln,





His, Tyr, Ser, Thr, Cys




Pro336
Ala, Arg, Gly
Ala, Gly



Glu363
Gln
Gln


7
Met335
Ala, Trp, Phe, Leu, Ile,
Gln, Asn, His,




Val, Asn, Gln,
Tyr, Leu




His, Tyr, Ser, Thr, Cys




Pro336
Ala, Arg, Gly
Ala, Arg, Gly



Ser337
Ala, Pro, Thr
Pro, Thr



Pro339
Deletion
Deletion



Pro340
Gly
Gly









Furthermore, by substituting the amino acids at some positions in the HPPD polypeptide sequences of Scenedesmus obliquus, the tolerance of crop plants as described herein towards the herbicides as described herein could be remarkably increased.


Thus, in a preferred embodiment,-the mutated HPPD of the present invention comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, which comprises one or more of the following:


the amino acid corresponding to or at position 30 is other than proline, the amino acid corresponding to or at position 39 is other than Phe, the amino acid corresponding to or at position 54 is other than Gly, the amino acid corresponding to or at position 57 is other than Met, the amino acid corresponding to or at position 84 is other than Phe, the amino acid corresponding to or at position 210 is other than Val, the amino acid corresponding to or at position 212 is other than Asn, the amino acid corresponding to or at position 223 is other than Val, the amino acid corresponding to or at position 243 is other than Val, the amino acid corresponding to or at position 247 is other than Leu, the amino acid corresponding to or at position 249 is other than Ser, the amino acid corresponding to or at position 251 is other than Val, the amino acid corresponding to or at position 264 is other than Asn, the amino acid corresponding to or at position 291 is other than Leu, the amino acid corresponding to or at position 306 is other than His, the amino acid corresponding to or at position 317 is other than Gln, the amino acid corresponding to or at position 318 is other than Ala, the amino acid corresponding to or at position 319 is other than Ala, the amino acid corresponding to or at position 321 is other than Gly, the amino acid corresponding to or at position 326 is other than Lys, the amino acid corresponding to or at position 327 is other than Arg, the amino acid corresponding to or at position 331 is other than Lys, the amino acid corresponding to or at position 341 is other than Trp, the amino acid corresponding to or at position 342 is other than Ala, the amino acid corresponding to or at position 345 is other than Glu, the amino acid corresponding to or at position 350 is other than Leu, the amino acid corresponding to or at position 363 is other than Phe, the amino acid corresponding to or at position 367 is other than Leu, the amino acid corresponding to or at position 373 is other than Ile, the amino acid corresponding to or at position 374 is other than Phe, the amino acid corresponding to or at position 375 is other than Ile, the amino acid corresponding to or at position 379 is other than Glu, the amino acid corresponding to or at position 405 is other than Gly, the amino acid corresponding to or at position 407 is other than Phe, the amino acid corresponding to or at position 410 is other than Gly, the amino acid corresponding to or at position 412 is other than Phe, the amino acid corresponding to or at position 414 is other than Glu, the amino acid corresponding to or at position 419 is other than Ile, the amino acid corresponding to or at position 421 is other than Glu, the amino acid corresponding to or at position 422 is other than Tyr.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 367 is Val, and the amino acid corresponding to or at position 375 is Leu.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 367 is Val, and the amino acid corresponding to or at position 375 is Leu, and the amino acid corresponding to or at position 39 is Leu.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 367 is Val, and the amino acid corresponding to or at position 375 is Leu, and the amino acid corresponding to or at position 39 is Trp.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 345 is Ala, Arg, Asn, Asp, Cys, Gln, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Gln


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 345 is Gln, and the amino acid corresponding to or at position 341 is Ile.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 345 is Gln, and the amino acid corresponding to or at position 326 is Glu.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 345 is Gln, and the amino acid corresponding to or at position 326 is Asp.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 345 is Gin, and the amino acid corresponding to or at position 326 is Gin.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 318 is Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Pro.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 319 is Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, Val, particularly preferred Pro.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 318 is Pro, and the amino acid corresponding to or at position 319 is Pro.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 321 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 350 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Met.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 405 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 251 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, or Tyr, particularly preferred Ala.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 317 is Ala, Arg, Asn, Asp, Cys, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred His or Met.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 379 is Ala, Arg, Asn, Asp, Cys, Gln, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Gln.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 350 is Met, and the amino acid corresponding to or at position 318 is Arg.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 350 is Met, and the amino acid corresponding to or at position 318 is Gly.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 350 is Met, and the amino acid corresponding to or at position 318 is Arg, and the amino acid corresponding to or at position 317 is Asn.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 210 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, or Tyr.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 317 is His, and the amino acid corresponding to or at position 318 is Gly, and the amino acid corresponding to or at position 345 is Gln.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 317 is Met, and the amino acid corresponding to or at position 318 is Gly, and the amino acid corresponding to or at position 345 is Gin.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 363 is Ala, Arg, Asn, Asp, Cys, Gin, Glu, Gly, His, Ile, Leu, Lys, Met, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Ile.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 419 is Ala, Arg, Asn, Asp, Cys, Gin, Glu, Gly, His, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 249 is Ala, Arg, Asn, Asp, Cys, Gin, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 247 is Ala, Arg, Asn, Asp, Cys, Gin, Glu, Gly, His, Ile, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 407 is Ala, Arg, Asn, Asp, Cys, Gin, Glu, Gly, His, Ile, Leu, Lys, Met, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 306 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val, particularly preferred Lys.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 30 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 54 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 57 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 84 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 212 is Ala, Arg, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 223 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, or Tyr.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 243 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, or Tyr.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 264 is Ala, Arg, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 291 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 327 is Ala, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 331 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 342 is Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 373 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 374 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 410 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 412 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 414 is Ala, Arg, Asn, Asp, Cys, Gln, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 421 is Ala, Arg, Asn, Asp, Cys, Gln, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, Tyr, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 422 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Phe, Pro, Ser, Thr, Trp, or Val.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 251 is Ala, and the amino acid corresponding to or at position 405 is Asp.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 327 is Gly, and the amino acid corresponding to or at position 421 is Asp.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 251 is Ala, and the amino acid corresponding to or at position 306 is Arg, and the amino acid corresponding to or at position 317 is Leu, and the amino acid corresponding to or at position 318 is Pro, and the amino acid corresponding to or at position 321 is Pro, and the amino acid corresponding to or at position 331 is Glu, and the amino acid corresponding to or at position 350 is Met.


In another preferred embodiment, the mutated HPPD comprises a variant of the sequence of SEQ ID NO: 50, or a homologue or functional equivalent thereof, in which:


the amino acid corresponding to or at position 407 is Ala, Arg, Asn, Asp, Cys, Gln, Glu, Gly, His, Ile, Leu, Lys, Met, Pro, Ser, Thr, Trp, Tyr, or Val.


Following mutagenesis of one of the sequences as shown herein, the encoded protein can be expressed recombinantly and the activity of the protein can be determined using, for example, assays described herein.


It will be within the knowledge of the skilled artisan to identify conserved regions and motifs shared between the homologues, orthologues and paralogues of of SEQ ID NO: 2, 5, 8, 11, 14, 17, 20, 22, 24, 26, 28, 30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 53, 55, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, and respectively SEQ ID NO: 48 or 50. Having identified such conserved regions that may represent suitable binding motifs, amino acids corresponding to the amino acids listed in Table 4a and 4b, 4c, and 4d can be chosen to be substituted by any other amino acid by conserved amino acids, and more preferably by the amino acids of tables 4a and 4b, 4c, and 4d.


Numerous crop plants, for example Clearfield® oilseed rape, tolerant to imidazolinones, for example imazamox, have been generated with the aid of classic breeding methods (mutagenesis). Crop plants such as soybeans, cotton, corn, beet and oilseed rape, resistant to glyphosate or glufosinate, which are available under the tradenames RoundupReady® (glyphosate) and Liberty Link® (glufosinate) have been generated with the aid of genetic engineering methods.


Accordingly, the term “crop plants” also includes plants which, with the aid of genetic engineering, produce one or more toxins, for example those of the bacterial strain Bacillus ssp. Toxins which are produced by such genetically modified plants include, for example, insecticidal proteins of Bacillus spp., in particular B. thuringiensis, such as the endotoxins Cry1Ab, Cry1Ac, Cry1F, Cry1Fa2, Cry2Ab, Cry3A, Cry3Bb1, Cry9c, Cry34Ab1 or Cry35Ab1; or vegetative insecticidal proteins (VIPs), for example VIP1, VIP2, VIP3, or VIP3A; insecticidal proteins of nematode-colonizing bacteria, for example Photorhabdus spp. or Xenorhabdus spp.; toxins of animal organisms, for example wasp, spider or scorpion toxins; fungal toxins, for example from Streptomycetes; plant lectins, for example from peas or barley; agglutinins; proteinase inhibitors, for example trypsin inhibitors, serine protease inhibitors, patatin, cystatin or papain inhibitors, ribosome-inactivating proteins (RIPs), for example ricin, corn-RIP, abrin, luffin, saporin or bryodin; steroid-metabolizing enzymes, for example 3-hydroxysteroid oxidase, ecdysteroid-IDP glycosyl transferase, cholesterol oxidase, ecdysone inhibitors, or HMG-CoA reductase; ion channel blockers, for example inhibitors of sodium channels or calcium channels; juvenile hormone esterase; receptors of the diuretic hormone (helicokinin receptors); stilbene synthase, bibenzyl synthase, chitinases and glucanases. In the plants, these toxins may also be produced as pretoxins, hybrid proteins or truncated or otherwise modified proteins. Hybrid proteins are characterized by a novel combination of different protein domains (see, for example, WO 2002/015701). Further examples of such toxins or genetically modified plants which produce these toxins are disclosed in EP-A 374 753, WO 93/007278, WO 95/34656, EP-A 427 529, EP-A 451 878, WO 03/018810 and WO 03/052073. The methods for producing these genetically modified plants are known to the person skilled in the art and disclosed, for example, in the publications mentioned above. Numerous of the toxins mentioned above bestow, upon the plants by which they are produced, tolerance to pests from all taxonomic classes of arthropods, in particular to beetles (Coeleropta), dipterans (Diptera) and butterflies (Lepidoptera) and to nematodes (Nematoda).


Genetically modified plants which produce one or more genes coding for insecticidal toxins are described, for example, in the publications mentioned above, and some of them are commercially available, such as, for example, YieldGard® (corn varieties producing the toxin Cry1Ab), YieldGard® Plus (corn varieties which produce the toxins Cry1Ab and Cry3Bb1), Starlink® (corn varieties which produce the toxin Cry9c), Herculex® RW (corn varieties which produce the toxins Cry34Ab1, Cry35Ab1 and the enzyme phosphinothricin-N-acetyltransferase [PAT]); NuCOTN® 33B (cotton varieties which produce the toxin Cry1Ac), Bollgard® I (cotton varieties which produce the toxin Cry1Ac), Bollgard® II (cotton varieties which produce the toxins Cry1Ac and Cry2Ab2); VIPCOT° (cotton varieties which produce a VIP toxin); NewLeaf® (potato varieties which produce the toxin Cry3A); Bt-Xtra®, NatureGard®, KnockOut®, BiteGard®, Protecta®, Bt11 (for example Agrisure° CB) and Bt176 from Syngenta Seeds SAS, France (corn varieties which produce the toxin Cry1Ab and the PAT enyzme), MIR604 from Syngenta Seeds SAS, France (corn varieties which produce a modified version of the toxin Cry3A, see WO 03/018810), MON 863 from Monsanto Europe S.A., Belgium (corn varieties which produce the toxin Cry3Bb1), IPC 531 from Monsanto Europe S.A., Belgium (cotton varieties which produce a modified version of the toxin Cry1Ac) and 1507 from Pioneer Overseas Corporation, Belgium (corn varieties which produce the toxin Cryl F and the PAT enzyme).


Accordingly, the term “crop plants” also includes plants which, with the aid of genetic engineering, produce one or more proteins which are more robust or have increased resistance to bacterial, viral or fungal pathogens, such as, for example, pathogenesis-related proteins (PR proteins, see EP-A 0 392 225), resistance proteins (for example potato varieties producing two resistance genes against Phytophthora infestans from the wild Mexican potato Solanum bulbocastanum) or T4 lysozyme (for example potato cultivars which, by producing this protein, are resistant to bacteria such as Erwinia amylvora).


Accordingly, the term “crop plants” also includes plants whose productivity has been improved with the aid of genetic engineering methods, for example by enhancing the potential yield (for example biomass, grain yield, starch, oil or protein content), tolerance to drought, salt or other limiting environmental factors or resistance to pests and fungal, bacterial and viral pathogens.


The term “crop plants” also includes plants whose ingredients have been modified with the aid of genetic engineering methods in particular for improving human or animal diet, for example by oil plants producing health-promoting long-chain omega 3 fatty acids or monounsaturated omega 9 fatty acids (for example Nexera® oilseed rape).


The term “crop plants” also includes plants which have been modified with the aid of genetic engineering methods for improving the production of raw materials, for example by increasing the amylopectin content of potatoes (Amflora® potato).


Furthermore, it has been found that the compounds of formula (I) are also suitable for the defoliation and/or desiccation of plant parts, for which crop plants such as cotton, potato, oilseed rape, sunflower, soybean or field beans, in particular cotton, are suitable. In this regard, there have been found compositions for the desiccation and/or defoliation of plants, processes for preparing these compositions and methods for desiccating and/or defoliating plants using the compounds of formula (I).


As desiccants, the compounds of formula (I) are particularly suitable for desiccating the above-ground parts of crop plants such as potato, oilseed rape, sunflower and soybean, but also cereals. This makes possible the fully mechanical harvesting of these important crop plants.


Also of economic interest is to facilitate harvesting, which is made possible by concentrating within a certain period of time the dehiscence, or reduction of adhesion to the tree, in citrus fruit, olives and other species and varieties of pomaceous fruit, stone fruit and nuts. The same mechanism, i.e. the promotion of the development of abscission tissue between fruit part or leaf part and shoot part of the plants is also essential for the readily controllable defoliation of useful plants, in particular cotton.


Moreover, a shortening of the time interval in which the individual cotton plants mature leads to an increased fiber quality after harvesting.


In a specific embodiment, the compounds according to the invention, the N-oxides or agriculturally suitable salts thereof are used for controlling at least one of the following undesired plants: Alopecurus myosuroiedes, Avena fatua, Echinocloa crus-galli, Amaranthus retroflexus, Chenopodium album, Setaria faberi.


The compounds of formula (I), or the herbicidal compositions comprising the compounds of formula (I), can be used, for example, in the form of ready-to-spray aqueous solutions, powders, suspensions, also highly concentrated aqueous, oily or other suspensions or dispersions, emulsions, oil dispersions, pastes, dusts, materials for broadcasting, or granules, by means of spraying, atomizing, dusting, spreading, watering or treatment of the seed or mixing with the seed. The use forms depend on the intended purpose; in each case, they should ensure the finest possible distribution of the active ingredients according to the invention. The herbicidal compositions comprise a herbicidally effective amount of at least one compound of the formula (I) or an agriculturally useful salt of I, and auxiliaries which are customary for the formulation of crop protection agents.


Examples of auxiliaries customary for the formulation of crop protection agents are inert auxiliaries, solid carriers, surfactants (such as dispersants, protective colloids, emulsifiers, wetting agents and tackifiers), organic and inorganic thickeners, bactericides, antifreeze agents, antifoams, if appropriate colorants and, for seed formulations, adhesives.


Examples of thickeners (i.e. compounds which impart to the formulation modified flow properties, i.e. high viscosity in the state of rest and low viscosity in motion) are polysaccharides, such as xanthan gum (Kelzan® from Kelco), Rhodopol® 23 (Rhone Poulenc) or Veegum® (from R. T. Vanderbilt), and also organic and inorganic sheet minerals, such as Attaclay® (from Engelhardt).


Examples of antifoams are silicone emulsions (such as, for example, Silikon® SRE, Wacker or Rhodorsil® from Rhodia), long-chain alcohols, fatty acids, salts of fatty acids, organofluorine compounds and mixtures thereof.


Bactericides can be added for stabilizing the aqueous herbicidal formulation. Examples of bactericides are bactericides based on diclorophen and benzyl alcohol hemiformal (Proxel® from ICI or Acticide® RS from Thor Chemie and Kathon® MK from Rohm & Haas), and also isothiazolinone derivates, such as alkylisothiazolinones and benzisothiazolinones (Acticide MBS from Thor Chemie).


Examples of antifreeze agents are ethylene glycol, propylene glycol, urea or glycerol. Examples of colorants are both sparingly water-soluble pigments and water-soluble dyes. Examples which may be mentioned are the dyes known under the names Rhodamin B, C.I. Pigment Red 112 and C.I. Solvent Red 1, and also pigment blue 15:4, pigment blue 15:3, pigment blue 15:2, pigment blue 15:1, pigment blue 80, pigment yellow 1, pigment yellow 13, pigment red 112, pigment red 48:2, pigment red 48:1, pigment red 57:1, pigment red 53:1, pigment orange 43, pigment orange 34, pigment orange 5, pigment green 36, pigment green 7, pigment white 6, pigment brown 25, basic violet 10, basic violet 49, acid red 51, acid red 52, acid red 14, acid blue 9, acid yellow 23, basic red 10, basic red 108.


Examples of adhesives are polyvinylpyrrolidone, polyvinyl acetate, polyvinyl alcohol and tylose.


Suitable inert auxiliaries are, for example, the following:


mineral oil fractions of medium to high boiling point, such as kerosene and diesel oil, furthermore coal tar oils and oils of vegetable or animal origin, aliphatic, cyclic and aromatic hydrocarbons, for example paraffin, tetrahydronaphthalene, alkylated naphthalenes and their derivatives, alkylated benzenes and their derivatives, alcohols such as methanol, ethanol, propanol, butanol and cyclohexanol, ketones such as cyclohexanone or strongly polar solvents, for example amines such as N-methylpyrrolidone, and water.


Solid carriers are mineral earths such as silicas, silica gels, silicates, talc, kaolin, limestone, lime, chalk, bole, loess, clay, dolomite, diatomaceous earth, calcium sulfate, magnesium sulfate and magnesium oxide, ground synthetic materials, fertilizers such as ammonium sulfate, ammonium phosphate, ammonium nitrate and ureas, and products of vegetable origin, such as cereal meal, tree bark meal, wood meal and nutshell meal, cellulose powders, or other solid carriers.


Suitable surfactants (adjuvants, wetting agents, tackifiers, dispersants and also emulsifiers) are the alkali metal salts, alkaline earth metal salts and ammonium salts of aromatic sulfonic acids, for example lignosulfonic acids (e.g. Borrespers-types, Borregaard), phenolsulfonic acids, naphthalenesulfonic acids (Morwet types, Akzo Nobel) and dibutylnaphthalenesulfonic acid (Nekal types, BASF SE), and of fatty acids, alkyl- and alkylarylsulfonates, alkyl sulfates, lauryl ether sulfates and fatty alcohol sulfates, and salts of sulfated hexa-, hepta- and octadecanols, and also of fatty alcohol glycol ethers, condensates of sulfonated naphthalene and its derivatives with formaldehyde, condensates of naphthalene or of the naphthalenesulfonic acids with phenol and formaldehyde, polyoxyethylene octylphenol ether, ethoxylated isooctyl-, octyl- or nonylphenol, alkylphenyl or tributylphenyl polyglycol ether, alkylaryl polyether alcohols, isotridecyl alcohol, fatty alcohol/ethylene oxide condensates, ethoxylated castor oil, polyoxyethylene alkyl ethers or polyoxypropylene alkyl ethers, lauryl alcohol polyglycol ether acetate, sorbitol esters, lignosulfite waste liquors and proteins, denatured proteins, polysaccharides (e.g. methylcellulose), hydrophobically modified starches, polyvinyl alcohol (Mowiol types Clariant), polycarboxylates (BASF SE, Sokalan types), polyalkoxylates, polyvinylamine (BASF SE, Lupamine types), polyethyleneimine (BASF SE, Lupasol types), polyvinylpyrrolidone and copolymers thereof.


Powders, materials for broadcasting and dusts can be prepared by mixing or grinding the active ingredients together with a solid carrier.


Granules, for example coated granules, impregnated granules and homogeneous granules, can be prepared by binding the active ingredients to solid carriers.


Aqueous use forms can be prepared from emulsion concentrates, suspensions, pastes, wettable powders or water-dispersible granules by adding water. To prepare emulsions, pastes or oil dispersions, the compounds of formula (I) or la, either as such or dissolved in an oil or solvent, can be homogenized in water by means of a wetting agent, tackifier, dispersant or emulsifier. Alternatively, it is also possible to prepare concentrates comprising active substance, wetting agent, tackifier, dispersant or emulsifier and, if desired, solvent or oil, which are suitable for dilution with water.


The concentrations of the compounds of formula (I) in the ready-to-use preparations can be varied within wide ranges. In general, the formulations comprise from 0.001 to 98% by weight, preferably 0.01 to 95% by weight of at least one active compound. The active compounds are employed in a purity of from 90% to 100%, preferably 95% to 100% (according to NMR spectrum).


The formulations or ready-to-use preparations may also comprise acids, bases or buffer systems, suitable examples being phosphoric acid or sulfuric acid, or urea or ammonia.


The compounds of formula (I) of the invention can for example be formulated as follows:


1. Products for Dilution with Water


A. Water-Soluble Concentrates


10 parts by weight of active compound are dissolved in 90 parts by weight of water or a water-soluble solvent. As an alternative, wetters or other adjuvants are added. The active compound dissolves upon dilution with water. This gives a formulation with an active compound content of 10% by weight.


B. Dispersible Concentrates


20 parts by weight of active compound are dissolved in 70 parts by weight of cyclohexanone with addition of 10 parts by weight of a dispersant, for example polyvinylpyrrolidone. Dilution with water gives a dispersion. The active compound content is 20% by weight.


C. Emulsifiable Concentrates


15 parts by weight of active compound are dissolved in 75 parts by weight of an organic solvent (e.g. alkylaromatics) with addition of calcium dodecylbenzenesulfonate and castor oil ethoxylate (in each case 5 parts by weight). Dilution with water gives an emulsion. The formulation has an active compound content of 15% by weight.


D. Emulsions


25 parts by weight of active compound are dissolved in 35 parts by weight of an organic solvent (e.g. alkylaromatics) with addition of calcium dodecylbenzenesulfonate and castor oil ethoxylate (in each case 5 parts by weight). This mixture is introduced into 30 parts by weight of water by means of an emulsifier (e.g. Ultraturrax) and made into a homogeneous emulsion. Dilution with water gives an emulsion. The formulation has an active compound content of 25% by weight.


E. Suspensions


In an agitated ball mill, 20 parts by weight of active compound are comminuted with addition of 10 parts by weight of dispersants and wetters and 70 parts by weight of water or an organic solvent to give a fine active compound suspension. Dilution with water gives a stable suspension of the active compound. The active compound content in the formulation is 20% by weight.


F. Water-Dispersible Granules and Water-Soluble Granules


50 parts by weight of active compound are ground finely with addition of 50 parts by weight of dispersants and wetters and made into water-dispersible or water-soluble granules by means of technical appliances (for example extrusion, spray tower, fluidized bed). Dilution with water gives a stable dispersion or solution of the active compound. The formulation has an active compound content of 50% by weight.


G. Water-Dispersible Powders and Water-Soluble Powders 75 parts by weight of active compound are ground in a rotor-stator mill with addition of 25 parts by weight of dispersants, wetters and silica gel. Dilution with water gives a stable dispersion or solution of the active compound. The active compound content of the formulation is 75% by weight.


H. Gel Formulations


In a ball mill, 20 parts by weight of active compound, 10 parts by weight of dispersant, 1 part by weight of gelling agent and 70 parts by weight of water or of an organic solvent are ground to give a fine suspension. Dilution with water gives a stable suspension with active compound content of 20% by weight.


2. Products to be Applied Undiluted


I. Dusts


5 parts by weight of active compound are ground finely and mixed intimately with 95 parts by weight of finely divided kaolin. This gives a dusting powder with an active compound content of 5% by weight.


J. Granules (GR, FG, GG, MG)


0.5 parts by weight of active compound are ground finely and associated with 99.5 parts by weight of carriers. Current methods here are extrusion, spray-drying or the fluidized bed. This gives granules to be applied undiluted with an active compound content of 0.5% by weight.


K. ULV Solutions (UL)


10 parts by weight of active compound are dissolved in 90 parts by weight of an organic solvent, for example xylene. This gives a product to be applied undiluted with an active compound content of 10% by weight.


The compounds of formula (I) or the herbicidal compositions comprising them can be applied pre- or post-emergence, or together with the seed of a crop plant. It is also possible to apply the herbicidal compositions or active compounds by applying seed, pretreated with the herbicidal compositions or active compounds, of a crop plant. If the active compounds are less well tolerated by certain crop plants, application techniques may be used in which the herbicidal compositions are sprayed, with the aid of the spraying equipment, in such a way that as far as possible they do not come into contact with the leaves of the sensitive crop plants, while the active compounds reach the leaves of undesirable plants growing underneath, or the bare soil surface (post-directed, lay-by).


In a further embodiment, the compounds of formula (I) or the herbicidal compositions can be applied by treating seed.


The treatment of seed comprises essentially all procedures familiar to the person skilled in the art (seed dressing, seed coating, seed dusting, seed soaking, seed film coating, seed multilayer coating, seed encrusting, seed dripping and seed pelleting) based on the compounds of formula (I) according to the invention or the compositions prepared therefrom. Here, the herbicidal compositions can be applied diluted or undiluted.


The term seed comprises seed of all types, such as, for example, corns, seeds, fruits, tubers, cuttings and similar forms. Here, preferably, the term seed describes corns and seeds.


The seed used can be seed of the useful plants mentioned above, but also the seed of transgenic plants or plants obtained by customary breeding methods.


The rates of application of active compound are from 0.001 to 3.0, preferably 0.01 to 1.0, kg/ha of active substance (a.s.), depending on the control target, the season, the target plants and the growth stage. To treat the seed, the compounds of formula (I) are generally employed in amounts of from 0.001 to 10 kg per 100 kg of seed.


It may also be advantageous to use the compounds of formula (I) in combination with safeners, also termed herbicide safeners. Safeners are chemical compounds which prevent or reduce damage to useful plants without substantially affecting the herbicidal action of the compounds of formula (I) on unwanted plants. They can be used both before sowing (for example in the treatment of seed, or on cuttings or seedlings) and before or after the emergence of the useful plant. The safeners and the compounds of formula (I) can be used simultaneously or in succession.


Suitable safeners are, for example, (quinolin-8-oxy)acetic acids, 1-phenyl-5-haloalkyl-1H-1,2,4-triazole-3-carboxylic acids, 1-phenyl-4,5-dihydro-5-alkyl-1H-pyrazole-3,5-dicarboxylic acids, 4,5-dihydro-5,5-diaryl-3-isoxazolecarboxylic acids, dichloroacetamides, alpha-oximinophenylacetonitriles, acetophenone oximes, 4,6-dihalo-2-phenylpyrimidines, N-[[4-(aminocarbonyl)phenyl]sulfonyl]-2-benzamides, 1,8-naphthalic anhydride, 2-halo-4-(haloalkyl)-5-thiazolecarboxylic acids, phosphorothiolates and O-phenyl N-alkylcarbamates and their agriculturally useful salts and, provided that they have an acid function, their agriculturally useful derivatives, such as amides, esters and thioesters.


To broaden the activity spectrum and to obtain synergistic effects, the compounds of the formula (I) can be mixed and jointly applied with numerous representatives of other compounds having herbicidal activity (herbicides B) or growth-regulating activitiy, optionally in combination with safeners. Suitable mixing partners are, for example, 1,2,4-thiadiazoles, 1,3,4-thiadiazoles, amides, aminophosphoric acid and its derivatives, aminotriazoles, anilides, aryloxy/heteroaryl-oxyalkanoic acids and their derivatives, benzoic acid and its derivatives, benzothiadiazinones, 2-(hetaroyl/aroyl)-1,3-cyclohexanediones, heteroaryl aryl ketones, benzyl isoxazolidinones, meta-CF3-phenyl derivatives, carbamates, quinoline carboxylic acid and its derivatives, chloroacetanilides, cyclohexenone oxime ether derivates, diazines, dichloropropionic acid and its derivatives, dihydrobenzofurans, dihydrofuran-3-ones, dinitroanilines, dinitrophenols, diphenyl ethers, dipyridyls, halocarboxylic acids and their derivatives, ureas, 3-phenyluracils, imidazoles, imidazolinones, N-phenyl-3,4,5,6-tetrahydrophthalimides, oxadiazoles, oxiranes, phenols, aryloxy- and heteroaryloxyphenoxypropionic esters, phenylacetic acid and its derivatives, 2-phenylpropionic acid and its derivatives, pyrazoles, phenylpyrazoles, pyridazines, pyridinecarboxylic acid and its derivatives, pyrimidyl ethers, sulfonamides, sulfonylureas, triazines, triazinones, triazolinones, triazolecarboxamides, uracils and also phenylpyrazolines and isoxazolines and their derivatives.


Moreover, it may be useful to apply the compounds of formula (I) alone or in combination with other herbicides B or else also mixed with further crop protection agents, jointly, for example with compositions for controlling pests or phytopathogenic fungi or bacteria. Also of interest is the miscibility with mineral salt solutions which are employed for alleviating nutritional and trace element deficiencies. Other additives such as nonphytotoxic oils and oil concentrates may also be added.


Examples of herbicides B which can be used in combination with the benzamide compounds of formula (I) according to the present invention are:


b1) from the group of the lipid biosynthesis inhibitors:


alloxydim, alloxydim-sodium, butroxydim, clethodim, clodinafop, clodinafop-propargyl, cycloxydim, cyhalofop, cyhalofop-butyl, diclofop, diclofop-methyl, fenoxaprop, fenoxaprop-ethyl, fenoxaprop-P, fenoxaprop-P-ethyl, fluazifop, fluazifop-butyl, fluazifop-P, fluazifop-P-butyl, haloxyfop, haloxyfop-methyl, haloxyfop-P, haloxyfop-P-methyl, metamifop, pinoxaden, profoxydim, propaquizafop, quizalofop, quizalofop-ethyl, quizalofop-tefuryl, quizalofop-P, quizalofop-P-ethyl, quizalofop-P-tefuryl, sethoxydim, tepraloxydim, tralkoxydim, 4-(4′-Chloro-4-cyclopropyl-2′-fluoro[1,1′-biphenyl]-3-yl)-5-hydroxy-2,2,6,6-tetramethyl-2H-pyran-3(6H)-one (CAS 1312337-72-6); 4-(2′,4′-Dichloro-4-cyclopropyl[1,1′-biphenyl]-3-yl)-5-hydroxy-2,2,6,6-tetramethyl-2H-pyran-3(6H)-one (CAS 1312337-45-3); 4-(4′-Chloro-4-ethyl-2′-fluoro[1,1′-biphenyl]-3-yl)-5-hydroxy-2,2,6,6-tetramethyl-2H-pyran-3(6H)-one (CAS 1033757-93-5); 4-(2′,4′-Dichloro-4-ethyl[1,1′-biphenyl]-3-yl)-2,2,6,6-tetramethyl-2H-pyran-3,5(4H,6H)-dione (CAS 1312340-84-3); 5-(Acetyloxy)-4-(4′-chloro-4-cyclopropyl-2′-fluoro[1,1′-biphenyl]-3-yl)-3,6-dihydro-2,2,6,6-tetramethyl-2H-pyran-3-one (CAS 1312337-48-6); 5-(Acetyloxy)-4-(2′,4′-dichloro-4-cyclopropyl- [1,1′-biphenyl]-3-yl)-3,6-dihydro-2,2,6,6-tetramethyl-2H-pyran-3-one; 5-(Acetyloxy)-4-(4′-chloro-4-ethyl-2′-fluoro[1,1′-biphenyl]-3-yl)-3,6-dihydro-2,2,6,6-tetramethyl-2H-pyran-3-one (CAS 1312340-82-1); 5-(Acetyloxy)-4-(2′,4′-dichloro-4-ethyl[1,1′-biphenyl]-3-yl)-3,6-dihydro-2,2,6,6-tetramethyl-2H-pyran-3-one (CAS 1033760-55-2); 4-(4′-Chloro-4-cyclopropyl-2′-fluoro[1,1′-biphenyl]-3-yl)-5,6-dihydro-2,2,6,6-tetramethyl-5-oxo-2H-pyran-3-yl carbonic acid methyl ester (CAS 1312337-51-1); 4-(2′,4′-Dichloro -4-cyclopropyl- [1,1′-biphenyl]-3-yl)-5,6-dihydro-2,2,6,6-tetramethyl-5-oxo-2H-pyran-3-yl carbonic acid methyl ester; 4-(4′-Chloro-4-ethyl-2′-fluoro[1,1′-biphenyl]-3-yl)-5,6-dihydro-2,2,6,6-tetramethyl-5-oxo-2H-pyran-3-yl carbonic acid methyl ester (CAS 1312340-83-2); 4-(2′,4′-Dichloro-4-ethyl[1,1′-biphenyl]-3-yl)-5,6-dihydro-2,2,6,6-tetramethyl-5-oxo-2H-pyran-3-yl carbonic acid methyl ester (CAS 1033760-58-5), benfuresate, butylate, cycloate, dalapon, dimepiperate, EPTC, esprocarb, ethofumesate, flupropanate, molinate, orbencarb, pebulate, prosulfocarb, TCA, thiobencarb, tiocarbazil, triallate and vernolate;


b2) from the group of the ALS inhibitors:


amidosulfuron, azimsulfuron, bensulfuron, bensulfuron-methyl, bispyribac, bispyribac-sodium, chlorimuron, chlorimuron-ethyl, chlorsulfuron, cinosulfuron, cloransulam, cloransulam-methyl, cyclosulfamuron, diclosulam, ethametsulfuron, ethametsulfuron-methyl, ethoxysulfuron, flazasulfuron, florasulam, flucarbazone, flucarbazone-sodium, flucetosulfuron, flumetsulam, flupyrsulfuron, flupyrsulfuron-methyl-sodium, foramsulfuron, halosulfuron, halosulfuron-methyl, imazamethabenz, imazamethabenz-methyl, imazamox, imazapic, imazapyr, imazaquin, imazethapyr, imazosulfuron, iodosulfuron, iodosulfuron-methyl-sodium, mesosulfuron, metosulam, metsulfuron, metsulfuron-methyl, nicosulfuron, orthosulfamuron, oxasulfuron, penoxsulam, primisulfuron, primisulfuron-methyl, propoxycarbazone, propoxycarbazone-sodium, prosulfuron, pyrazosulfuron, pyrazosulfuron-ethyl, pyribenzoxim, pyrimisulfan, pyriftalid, pyriminobac, pyriminobac-methyl, pyrithiobac, pyrithiobac-sodium, pyroxsulam, rimsulfuron, sulfometuron, sulfometuron-methyl, sulfosulfuron, thiencarbazone, thiencarbazone-methyl, thifensulfuron, thifensulfuron-methyl, triasulfuron, tribenuron, tribenuron-methyl, trifloxysulfuron, triflusulfuron, triflusulfuron-methyl and tritosulfuron;


b3) from the group of the photosynthesis inhibitors:


ametryn, amicarbazone, atrazine, bentazone, bentazone-sodium, bromacil, bromofenoxim, bromoxynil and its salts and esters, chlorobromuron, chloridazone, chlorotoluron, chloroxuron, cyanazine, desmedipham, desmetryn, dimefuron, dimethametryn, diquat, diquat-dibromide, diuron, fluometuron, hexazinone, ioxynil and its salts and esters, isoproturon, isouron, karbutilate, lenacil, linuron, metamitron, methabenzthiazuron, metobenzuron, metoxuron, metribuzin, monolinuron, neburon, paraquat, paraquat-dichloride, paraquat-dimetilsulfate, pentanochlor, phenmedipham, phenmedipham-ethyl, prometon, prometryn, propanil, propazine, pyridafol, pyridate, siduron, simazine, simetryn, tebuthiuron, terbacil, terbumeton, terbuthylazine, terbutryn, thidiazuron, trietazine, 1-(6-tert-butylpyrimidin-4-yl)-2-hydroxy-4-methoxy-3-methyl-2H-pyrrol-5-one (CAS 1654744-66-7), 1-(5-tert-butylisoxazol-3-yl)-2-hydroxy-4-methoxy-3-methyl-2H-pyrrol-5-one (CAS 1637455-12-9), 1-(5-tert-butylisoxazol-3-yl)-4-chloro-2-hydroxy-3-methyl-2H-pyrrol-5-one (CAS 1637453-94-1), 1-(5-tert-butyl-1-methyl-pyrazol-3-yl)-4-chloro-2-hydroxy-3-methyl-2H-pyrrol-5-one (CAS 1654057-29-0), 1-(5-tert-butyl-1-methyl-pyrazol-3-yl)-3-chloro-2-hydroxy-4-methyl-2H-pyrrol-5-one (CAS 1654747-80-4), 4-hydroxy-1-methoxy-5-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one; (CAS 2023785-78-4), 4-hydroxy-1,5-dimethyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 2023785-79-5), 5-ethoxy-4-hydroxy-1-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 1701416-69-4), 4-hydroxy-1-methyl-3-[4-(trifluoromethyl)-2-pyridyl]imidazolidin-2-one (CAS 1708087-22-2), 4-hydroxy-1,5-dimethyl-3-[1-methyl-5-(trifluoromethyl)pyrazol-3-yl]imidazolidin-2-one (CAS 2023785-80-8) and 1-(5-tert-butylisoxazol-3-yl)-4-ethoxy-5-hydroxy-3-methyl-imidazolidin-2-one (CAS 1844836-64-1);


b4) from the group of the protoporphyrinogen-IX oxidase inhibitors:


acifluorfen, acifluorfen-sodium, azafenidin, bencarbazone, benzfendizone, bifenox, butafenacil, carfentrazone, carfentrazone-ethyl, chlomethoxyfen, cinidon-ethyl, fluazolate, flufenpyr, flufenpyr-ethyl, flumiclorac, flumiclorac-pentyl, flumioxazin, fluoroglycofen, fluoroglycofen-ethyl, fluthiacet, fluthiacet-methyl, fomesafen, halosafen, lactofen, oxadiargyl, oxadiazon, oxyfluorfen, pentoxazone, profluazol, pyraclonil, pyraflufen, pyraflufen-ethyl, saflufenacil, sulfentrazone, thidiazimin, 2-chloro-5-[3,6-dihydro-3-methyl-2,6-dioxo-4-(trifluoromethyl)-1(2H)-pyrimidinyl]-4-fluoro-N-[(isopropyl)methylsulfamoyl]benzamide (H-1; CAS 372137-35-4), ethyl [3-[2-chloro-4-fluoro-5-(1-methyl-6-trifluoromethyl-2,4-dioxo-1,2,3,4-tetrahydropyrimidin-3-yl)phenoxy]-2-pyridyloxy]acetate (H-2; CAS 353292-31-6), N-ethyl-3-(2,6-dichloro-4-trifluoromethylphenoxy)-5-methyl-1H-pyrazole-1-carboxamide (H-3; CAS 452098-92-9), N-tetrahydrofurfuryl-3-(2,6-dichloro-4-trifluoromethylphenoxy)-5-methyl-1H-pyrazole-1-carboxamide (H-4; CAS 915396-43-9), N-ethyl-3-(2-chloro-6-fluoro-4-trifluoromethylphenoxy)-5-methyl-1H-pyrazole-1-carboxamide (H-5; CAS 452099-05-7), N-tetrahydrofurfuryl-3-(2-chloro-6-fluoro-4-trifluoromethylphenoxy)-5-methyl-1H-pyrazole-1-carboxamide (H-6; CAS 45100-03-7), 3-[7-fluoro-3-oxo-4-(prop-2-ynyl)-3,4-dihydro-2H-benzo[1,4]oxazin-6-yl]-1,5-dimethyl-6-thioxo-[1,3,5]triazinan-2,4-dione (CAS 451484-50-7), 1,5-dimethyl-6-thioxo-3-(2,2,7-trifluoro-3-oxo-4-(prop-2-ynyl)-3,4-dihydro-2H-benzo[b][1,4]oxazin-6-yl)-1,3,5-triazinane-2,4-dione (trifludimoxazin), 2-(2,2,7-trifluoro-3-oxo-4-prop-2-ynyl-3,4-dihydro-2H-benzo[1,4]oxazin-6-yl)-4,5,6,7-tetrahydro-isoindole-1,3-dione (CAS 1300118-96-0), 1-methyl-6-trifluoromethyl-3-(2,2,7-trifluoro-3-oxo-4-prop-2-ynyl-3,4-dihydro-2H-benzo[1,4]oxazin-6-yl)-1H-pyrimidine-2,4-dione (CAS 1304113-05-0), methyl (E)-4-[2-chloro-5-[4-chloro-5-(difluoromethoxy)-1H-methyl-pyrazol-3-yl]-4-fluoro-phenoxy]-3-methoxy-but-2-enoate (CAS 948893-00-3), and 3-[7-chloro-5-fluoro-2-(trifluoromethyl)-1H-benzimidazol-4-yl]-1-methyl-6-(trifluoromethyl)-1H-pyrimidine-2,4-dione (CAS 212754-02-4);


b5) from the group of the bleacher herbicides:


aclonifen, amitrol, beflubutamid, benzobicyclon, benzofenap, clomazone, diflufenican, fenquinotrione, flumeturon, fluridone, flurochloridone, flurtamone, isoxaflutole, mesotrione, norflurazon, oxotrione (CAS 1486617-21-3), picolinafen, pyrasulfotole, pyrazolynate, pyrazoxyfen, sulcotrione, tefuryltrione, ternbotrione, tolpyralate, topramezone, 4-hydroxy-3-[[2-[(2-methoxyethoxy)methyl]-6-(trifluoromethyl)-3-pyridyl]carbonyl]bicyclo[3.2.1]oct-3-en-2-one (H-7; CAS 352010-68-5, bicyclopyrone), 4-(3-trifluoromethylphenoxy)-2-(4-trifluoromethylphenyl)-pyrimidine (H-8; CAS 180608-33-7) -chloro-3-methylsulfanyl-N-(1-methyltetrazol-5-yl)-4-(trifluoromethyl)benzamide (CAS 1361139-71-0), 2-(2,4-dichlorophenyl)methyl-4,4-dimethyl-3-isoxazolidone (CAS 81777-95-9) and 2-(2,5-dichlorophenyl)methyl-4,4-dimethyl-3-isoxazolidinone (CAS 81778-66-7);


b6) from the group of the EPSP synthase inhibitors:


glyphosate, glyphosate-isopropylammonium and glyphosate-trimesium (sulfosate);


b7) from the group of the glutamine synthase inhibitors:


bilanaphos (bialaphos), bilanaphos-sodium, glufosinate and glufosinate-ammonium;


b8) from the group of the DHP synthase inhibitors:


asulam;


b9) from the group of the mitose inhibitors:


amiprophos, amiprophos-methyl, benfluralin, butamiphos, butralin, carbetamide, chlorpropham, chlorthal, chlorthal-dimethyl, dinitramine, dithiopyr, ethalfluralin, fluchloralin, oryzalin, pendimethalin, prodiamine, propham, propyzamide, tebutam, thiazopyr and trifluralin;


b10) from the group of the VLCFA inhibitors:


acetochlor, alachlor, anilofos, butachlor, cafenstrole, dimethachlor, dimethanamid, dimethenamid-P, diphenamid, fentrazamide, flufenacet, mefenacet, metazachlor, metolachlor, metolachlor-S, naproanilide, napropamide, pethoxamid, piperophos, pretilachlor, propachlor, propisochlor, pyroxasulfone (KIH-485) and thenylchlor; Compounds of the formula 2:




embedded image


in which the variables have the following meanings:


Y is phenyl or 5- or 6-membered heteroaryl as defined at the outset, which radicals may be substituted by one to three groups Raa; R21, R22, R23, R24 are H, halogen or C1-C4-alkyl; X is O or NH; n is 0 or 1.


Compounds of the formula 2 have in particular the following meanings:


Y is




embedded image


where # denotes the bond to the skeleton of the molecule; and R21,R22, R23, R24 are H, CI, F or CH3; R25 is halogen, C1-C4-alkyl or C1-C4-haloalkyl; R26 is C1-C4-alkyl; R27 is halogen, C1-C4-alkoxy or C1-C4-haloalkoxy; R28 is H, halogen, C1-C4-alkyl, C1-C4-haloalkyl or C1-C4-haloalkoxy; m is 0, 1, 2 or 3; X is oxygen; n is 0 or 1.


Preferred compounds of the formula 2 have the following meanings:


Y is




embedded image


R21 is H; R22, R23 are F; R24 is H or F; X is oxygen; n is 0 or 1.


Particularly preferred compounds of the formula 2 are:


3-[5-(2,2-difluoroethoxy)-1-methyl-3-trifluoromethyl-1H-pyrazol-4-ylmethane-sulfonyl]-4-fluoro-5,5-dimethyl-4,5-dihydroisoxazole (2-1); 3-{[5-(2,2-difluoroethoxy)-1-methyl-3-trifluoromethyl-1H-pyrazol-4-yl]fluoromethanesulfonyl}-5,5-dimethyl-4,5-dihydroisoxazole (2-2); 4-(4-fluoro-5,5-dimethyl-4,5-dihydroisoxazole-3-sulfonylmethyl)-2-methyl-5-trifluoromethyl-2H-[1,2,3]triazole (2-3); 4-[(5,5-dimethyl-4,5-dihydroisoxazole-3-sulfonyl)fluoromethyl]-2-methyl-5-trifluoromethyl-2H-[1,2,3]triazole (2-4); 4-(5,5-dimethyl-4,5-dihydroisoxazole-3-sulfonylmethyl)-2-methyl-5-trifluoromethyl-2H-[1,2,3]triazole (2-5); 3-{[5-(2,2-difluoroethoxy)-1-methyl-3-trifluoromethyl-1H-pyrazol-4-yl]difluoromethanesulfonyl}-5,5-dimethyl-4,5-dihydroisoxazole (2-6); 4-[(5,5-dimethyl-4,5-dihydroisoxazole-3-sulfonyl)difluoromethyl]-2-methyl-5-trifluoromethyl-2H-[1,2,3]triazole (2-7); 3-{[5-(2,2-difluoroethoxy)-1-methyl-3-trifluoromethyl-1H-pyrazol-4-yl]difluoromethanesulfonyl}-4-fluoro-5,5-dimethyl-4,5-dihydroisoxazole (2-8); 4-[difluoro-(4-fluoro-5,5-dimethyl-4,5-dihydroisoxazole-3-sulfonyl)methyl]-2-methyl-5-trifluoromethyl-2H-[1,2,3]triazole (2-9);


b11) from the group of the cellulose biosynthesis inhibitors:


chlorthiamid, dichlobenil, flupoxam and isoxaben;


b12) from the group of the decoupler herbicides:


dinoseb, dinoterb and DNOC and its salts;


b13) from the group of the auxin herbicides:


2,4-D and its salts and esters, 2,4-DB and its salts and esters, aminopyralid and its salts such as aminopyralid-tris(2-hydroxypropyl)ammonium and its esters, benazolin, benazolin-ethyl, chloramben and its salts and esters, clomeprop, clopyralid and its salts and esters, dicamba and its salts and esters, dichlorprop and its salts and esters, dichlorprop-P and its salts and esters, fluroxypyr, fluroxypyr-butometyl, fluroxypyr-meptyl, halauxifen and its salts and esters, MCPA and its salts and esters, MCPA-thioethyl, MCPB and its salts and esters, mecoprop and its salts and esters, mecoprop-P and its salts and esters, picloram and its salts and esters, quinclorac, quinmerac, TBA (2,3,6) and its salts and esters, triclopyr and its salts and esters, 5,6-dichloro-2-cyclopropyl-4-pyrimidinecarboxylic acid (H-9; CAS 858956-08-8) and its salts and esters, florpyrauxifen, florpyrauxifen-benzyl (CAS 1390661-72-9) and 4-amino-3-chloro-5-fluoro-6-(7-fluoro-1H-indol-6-yl)picolinic acid (CAS 1629965-65-6);


b14) from the group of the auxin transport inhibitors: diflufenzopyr, diflufenzopyr-sodium, naptalam and naptalam-sodium;


b15) from the group of the other herbicides: bromobutide, chlorflurenol, chlorflurenol-methyl, cinmethylin, cumyluron, dalapon, dazomet, difenzoquat, difenzoquat-metilsulfate, dimethipin, DSMA, dymron, endothal and its salts, etobenzanid, flamprop, flamprop-isopropyl, flamprop-methyl, flamprop-M-isopropyl, flamprop-M-methyl, flurenol, flurenol-butyl, flurprimidol, fosamine, fosamine-ammonium, indanofan, maleic hydrazide, mefluidide, metam, methyl azide, methyl bromide, methyl-dymron, methyl iodide, MSMA, oleic acid, oxaziclomefone, pelargonic acid, pyributicarb, quinoclamine, triaziflam, tridiphane and 6-chloro-3-(2-cyclopropyl-6-methylphenoxy)-4-pyridazinol (H-10; CAS 499223-49-3) and its salts and esters.


Examples of preferred safeners C are benoxacor, cloquintocet, cyometrinil, cyprosulfamide, dichlormid, dicyclonone, dietholate, fenchlorazole, fenclorim, flurazole, fluxofenim, furilazole, isoxadifen, mefenpyr, mephenate, naphthalic anhydride, oxabetrinil, 4-(dichloroacetyl)-1-oxa-4-azaspiro[4.5]decane (H-11; MON4660, CAS 71526-07-3) and 2,2,5-trimethyl-3-(dichloroacetyl)-1,3-oxazolidine (H-12; R-29148, CAS 52836-31-4).


The active compounds of groups b1) to b15) and the safeners C are known herbicides and safeners, see, for example, The Compendium of Pesticide Common Names (http://www.alanwood.net/pesticides/); B. Hock, C. Fedtke, R. R. Schmidt, Herbizide [Herbicides], Georg Thieme Verlag, Stuttgart, 1995. Further herbicidally active compounds are known from WO 96/26202, WO 97/41116, WO 97/41117, WO 97/41118, WO 01/83459 and WO 2008/074991 and from W. Krämer et al. (ed.) “Modern Crop Protection Compounds”, Vol. 1, Wiley VCH, 2007 and the literature quoted therein.


The invention also relates to combinations comprising at least one benzamide compound of the formula (I) and at least one further active compound, in particular a compound having herbicide activity (herbicide B) preferably selected from the active compounds of groups b1 to b15, and/or a safener C.


The invention also relates to compositions in the form of a crop protection composition formulated as a 1-component composition comprising an active compound combination comprising at least one benzamide compound of the formula (I) and at least one further active compound, in particular a compound having herbicide activity (herbicide B) preferably selected from the active compounds of groups b1 to b15, and at least one solid or liquid carrier and/or one or more surfactants and, if desired, one or more further auxiliaries customary for crop protection compositions.


The invention also relates to compositions in the form of a crop protection composition formulated as a 1-component composition comprising an active compound combination comprising at least one benzamide compound of the formula (I) and at least one safener C and at least one solid or liquid carrier and/or one or more surfactants and, if desired, one or more further auxiliaries customary for crop protection compositions.


The invention also relates to compositions in the form of a crop protection composition formulated as a 1-component composition comprising an active compound combination comprising at least one benzamide compound of the formula (I) and at least one further active compound, in particular a compound having herbicide activity (herbicide B) which is preferably selected from the active compounds of groups b1 to b15, a safener C and at least one solid or liquid carrier and/or one or more surfactants and, if desired, one or more further auxiliaries customary for crop protection compositions.


The invention also relates to compositions in the form of a crop protection composition formulated as a 2-component composition comprising a first component comprising at least one compound of the formula (I), a solid or liquid carrier and/or one or more surfactants and a second component comprising at least one further active compound, in particular a compound having herbicide activity (herbicide B) which is preferably selected from the active compounds of groups b1 to b15, a solid or liquid carrier and/or one or more surfactants, where additionally both components may also comprise further auxiliaries customary for crop protection compositions.


The invention also relates to compositions in the form of a crop protection composition formulated as a 2-component composition comprising a first component comprising at least one compound of the formula (I), a solid or liquid carrier and/or one or more surfactants and a second component comprising at least one further active compound, in particular a compound having herbicide activity (herbicide B) which is preferably selected from the active compounds of groups b1 to b15, a solid or liquid carrier and/or one or more surfactants, where additionally both components may also comprise further auxiliaries customary for crop protection compositions, where the first component or the second component further comprises a safener C.


In binary compositions comprising at least one compound of the formula (I) as component A and at least one herbicide B, the weight ratio of the active compounds A:B is generally in the range of from 1:1000 to 1000:1, preferably in the range of from 1:500 to 500:1, in particular in the range of from 1:250 to 250:1 and particularly preferably in the range of from 1:75 to 75:1.


In binary compositions comprising at least one compound of the formula (I) as component A and at least one safener C, the weight ratio of the active compounds A:C is generally in the range of from 1:1000 to 1000:1, preferably in the range of from 1:500 to 500:1, in particular in the range of from 1:250 to 250:1 and particularly preferably in the range of from 1:75 to 75:1.


In ternary compositions comprising both at least one compound of the formula (I) as component A, at least one herbicide B and at least one safener C, the relative parts by weight of the components A:B are generally in the range of from 1:1000 to 1000:1, preferably in the range of from 1:500 to 500:1, in particular in the range of from 1:250 to 250:1 and particularly preferably in the range of from 1:75 to 75:1; the weight ratio of the components A:C is generally in the range of from 1:1000 to 1000:1, preferably in the range of from 1:500 to 500:1, in particular in the range of from 1:250 to 250:1 and particularly preferably in the range of from 1:75 to 75:1; and the weight ratio of the components B:C is generally in the range of from 1:1000 to 1000:1, preferably in the range of from 1:500 to 500:1, in particular in the range of from 1:250 to 250:1 and particularly preferably in the range of from 1:75 to 75:1. Preferably, the weight ratio of the components A +B to the component C is in the range of from 1:500 to 500:1, in particular in the range of from 1:250 to 250:1 and particularly preferably in the range of from 1:75 to 75:1.


Examples of particularly preferred compositions according to the invention comprising in each case one individualized compound of the formula (I) and one mixing partner or a mixing partner combination are given in Table B below.


A further aspect of the invention relates to the combinations B-1 to B-1406 listed in Table B below, where in each case one row of Table B corresponds to a herbicidal composition comprising one of the compounds of formula (I) individualized in the above description (component 1) and the further active compound from groups b1) to b15) and/or safener C stated in each case in the row in question (component 2). The active compounds in the combinations described are in each case preferably present in synergistically effective amounts.


Amongst these compositions B-1 to B-1406 a particular group of embodimemts relates to combinations B-1.1 to B-1406.1, where the compound of formula (I) is 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide and where the further active compound from groups b1) to b15) and/or safener C stated in each case in the row in question.


Amongst these compositions B-1 to B-1406 another particular group of embodimemts relates to combinations B-1.2 to B-1406.2, where the compound of formula (I) is 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[ethyl(2,2,2-trifluoroethyl)carbamoyl]-amino]benzamide and where the further active compound from groups b1) to b15) and/or safener C stated in each case in the row in question.


Amongst these compositions B-1 to B-1406 a further particular group of embodimemts relates to combinations B-1.3 to B-1406.3, where the compound of formula (I) is 2,4-dichloro-6-fluoro-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide and where the further active compound from groups b1) to b15) and/or safener C stated in each case in the row in question.











TABLE B






Herbicide(s) B
Safener C







B-1
clodinafop-propargyl



B-2
cycloxydim



B-3
cyhalofop-butyl



B-4
fenoxaprop-P-ethyl



B-5
pinoxaden



B-6
profoxydim



B-7
tepraloxydim



B-8
tralkoxydim



B-9
esprocarb



B-10
prosulfocarb



B-11
thiobencarb



B-12
triallate



B-13
bensulfuron-methyl



B-14
bispyribac-sodium



B-15
cyclosulfamuron



B-16
flumetsulam



B-17
flupyrsulfuron-methyl-sodium



B-18
foramsulfuron



B-19
imazamox



B-20
imazapic



B-21
imazapyr



B-22
imazaquin



B-23
imazethapyr



B-24
imazosulfuron



B-25
iodosulfuron-methyl-sodium



B-26
mesosulfuron



B-27
nicosulfuron



B-28
penoxsulam



B-29
propoxycarbazone-sodium



B-30
pyrazosulfuron-ethyl



B-31
pyroxsulam



B-32
rimsulfuron



B-33
sulfosulfuron



B-34
thiencarbazone-methyl



B-35
tritosulfuron



B-36
2,4-D and its salts and esters



B-37
aminopyralid and its salts and esters



B-38
clopyralid and its salts and esters



B-39
dicamba and its salts and esters



B-40
fluroxypyr-meptyl



B-41
quinclorac



B-42
quinmerac



B-43
H-9



B-44
diflufenzopyr



B-45
diflufenzopyr-sodium



B-46
clomazone



B-47
diflufenican



B-48
fluorochloridone



B-49
isoxaflutol



B-50
mesotrione



B-51
picolinafen



B-52
sulcotrione



B-53
tefuryltrione



B-54
terhbotrione



B-55
topramezone



B-56
H-7



B-57
atrazine



B-58
diuron



B-59
fluometuron



B-60
hexazinone



B-61
isoproturon



B-62
metribuzin



B-63
propanil



B-64
terbuthylazine



B-65
paraquat dichloride



B-66
flumioxazin



B-67
oxyfluorfen



B-68
saflufenacil



B-69
sulfentrazone



B-70
H-1



B-71
H-2



B-72
glyphosate



B-73
glyphosate-isopropylammonium



B-74
glyphosate-trimesium (sulfosate)



B-75
glufosinate



B-76
glufosinate-ammonium



B-77
pendimethalin



B-78
trifluralin



B-79
acetochlor



B-80
cafenstrole



B-81
dimethenamid-P



B-82
fentrazamide



B-83
flufenacet



B-84
mefenacet



B-85
metazachlor



B-86
metolachlor-S



B-87
pyroxasulfone



B-88
isoxaben



B-89
dymron



B-90
indanofan



B-91
oxaziclomefone



B-92
triaziflam



B-93
chlorotoluron



B-94
pinoxaden



B-95
sethoxydim



B-96
clethodim



B-97
diclofop



B-98
quizalofop



B-99
thifensulfuron



B-100
tribenuron



B-101
metsulfuron



B-102
foramsulfuron



B-103
chlorimuron



B-104
chlorsulfuron



B-105
flucarbazone-sodium



B-106
propoxycarbazone-sodium



B-107
ethalfluralin



B-108
halauxifen



B-109
MCPA



B-110
bromoxynil



B-111
bentazone



B-112
carfentrazone



B-113
trifludimoxazin



B-114
bicyclopyrone



B-115
benzobicyclon



B-116
pyrasulfotole



B-117
diquat



B-118
cinmethylin



B-119
acetochlor



B-120
naptalam



B-121
atrazine + H-1



B-122
atrazine + glyphosate



B-123
atrazine + mesotrione



B-124
atrazine + nicosulfuron



B-125
atrazine + tembotrione



B-126
atrazine + topramezone



B-127
clomazone + glyphosate



B-128
diflufenican + clodinafop-propargyl



B-129
diflufenican + fenoxaprop-P-ethyl



B-130
diflufenican +




flupyrsulfuron-methyl-sodium



B-131
diflufenican + glyphosate



B-132
diflufenican + mesosulfuron-methyl



B-133
diflufenican + pinoxaden



B-134
diflufenican + pyroxsulam



B-135
flumetsulam + glyphosate



B-136
flumioxazin + glyphosate



B-137
imazapic + glyphosate



B-138
imazethapyr + glyphosate



B-139
isoxaflutol + H-1



B-140
isoxaflutol + glyphosate



B-141
metazachlor + H-1



B-142
metazachlor + glyphosate



B-143
metazachlor + mesotrione



B-144
metazachlor + nicosulfuron



B-145
metazachlor + terbuthylazine



B-146
metazachlor + topramezone



B-147
metribuzin + glyphosate



B-148
pendimethalin + H-1



B-149
pendimethalin + clodinafop-propargyl



B-150
pendimethalin + fenoxaprop-P-ethyl



B-151
pendimethalin +




flupyrsulfuron-methyl-sodium



B-152
pendimethalin + glyphosate



B-153
pendimethalin + mesosulfuron-methyl



B-154
pendimethalin + mesotrione



B-155
pendimethalin + nicosulfuron



B-156
pendimethalin + pinoxaden



B-157
pendimethalin + pyroxsulam



B-158
pendimethalin + tembotrione



B-159
pendimethalin + topramezone



B-160
pyroxasulfone + tembotrione



B-161
pyroxasulfone + topramezone



B-162
sulfentrazone + glyphosate



B-163
terbuthylazine + H-1



B-164
terbuthylazine + foramsulfuron



B-165
terbuthylazine + glyphosate



B-166
terbuthylazine + mesotrione



B-167
terbuthylazine + nicosulfuron



B-168
terbuthylazine + tembotrione



B-169
terbuthylazine + topramezone



B-170
trifluralin + glyphosate



B-171

benoxacor


B-172

cloquintocet


B-173

cyprosulfamide


B-174

dichlormid


B-175

fenchlorazole


B-176

fenclorim


B-177

isoxadifen


B-178

mefenpyr


B-179

H-11


B-180

H-12


B-181
clodinafop-propargyl
benoxacor


B-182
cycloxydim
benoxacor


B-183
cyhalofop-butyl
benoxacor


B-184
fenoxaprop-P-ethyl
benoxacor


B-185
pinoxaden
benoxacor


B-186
profoxydim
benoxacor


B-187
tepraloxydim
benoxacor


B-188
tralkoxydim
benoxacor


B-189
esprocarb
benoxacor


B-190
prosulfocarb
benoxacor


B-191
thiobencarb
benoxacor


B-192
triallate
benoxacor


B-193
bensulfuron-methyl
benoxacor


B-194
bispyribac-sodium
benoxacor


B-195
cyclosulfamuron
benoxacor


B-196
flumetsulam
benoxacor


B-197
flupyrsulfuron-methyl-sodium
benoxacor


B-198
foramsulfuron
benoxacor


B-199
imazamox
benoxacor


B-200
imazapic
benoxacor


B-201
imazapyr
benoxacor


B-202
imazaquin
benoxacor


B-203
imazethapyr
benoxacor


B-204
imazosulfuron
benoxacor


B-205
iodosulfuron-methyl-sodium
benoxacor


B-206
mesosulfuron
benoxacor


B-207
nicosulfuron
benoxacor


B-208
penoxsulam
benoxacor


B-209
propoxycarbazone-sodium
benoxacor


B-210
pyrazosulfuron-ethyl
benoxacor


B-211
pyroxsulam
benoxacor


B-212
rimsulfuron
benoxacor


B-213
sulfosulfuron
benoxacor


B-214
thiencarbazone-methyl
benoxacor


B-215
tritosulfuron
benoxacor


B-216
2,4-D and its salts and esters
benoxacor


B-217
aminopyralid and its salts and esters
benoxacor


B-218
clopyralid and its salts and esters
benoxacor


B-219
dicamba and its salts and esters
benoxacor


B-220
fluroxypyr-meptyl
benoxacor


B-221
quinclorac
benoxacor


B-222
quinmerac
benoxacor


B-223
H-9
benoxacor


B-224
diflufenzopyr
benoxacor


B-225
diflufenzopyr-sodium
benoxacor


B-226
clomazone
benoxacor


B-227
diflufenican
benoxacor


B-228
fluorochloridone
benoxacor


B-229
isoxaflutol
benoxacor


B-230
mesotrione
benoxacor


B-231
picolinafen
benoxacor


B-232
sulcotrione
benoxacor


B-233
tefuryltrione
benoxacor


B-234
tembotrione
benoxacor


B-235
topramezone
benoxacor


B-236
H-7
benoxacor


B-237
atrazine
benoxacor


B-238
diuron
benoxacor


B-239
fluometuron
benoxacor


B-240
hexazinone
benoxacor


B-241
isoproturon
benoxacor


B-242
metribuzin
benoxacor


B-243
propanil
benoxacor


B-244
terbuthylazine
benoxacor


B-245
paraquat dichloride
benoxacor


B-246
flumioxazin
benoxacor


B-247
oxyfluorfen
benoxacor


B-248
saflufenacil
benoxacor


B-249
sulfentrazone
benoxacor


B-250
H-1
benoxacor


B-251
H-2
benoxacor


B-252
glyphosate
benoxacor


B-253
glyphosate-isopropylammonium
benoxacor


B-254
glyphosate-trimesium (sulfosate)
benoxacor


B-255
glufosinate
benoxacor


B-256
glufosinate-ammonium
benoxacor


B-257
pendimethalin
benoxacor


B-258
trifluralin
benoxacor


B-259
acetochlor
benoxacor


B-260
cafenstrole
benoxacor


B-261
dimethenamid-P
benoxacor


B-262
fentrazamide
benoxacor


B-263
flufenacet
benoxacor


B-264
mefenacet
benoxacor


B-265
metazachlor
benoxacor


B-266
metolachlor-S
benoxacor


B-267
pyroxasulfone
benoxacor


B-268
isoxaben
benoxacor


B-269
dymron
benoxacor


B-270
indanofan
benoxacor


B-271
oxaziclomefone
benoxacor


B-272
triaziflam
benoxacor


B-273
atrazine + H-1
benoxacor


B-274
atrazine + glyphosate
benoxacor


B-275
atrazine + mesotrione
benoxacor


B-276
atrazine + nicosulfuron
benoxacor


B-277
atrazine + tembotrione
benoxacor


B-278
atrazine + topramezone
benoxacor


B-279
clomazone + glyphosate
benoxacor


B-280
diflufenican + clodinafop-propargyl
benoxacor


B-281
diflufenican + fenoxaprop-P-ethyl
benoxacor


B-282
diflufenican +
benoxacor



flupyrsulfuron-methyl-sodium



B-283
diflufenican + glyphosate
benoxacor


B-284
diflufenican + mesosulfuron-methyl
benoxacor


B-285
diflufenican + pinoxaden
benoxacor


B-286
diflufenican + pyroxsulam
benoxacor


B-287
flumetsulam + glyphosate
benoxacor


B-288
flumioxazin + glyphosate
benoxacor


B-289
imazapic + glyphosate
benoxacor


B-290
imazethapyr + glyphosate
benoxacor


B-291
isoxaflutol + H-1
benoxacor


B-292
isoxaflutol + glyphosate
benoxacor


B-293
metazachlor + H-1
benoxacor


B-294
metazachlor + glyphosate
benoxacor


B-295
metazachlor + mesotrione
benoxacor


B-296
metazachlor + nicosulfuron
benoxacor


B-297
metazachlor + terbuthylazine
benoxacor


B-298
metazachlor + topramezone
benoxacor


B-299
metribuzin + glyphosate
benoxacor


B-300
pendimethalin + H-1
benoxacor


B-301
pendimethalin +
benoxacor



clodinafop-propargyl



B-302
pendimethalin + fenoxaprop-P-ethyl
benoxacor


B-303
pendimethalin +
benoxacor



flupyrsulfuron-methyl-sodium



B-304
pendimethalin + glyphosate
benoxacor


B-305
pendimethalin + mesosulfuron-methyl
benoxacor


B-306
pendimethalin + mesotrione
benoxacor


B-307
pendimethalin + nicosulfuron
benoxacor


B-308
pendimethalin + pinoxaden
benoxacor


B-309
pendimethalin + pyroxsulam
benoxacor


B-310
pendimethalin + tembotrione
benoxacor


B-311
pendimethalin + topramezone
benoxacor


B-312
pyroxasulfone + tembotrione
benoxacor


B-313
pyroxasulfone + topramezone
benoxacor


B-314
sulfentrazone + glyphosate
benoxacor


B-315
terbuthylazine + H-1
benoxacor


B-316
terbuthylazine + foramsulfuron
benoxacor


B-317
terbuthylazine + glyphosate
benoxacor


B-318
terbuthylazine + mesotrione
benoxacor


B-319
terbuthylazine + nicosulfuron
benoxacor


B-320
terbuthylazine + tembotrione
benoxacor


B-321
terbuthylazine + topramezone
benoxacor


B-322
trifluralin + glyphosate
benoxacor


B-323
clodinafop-propargyl
cloquintocet


B-324
cycloxydim
cloquintocet


B-325
cyhalofop-butyl
cloquintocet


B-326
fenoxaprop-P-ethyl
cloquintocet


B-327
pinoxaden
cloquintocet


B-328
profoxydim
cloquintocet


B-329
tepraloxydim
cloquintocet


B-330
tralkoxydim
cloquintocet


B-331
esprocarb
cloquintocet


B-332
prosulfocarb
cloquintocet


B-333
thiobencarb
cloquintocet


B-334
triallate
cloquintocet


B-335
bensulfuron-methyl
cloquintocet


B-336
bispyribac-sodium
cloquintocet


B-337
cyclosulfamuron
cloquintocet


B-338
flumetsulam
cloquintocet


B-339
flupyrsulfuron-methyl-sodium
cloquintocet


B-340
foramsulfuron
cloquintocet


B-341
imazamox
cloquintocet


B-342
imazapic
cloquintocet


B-343
imazapyr
cloquintocet


B-344
imazaquin
cloquintocet


B-345
imazethapyr
cloquintocet


B-346
imazosulfuron
cloquintocet


B-347
iodosulfuron-methyl-sodium
cloquintocet


B-348
mesosulfuron
cloquintocet


B-349
nicosulfuron
cloquintocet


B-350
penoxsulam
cloquintocet


B-351
propoxycarbazone-sodium
cloquintocet


B-352
pyrazosulfuron-ethyl
cloquintocet


B-353
pyroxsulam
cloquintocet


B-354
rimsulfuron
cloquintocet


B-355
sulfosulfuron
cloquintocet


B-356
thiencarbazone-methyl
cloquintocet


B-357
tritosulfuron
cloquintocet


B-358
2,4-D and its salts and esters
cloquintocet


B-359
aminopyralid and its salts and esters
cloquintocet


B-360
clopyralid and its salts and esters
cloquintocet


B-361
dicamba and its salts and esters
cloquintocet


B-362
fluroxypyr-meptyl
cloquintocet


B-363
quinclorac
cloquintocet


B-364
quinmerac
cloquintocet


B-365
H-9
cloquintocet


B-366
diflufenzopyr
cloquintocet


B-367
diflufenzopyr-sodium
cloquintocet


B-368
clomazone
cloquintocet


B-369
diflufenican
cloquintocet


B-370
fluorochloridone
cloquintocet


B-371
isoxaflutol
cloquintocet


B-372
mesotrione
cloquintocet


B-373
picolinafen
cloquintocet


B-374
sulcotrione
cloquintocet


B-375
tefuryltrione
cloquintocet


B-376
tembotrione
cloquintocet


B-377
topramezone
cloquintocet


B-378
H-7
cloquintocet


B-379
atrazine
cloquintocet


B-380
diuron
cloquintocet


B-381
fluometuron
cloquintocet


B-382
hexazinone
cloquintocet


B-383
isoproturon
cloquintocet


B-384
metribuzin
cloquintocet


B-385
propanil
cloquintocet


B-386
terbuthylazine
cloquintocet


B-387
paraquat dichloride
cloquintocet


B-388
flumioxazin
cloquintocet


B-389
oxyfluorfen
cloquintocet


B-390
saflufenacil
cloquintocet


B-391
sulfentrazone
cloquintocet


B-392
H-1
cloquintocet


B-393
H-2
cloquintocet


B-394
glyphosate
cloquintocet


B-395
glyphosate-isopropylammonium
cloquintocet


B-396
glyphosate-trimesium (sulfosate)
cloquintocet


B-397
glufosinate
cloquintocet


B-398
glufosinate-ammonium
cloquintocet


B-399
pendimethalin
cloquintocet


B-400
trifluralin
cloquintocet


B-401
acetochlor
cloquintocet


B-402
cafenstrole
cloquintocet


B-403
dimethenamid-P
cloquintocet


B-404
fentrazamide
cloquintocet


B-405
flufenacet
cloquintocet


B-406
mefenacet
cloquintocet


B-407
metazachlor
cloquintocet


B-408
metolachlor-S
cloquintocet


B-409
pyroxasulfone
cloquintocet


B-410
isoxaben
cloquintocet


B-411
dymron
cloquintocet


B-412
indanofan
cloquintocet


B-413
oxaziclomefone
cloquintocet


B-414
triaziflam
cloquintocet


B-415
atrazine + H-1
cloquintocet


B-416
atrazine + glyphosate
cloquintocet


B-417
atrazine + mesotrione
cloquintocet


B-418
atrazine + nicosulfuron
cloquintocet


B-419
atrazine + tembotrione
cloquintocet


B-420
atrazine + topramezone
cloquintocet


B-421
clomazone + glyphosate
cloquintocet


B-422
diflufenican + clodinafop-propargyl
cloquintocet


B-423
diflufenican + fenoxaprop-p-ethyl
cloquintocet


B-424
diflufenican +
cloquintocet



flupyrsulfuron-methyl-sodium



B-425
diflufenican + glyphosate
cloquintocet


B-426
diflufenican + mesosulfuron-methyl
cloquintocet


B-427
diflufenican + pinoxaden
cloquintocet


B-428
diflufenican + pyroxsulam
cloquintocet


B-429
flumetsulam + glyphosate
cloquintocet


B-430
flumioxazin + glyphosate
cloquintocet


B-431
imazapic + glyphosate
cloquintocet


B-432
imazethapyr + glyphosate
cloquintocet


B-433
isoxaflutol + H-1
cloquintocet


B-434
isoxaflutol + glyphosate
cloquintocet


B-435
metazachlor + H-1
cloquintocet


B-436
metazachlor + glyphosate
cloquintocet


B-437
metazachlor + mesotrione
cloquintocet


B-438
metazachlor + nicosulfuron
cloquintocet


B-439
metazachlor + terbuthylazine
cloquintocet


B-440
metazachlor + topramezone
cloquintocet


B-441
metribuzin + glyphosate
cloquintocet


B-442
pendimethalin + H-1
cloquintocet


B-443
pendimethalin + clodinafop-propargyl
cloquintocet


B-444
pendimethalin + fenoxaprop-P-ethyl
cloquintocet


B-445
pendimethalin +
cloquintocet



flupyrsulfuron-methyl-sodium



B-446
pendimethalin + glyphosate
cloquintocet


B-447
pendimethalin + mesosulfuron-methyl
cloquintocet


B-448
pendimethalin + mesotrione
cloquintocet


B-449
pendimethalin + nicosulfuron
cloquintocet


B-450
pendimethalin + pinoxaden
cloquintocet


B-451
pendimethalin + pyroxsulam
cloquintocet


B-452
pendimethalin + tembotrione
cloquintocet


B-453
pendimethalin + topramezone
cloquintocet


B-454
pyroxasulfone + tembotrione
cloquintocet


B-455
pyroxasulfone + topramezone
cloquintocet


B-456
sulfentrazone + glyphosate
cloquintocet


B-457
terbuthylazine + H-1
cloquintocet


B-458
terbuthylazine + foramsulfuron
cloquintocet


B-459
terbuthylazine + glyphosate
cloquintocet


B-460
terbuthylazine + mesotrione
cloquintocet


B-461
terbuthylazine + nicosulfuron
cloquintocet


B-462
terbuthylazine + tembotrione
cloquintocet


B-463
terbuthylazine + topramezone
cloquintocet


B-464
trifluralin + glyphosate
cloquintocet


B-465
clodinafop-propargyl
dichlormid


B-466
cycloxydim
dichlormid


B-467
cyhalofop-butyl
dichlormid


B-468
fenoxaprop-P-ethyl
dichlormid


B-469
pinoxaden
dichlormid


B-470
profoxydim
dichlormid


B-471
tepraloxydim
dichlormid


B-472
tralkoxydim
dichlormid


B-473
esprocarb
dichlormid


B-474
prosulfocarb
dichlormid


B-475
thiobencarb
dichlormid


B-476
triallate
dichlormid


B-477
bensulfuron-methyl
dichlormid


B-478
bispyribac-sodium
dichlormid


B-479
cyclosulfamuron
dichlormid


B-480
flumetsulam
dichlormid


B-481
flupyrsulfuron-methyl-sodium
dichlormid


B-482
foramsulfuron
dichlormid


B-483
imazamox
dichlormid


B-484
imazapic
dichlormid


B-485
imazapyr
dichlormid


B-486
imazaquin
dichlormid


B-487
imazethapyr
dichlormid


B-488
imazosulfuron
dichlormid


B-489
iodosulfuron-methyl-sodium
dichlormid


B-490
mesosulfuron
dichlormid


B-491
nicosulfuron
dichlormid


B-492
penoxsulam
dichlormid


B-493
propoxycarbazone-sodium
dichlormid


B-494
pyrazosulfuron-ethyl
dichlormid


B-495
pyroxsulam
dichlormid


B-496
rimsulfuron
dichlormid


B-497
sulfosulfuron
dichlormid


B-498
thiencarbazone-methyl
dichlormid


B-499
tritosulfuron
dichlormid


B-500
2,4-D and its salts and esters
dichlormid


B-501
aminopyralid and its salts and esters
dichlormid


B-502
clopyralid and its salts and esters
dichlormid


B-503
dicamba and its salts and esters
dichlormid


B-504
fluroxypyr-meptyl
dichlormid


B-505
quinclorac
dichlormid


B-506
quinmerac
dichlormid


B-507
H-9
dichlormid


B-508
diflufenzopyr
dichlormid


B-509
diflufenzopyr-sodium
dichlormid


B-510
clomazone
dichlormid


B-511
diflufenican
dichlormid


B-512
fluorochloridone
dichlormid


B-513
isoxaflutol
dichlormid


B-514
mesotrione
dichlormid


B-515
picolinafen
dichlormid


B-516
sulcotrione
dichlormid


B-517
tefuryltrione
dichlormid


B-518
tembotrione
dichlormid


B-519
topramezone
dichlormid


B-520
H-7
dichlormid


B-521
atrazine
dichlormid


B-522
diuron
dichlormid


B-523
fluometuron
dichlormid


B-524
hexazinone
dichlormid


B-525
isoproturon
dichlormid


B-526
metribuzin
dichlormid


B-527
propanil
dichlormid


B-528
terbuthylazine
dichlormid


B-529
paraquat dichloride
dichlormid


B-530
flumioxazin
dichlormid


B-531
oxyfluorfen
dichlormid


B-532
saflufenacil
dichlormid


B-533
sulfentrazone
dichlormid


B-534
H-1
dichlormid


B-535
H-2
dichlormid


B-536
glyphosate
dichlormid


B-537
glyphosate-isopropylammonium
dichlormid


B-538
glyphosate-trimesium (sulfosate)
dichlormid


B-539
glufosinate
dichlormid


B-540
glufosinate-ammonium
dichlormid


B-541
pendimethalin
dichlormid


B-542
trifluralin
dichlormid


B-543
acetochlor
dichlormid


B-544
cafenstrole
dichlormid


B-545
dimethenamid-P
dichlormid


B-546
fentrazamide
dichlormid


B-547
flufenacet
dichlormid


B-548
mefenacet
dichlormid


B-549
metazachlor
dichlormid


B-550
metolachlor-S
dichlormid


B-551
pyroxasulfone
dichlormid


B-552
isoxaben
dichlormid


B-553
dymron
dichlormid


B-554
indanofan
dichlormid


B-555
oxaziclomefone
dichlormid


B-556
triaziflam
dichlormid


B-557
atrazine + H-1
dichlormid


B-558
atrazine + glyphosate
dichlormid


B-559
atrazine + mesotrione
dichlormid


B-560
atrazine + nicosulfuron
dichlormid


B-561
atrazine + tembotrione
dichlormid


B-562
atrazine + topramezone
dichlormid


B-563
clomazone + glyphosate
dichlormid


B-564
diflufenican + clodinafop-propargyl
dichlormid


B-565
diflufenican + fenoxaprop-p-ethyl
dichlormid


B-566
diflufenican +
dichlormid



flupyrsulfuron-methyl-sodium



B-567
diflufenican + glyphosate
dichlormid


B-568
diflufenican + mesosulfuron-methyl
dichlormid


B-569
diflufenican + pinoxaden
dichlormid


B-570
diflufenican + pyroxsulam
dichlormid


B-571
flumetsulam + glyphosate
dichlormid


B-572
flumioxazin + glyphosate
dichlormid


B-573
imazapic + glyphosate
dichlormid


B-574
imazethapyr + glyphosate
dichlormid


B-575
isoxaflutol + H-1
dichlormid


B-576
isoxaflutol + glyphosate
dichlormid


B-577
metazachlor + H-1
dichlormid


B-578
metazachlor + glyphosate
dichlormid


B-579
metazachlor + mesotrione
dichlormid


B-580
metazachlor + nicosulfuron
dichlormid


B-581
metazachlor + terbuthylazine
dichlormid


B-582
metazachlor + topramezone
dichlormid


B-583
metribuzin + glyphosate
dichlormid


B-584
pendimethalin + H-1
dichlormid


B-585
pendimethalin + clodinafop-propargyl
dichlormid


B-586
pendimethalin + fenoxaprop-P-ethyl
dichlormid


B-587
pendimethalin +
dichlormid



flupyrsulfuron-methyl-sodium



B-588
pendimethalin + glyphosate
dichlormid


B-589
pendimethalin + mesosulfuron-methyl
dichlormid


B-590
pendimethalin + mesotrione
dichlormid


B-591
pendimethalin + nicosulfuron
dichlormid


B-592
pendimethalin + pinoxaden
dichlormid


B-593
pendimethalin + pyroxsulam
dichlormid


B-594
pendimethalin + tembotrione
dichlormid


B-595
pendimethalin + topramezone
dichlormid


B-596
pyroxasulfone + tembotrione
dichlormid


B-597
pyroxasulfone + topramezone
dichlormid


B-598
sulfentrazone + glyphosate
dichlormid


B-599
terbuthylazine + H-1
dichlormid


B-600
terbuthylazine + foramsulfuron
dichlormid


B-601
terbuthylazine + glyphosate
dichlormid


B-602
terbuthylazine + mesotrione
dichlormid


B-603
terbuthylazine + nicosulfuron
dichlormid


B-604
terbuthylazine + tembotrione
dichlormid


B-605
terbuthylazine + topramezone
dichlormid


B-606
trifluralin + glyphosate
dichlormid


B-607
clodinafop-propargyl
fenchlorazole


B-608
cycloxydim
fenchlorazole


B-609
cyhalofop-butyl
fenchlorazole


B-610
fenoxaprop-P-ethyl
fenchlorazole


B-611
pinoxaden
fenchlorazole


B-612
profoxydim
fenchlorazole


B-613
tepraloxydim
fenchlorazole


B-614
tralkoxydim
fenchlorazole


B-615
esprocarb
fenchlorazole


B-616
prosulfocarb
fenchlorazole


B-617
thiobencarb
fenchlorazole


B-618
triallate
fenchlorazole


B-619
bensulfuron-methyl
fenchlorazole


B-620
bispyribac-sodium
fenchlorazole


B-621
cyclosulfamuron
fenchlorazole


B-622
flumetsulam
fenchlorazole


B-623
flupyrsulfuron-methyl-sodium
fenchlorazole


B-624
foramsulfuron
fenchlorazole


B-625
imazamox
fenchlorazole


B-626
imazapic
fenchlorazole


B-627
imazapyr
fenchlorazole


B-628
imazaquin
fenchlorazole


B-629
imazethapyr
fenchlorazole


B-630
imazosulfuron
fenchlorazole


B-631
iodosulfuron-methyl-sodium
fenchlorazole


B-632
mesosulfuron
fenchlorazole


B-633
nicosulfuron
fenchlorazole


B-634
penoxsulam
fenchlorazole


B-635
propoxycarbazone-sodium
fenchlorazole


B-636
pyrazosulfuron-ethyl
fenchlorazole


B-637
pyroxsulam
fenchlorazole


B-638
rimsulfuron
fenchlorazole


B-639
sulfosulfuron
fenchlorazole


B-640
thiencarbazone-methyl
fenchlorazole


B-641
tritosulfuron
fenchlorazole


B-642
2,4-D and its salts and esters
fenchlorazole


B-643
aminopyralid and its salts and esters
fenchlorazole


B-644
clopyralid and its salts and esters
fenchlorazole


B-645
dicamba and its salts and esters
fenchlorazole


B-646
fluroxypyr-meptyl
fenchlorazole


B-647
quinclorac
fenchlorazole


B-648
quinmerac
fenchlorazole


B-649
H-9
fenchlorazole


B-650
diflufenzopyr
fenchlorazole


B-651
diflufenzopyr-sodium
fenchlorazole


B-652
clomazone
fenchlorazole


B-653
diflufenican
fenchlorazole


B-654
fluorochloridone
fenchlorazole


B-655
isoxaflutol
fenchlorazole


B-656
mesotrione
fenchlorazole


B-657
picolinafen
fenchlorazole


B-658
sulcotrione
fenchlorazole


B-659
tefuryltrione
fenchlorazole


B-660
tembotrione
fenchlorazole


B-661
topramezone
fenchlorazole


B-662
H-7
fenchlorazole


B-663
atrazine
fenchlorazole


B-664
diuron
fenchlorazole


B-665
fluometuron
fenchlorazole


B-666
hexazinone
fenchlorazole


B-667
isoproturon
fenchlorazole


B-668
metribuzin
fenchlorazole


B-669
propanil
fenchlorazole


B-670
terbuthylazine
fenchlorazole


B-671
paraquat dichloride
fenchlorazole


B-672
flumioxazin
fenchlorazole


B-673
oxyfluorfen
fenchlorazole


B-674
saflufenacil
fenchlorazole


B-675
sulfentrazone
fenchlorazole


B-676
H-1
fenchlorazole


B-677
H-2
fenchlorazole


B-678
glyphosate
fenchlorazole


B-679
glyphosate-isopropylammonium
fenchlorazole


B-680
glyphosate-trimesium (sulfosate)
fenchlorazole


B-681
glufosinate
fenchlorazole


B-682
glufosinate-ammonium
fenchlorazole


B-683
pendimethalin
fenchlorazole


B-684
trifluralin
fenchlorazole


B-685
acetochlor
fenchlorazole


B-686
cafenstrole
fenchlorazole


B-687
dimethenamid-P
fenchlorazole


B-688
fentrazamide
fenchlorazole


B-689
flufenacet
fenchlorazole


B-690
mefenacet
fenchlorazole


B-691
metazachlor
fenchlorazole


B-692
metolachlor-S
fenchlorazole


B-693
pyroxasulfone
fenchlorazole


B-694
isoxaben
fenchlorazole


B-695
dymron
fenchlorazole


B-696
indanofan
fenchlorazole


B-697
oxaziclomefone
fenchlorazole


B-698
triaziflam
fenchlorazole


B-699
atrazine + H-1
fenchlorazole


B-700
atrazine + glyphosate
fenchlorazole


B-701
atrazine + mesotrione
fenchlorazole


B-702
atrazine + nicosulfuron
fenchlorazole


B-703
atrazine + tembotrione
fenchlorazole


B-704
atrazine + topramezone
fenchlorazole


B-705
clomazone + glyphosate
fenchlorazole


B-706
diflufenican + clodinafop-propargyl
fenchlorazole


B-707
diflufenican + fenoxaprop-P-ethyl
fenchlorazole


B-708
diflufenican +
fenchlorazole



flupyrsulfuron-methyl-sodium



B-709
diflufenican + glyphosate
fenchlorazole


B-710
diflufenican + mesosulfuron-methyl
fenchlorazole


B-711
diflufenican + pinoxaden
fenchlorazole


B-712
diflufenican + pyroxsulam
fenchlorazole


B-713
flumetsulam + glyphosate
fenchlorazole


B-714
flumioxazin + glyphosate
fenchlorazole


B-715
imazapic + glyphosate
fenchlorazole


B-716
imazethapyr + glyphosate
fenchlorazole


B-717
isoxaflutol + H-1
fenchlorazole


B-718
isoxaflutol + glyphosate
fenchlorazole


B-719
metazachlor + H-1
fenchlorazole


B-720
metazachlor + glyphosate
fenchlorazole


B-721
metazachlor + mesotrione
fenchlorazole


B-722
metazachlor + nicosulfuron
fenchlorazole


B-723
metazachlor + terbuthylazine
fenchlorazole


B-724
metazachlor + topramezone
fenchlorazole


B-725
metribuzin + glyphosate
fenchlorazole


B-726
pendimethalin + H-1
fenchlorazole


B-727
pendimethalin + clodinafop-propargyl
fenchlorazole


B-728
pendimethalin + fenoxaprop-P-ethyl
fenchlorazole


B-729
pendimethalin +
fenchlorazole



flupyrsulfuron-methyl-sodium



B-730
pendimethalin + glyphosate
fenchlorazole


B-731
pendimethalin + mesosulfuron-methyl
fenchlorazole


B-732
pendimethalin + mesotrione
fenchlorazole


B-733
pendimethalin + nicosulfuron
fenchlorazole


B-734
pendimethalin + pinoxaden
fenchlorazole


B-735
pendimethalin + pyroxsulam
fenchlorazole


B-736
pendimethalin + tembotrione
fenchlorazole


B-737
pendimethalin + topramezone
fenchlorazole


B-738
pyroxasulfone + tembotrione
fenchlorazole


B-739
pyroxasulfone + topramezone
fenchlorazole


B-740
sulfentrazone + glyphosate
fenchlorazole


B-741
terbuthylazine + H-1
fenchlorazole


B-742
terbuthylazine + foramsulfuron
fenchlorazole


B-743
terbuthylazine + glyphosate
fenchlorazole


B-744
terbuthylazine + mesotrione
fenchlorazole


B-745
terbuthylazine + nicosulfuron
fenchlorazole


B-746
terbuthylazine + tembotrione
fenchlorazole


B-747
terbuthylazine + topramezone
fenchlorazole


B-748
trifluralin + glyphosate
fenchlorazole


B-749
clodinafop-propargyl
fenclorim


B-750
cycloxydim
fenclorim


B-751
cyhalofop-butyl
fenclorim


B-752
fenoxaprop-P-ethyl
fenclorim


B-753
pinoxaden
fenclorim


B-754
profoxydim
fenclorim


B-755
tepraloxydim
fenclorim


B-756
tralkoxydim
fenclorim


B-757
esprocarb
fenclorim


B-758
prosulfocarb
fenclorim


B-759
thiobencarb
fenclorim


B-760
triallate
fenclorim


B-761
bensulfuron-methyl
fenclorim


B-762
bispyribac-sodium
fenclorim


B-763
cyclosulfamuron
fenclorim


B-764
flumetsulam
fenclorim


B-765
flupyrsulfuron-methyl-sodium
fenclorim


B-766
foramsulfuron
fenclorim


B-767
imazamox
fenclorim


B-768
imazapic
fenclorim


B-769
imazapyr
fenclorim


B-770
imazaquin
fenclorim


B-771
imazethapyr
fenclorim


B-772
imazosulfuron
fenclorim


B-773
iodosulfuron-methyl-sodium
fenclorim


B-774
mesosulfuron
fenclorim


B-775
nicosulfuron
fenclorim


B-776
penoxsulam
fenclorim


B-777
propoxycarbazone-sodium
fenclorim


B-778
pyrazosulfuron-ethyl
fenclorim


B-779
pyroxsulam
fenclorim


B-780
rimsulfuron
fenclorim


B-781
sulfosulfuron
fenclorim


B-782
thiencarbazone-methyl
fenclorim


B-783
tritosulfuron
fenclorim


B-784
2,4-D and its salts and esters
fenclorim


B-785
aminopyralid and its salts and esters
fenclorim


B-786
clopyralid and its salts and esters
fenclorim


B-787
dicamba and its salts and esters
fenclorim


B-788
fluroxypyr-meptyl
fenclorim


B-789
quinclorac
fenclorim


B-790
quinmerac
fenclorim


B-791
H-9
fenclorim


B-792
diflufenzopyr
fenclorim


B-793
diflufenzopyr-sodium
fenclorim


B-794
clomazone
fenclorim


B-795
diflufenican
fenclorim


B-796
fluorochloridone
fenclorim


B-797
isoxaflutol
fenclorim


B-798
mesotrione
fenclorim


B-799
picolinafen
fenclorim


B-800
sulcotrione
fenclorim


B-801
tefuryltrione
fenclorim


B-802
tem botrione
fenclorim


B-803
topramezone
fenclorim


B-804
H-7
fenclorim


B-805
atrazine
fenclorim


B-806
diuron
fenclorim


B-807
fluometuron
fenclorim


B-808
hexazinone
fenclorim


B-809
isoproturon
fenclorim


B-810
metribuzin
fenclorim


B-811
propanil
fenclorim


B-812
terbuthylazine
fenclorim


B-813
paraquat dichloride
fenclorim


B-814
flumioxazin
fenclorim


B-815
oxyfluorfen
fenclorim


B-816
saflufenacil
fenclorim


B-817
sulfentrazone
fenclorim


B-818
H-1
fenclorim


B-819
H-2
fenclorim


B-820
glyphosate
fenclorim


B-821
glyphosate-isopropylammonium
fenclorim


B-822
glyphosate-trimesium (sulfosate)
fenclorim


B-823
glufosinate
fenclorim


B-824
glufosinate-ammonium
fenclorim


B-825
pendimethalin
fenclorim


B-826
trifluralin
fenclorim


B-827
acetochlor
fenclorim


B-828
cafenstrole
fenclorim


B-829
dimethenamid-P
fenclorim


B-830
fentrazamide
fenclorim


B-831
flufenacet
fenclorim


B-832
mefenacet
fenclorim


B-833
metazachlor
fenclorim


B-834
metolachlor-S
fenclorim


B-835
pyroxasulfone
fenclorim


B-836
isoxaben
fenclorim


B-837
dymron
fenclorim


B-838
indanofan
fenclorim


B-839
oxaziclomefone
fenclorim


B-840
triaziflam
fenclorim


B-841
atrazine + H-1
fenclorim


B-842
atrazine + glyphosate
fenclorim


B-843
atrazine + mesotrione
fenclorim


B-844
atrazine + nicosulfuron
fenclorim


B-845
atrazine + tembotrione
fenclorim


B-846
atrazine + topramezone
fenclorim


B-847
clomazone + glyphosate
fenclorim


B-848
diflufenican + clodinafop-propargyl
fenclorim


B-849
diflufenican + fenoxaprop-P-ethyl
fenclorim


B-850
diflufenican + flupyrsulfuron-methyl-sodium
fenclorim


B-851
diflufenican + glyphosate
fenclorim


B-852
diflufenican + mesosulfuron-methyl
fenclorim


B-853
diflufenican + pinoxaden
fenclorim


B-854
diflufenican + pyroxsulam
fenclorim


B-855
flumetsulam + glyphosate
fenclorim


B-856
flumioxazin + glyphosate
fenclorim


B-857
imazapic + glyphosate
fenclorim


B-858
imazethapyr + glyphosate
fenclorim


B-859
isoxaflutol + H-1
fenclorim


B-860
isoxaflutol + glyphosate
fenclorim


B-861
metazachlor + H-1
fenclorim


B-862
metazachlor + glyphosate
fenclorim


B-863
metazachlor + mesotrione
fenclorim


B-864
metazachlor + nicosulfuron
fenclorim


B-865
metazachlor + terbuthylazine
fenclorim


B-866
metazachlor + topramezone
fenclorim


B-867
metribuzin + glyphosate
fenclorim


B-868
pendimethalin + H-1
fenclorim


B-869
pendimethalin + clodinafop-propargyl
fenclorim


B-870
pendimethalin + fenoxaprop-P-ethyl
fenclorim


B-871
pendimethalin +
fenclorim



flupyrsulfuron-methyl-sodium



B-872
pendimethalin + glyphosate
fenclorim


B-873
pendimethalin + mesosulfuron-methyl
fenclorim


B-874
pendimethalin + mesotrione
fenclorim


B-875
pendimethalin + nicosulfuron
fenclorim


B-876
pendimethalin + pinoxaden
fenclorim


B-877
pendimethalin + pyroxsulam
fenclorim


B-878
pendimethalin + tembotrione
fenclorim


B-879
pendimethalin + topramezone
fenclorim


B-880
pyroxasulfone + tembotrione
fenclorim


B-881
pyroxasulfone + topramezone
fenclorim


B-882
sulfentrazone + glyphosate
fenclorim


B-883
terbuthylazine + H-1
fenclorim


B-884
terbuthylazine + foramsulfuron
fenclorim


B-885
terbuthylazine + glyphosate
fenclorim


B-886
terbuthylazine + mesotrione
fenclorim


B-887
terbuthylazine + nicosulfuron
fenclorim


B-888
terbuthylazine + tembotrione
fenclorim


B-889
terbuthylazine + topramezone
fenclorim


B-890
trifluralin + glyphosate
fenclorim


B-891
clodinafop-propargyl
isoxadifen


B-892
cycloxydim
isoxadifen


B-893
cyhalofop-butyl
isoxadifen


B-894
fenoxaprop-P-ethyl
isoxadifen


B-895
pinoxaden
isoxadifen


B-896
profoxydim
isoxadifen


B-897
tepraloxydim
isoxadifen


B-898
tralkoxydim
isoxadifen


B-899
esprocarb
isoxadifen


B-900
prosulfocarb
isoxadifen


B-901
thiobencarb
isoxadifen


B-902
triallate
isoxadifen


B-903
bensulfuron-methyl
isoxadifen


B-904
bispyribac-sodium
isoxadifen


B-905
cyclosulfamuron
isoxadifen


B-906
flumetsulam
isoxadifen


B-907
flupyrsulfuron-methyl-sodium
isoxadifen


B-908
foramsulfuron
isoxadifen


B-909
imazamox
isoxadifen


B-910
imazapic
isoxadifen


B-911
imazapyr
isoxadifen


B-912
imazaquin
isoxadifen


B-913
imazethapyr
isoxadifen


B-914
imazosulfuron
isoxadifen


B-915
iodosulfuron-methyl-sodium
isoxadifen


B-916
mesosulfuron
isoxadifen


B-917
nicosulfuron
isoxadifen


B-918
penoxsulam
isoxadifen


B-919
propoxycarbazone-sodium
isoxadifen


B-920
pyrazosulfuron-ethyl
isoxadifen


B-921
pyroxsulam
isoxadifen


B-922
rimsulfuron
isoxadifen


B-923
sulfosulfuron
isoxadifen


B-924
thiencarbazone-methyl
isoxadifen


B-925
tritosulfuron
isoxadifen


B-926
2,4-D and its salts and esters
isoxadifen


B-927
aminopyralid and its salts and esters
isoxadifen


B-928
clopyralid and its salts and esters
isoxadifen


B-929
dicamba and its salts and esters
isoxadifen


B-930
fluroxypyr-meptyl
isoxadifen


B-931
quinclorac
isoxadifen


B-932
quinmerac
isoxadifen


B-933
H-9
isoxadifen


B-934
diflufenzopyr
isoxadifen


B-935
diflufenzopyr-sodium
isoxadifen


B-936
clomazone
isoxadifen


B-937
diflufenican
isoxadifen


B-938
fluorochloridone
isoxadifen


B-939
isoxaflutol
isoxadifen


B-940
mesotrione
isoxadifen


B-941
picolinafen
isoxadifen


B-942
sulcotrione
isoxadifen


B-943
tefuryltrione
isoxadifen


B-944
tembotrione
isoxadifen


B-945
topramezone
isoxadifen


B-946
H-7
isoxadifen


B-947
atrazine
isoxadifen


B-948
diuron
isoxadifen


B-949
fluometuron
isoxadifen


B-950
hexazinone
isoxadifen


B-951
isoproturon
isoxadifen


B-952
metribuzin
isoxadifen


B-953
propanil
isoxadifen


B-954
terbuthylazine
isoxadifen


B-955
paraquat dichloride
isoxadifen


B-956
flumioxazin
isoxadifen


B-957
oxyfluorfen
isoxadifen


B-958
saflufenacil
isoxadifen


B-959
sulfentrazone
isoxadifen


B-960
H-1
isoxadifen


B-961
H-2
isoxadifen


B-962
glyphosate
isoxadifen


B-963
glyphosate-isopropylammonium
isoxadifen


B-964
glyphosate-trimesium (sulfosate)
isoxadifen


B-965
glufosinate
isoxadifen


B-966
glufosinate-ammonium
isoxadifen


B-967
pendimethalin
isoxadifen


B-968
trifluralin
isoxadifen


B-969
acetochlor
isoxadifen


B-970
cafenstrole
isoxadifen


B-971
dimethenamid-P
isoxadifen


B-972
fentrazamide
isoxadifen


B-973
flufenacet
isoxadifen


B-974
mefenacet
isoxadifen


B-975
metazachlor
isoxadifen


B-976
metolachlor-S
isoxadifen


B-977
pyroxasulfone
isoxadifen


B-978
isoxaben
isoxadifen


B-979
dymron
isoxadifen


B-980
indanofan
isoxadifen


B-981
oxaziclomefone
isoxadifen


B-982
triaziflam
isoxadifen


B-983
atrazine + H-1
isoxadifen


B-984
atrazine + glyphosate
isoxadifen


B-985
atrazine + mesotrione
isoxadifen


B-986
atrazine + nicosulfuron
isoxadifen


B-987
atrazine + tembotrione
isoxadifen


B-988
atrazine + topramezone
isoxadifen


B-989
clomazone + glyphosate
isoxadifen


B-990
diflufenican + clodinafop-propargyl
isoxadifen


B-991
diflufenican + fenoxaprop-P-ethyl
isoxadifen


B-992
diflufenican +
isoxadifen



flupyrsulfuron-methyl-sodium



B-993
diflufenican + glyphosate
isoxadifen


B-994
diflufenican + mesosulfuron-methyl
isoxadifen


B-995
diflufenican + pinoxaden
isoxadifen


B-996
diflufenican + pyroxsulam
isoxadifen


B-997
flumetsulam + glyphosate
isoxadifen


B-998
flumioxazin + glyphosate
isoxadifen


B-999
imazapic + glyphosate
isoxadifen


B-1000
imazethapyr + glyphosate
isoxadifen


B-1001
isoxaflutol + H-1
isoxadifen


B-1002
isoxaflutol + glyphosate
isoxadifen


B-1003
metazachlor + H-1
isoxadifen


B-1004
metazachlor + glyphosate
isoxadifen


B-1005
metazachlor + mesotrione
isoxadifen


B-1006
metazachlor + nicosulfuron
isoxadifen


B-1007
metazachlor + terbuthylazine
isoxadifen


B-1008
metazachlor + topramezone
isoxadifen


B-1009
metribuzin + glyphosate
isoxadifen


B-1010
pendimethalin + H-1
isoxadifen


B-1011
pendimethalin + clodinafop-propargyl
isoxadifen


B-1012
pendimethalin + fenoxaprop-P-ethyl
isoxadifen


B-1013
pendimethalin +
isoxadifen



flupyrsulfuron-methyl-sodium



B-1014
pendimethalin + glyphosate
isoxadifen


B-1015
pendimethalin + mesosulfuron-methyl
isoxadifen


B-1016
pendimethalin + mesotrione
isoxadifen


B-1017
pendimethalin + nicosulfuron
isoxadifen


B-1018
pendimethalin + pinoxaden
isoxadifen


B-1019
pendimethalin + pyroxsulam
isoxadifen


B-1020
pendimethalin + tembotrione
isoxadifen


B-1021
pendimethalin + topramezone
isoxadifen


B-1022
pyroxasulfone + tembotrione
isoxadifen


B-1023
pyroxasulfone + topramezone
isoxadifen


B-1024
sulfentrazone + glyphosate
isoxadifen


B-1025
terbuthylazine + H-1
isoxadifen


B-1026
terbuthylazine + foramsulfuron
isoxadifen


B-1027
terbuthylazine + glyphosate
isoxadifen


B-1028
terbuthylazine + mesotrione
isoxadifen


B-1029
terbuthylazine + nicosulfuron
isoxadifen


B-1030
terbuthylazine + tembotrione
isoxadifen


B-1031
terbuthylazine + topramezone
isoxadifen


B-1032
trifluralin + glyphosate
isoxadifen


B-1033
clodinafop-propargyl
mefenpyr


B-1034
cycloxydim
mefenpyr


B-1035
cyhalofop-butyl
mefenpyr


B-1036
fenoxaprop-P-ethyl
mefenpyr


B-1037
pinoxaden
mefenpyr


B-1038
profoxydim
mefenpyr


B-1039
tepraloxydim
mefenpyr


B-1040
tralkoxydim
mefenpyr


B-1041
esprocarb
mefenpyr


B-1042
prosulfocarb
mefenpyr


B-1043
thiobencarb
mefenpyr


B-1044
triallate
mefenpyr


B-1045
bensulfuron-methyl
mefenpyr


B-1046
bispyribac-sodium
mefenpyr


B-1047
cyclosulfamuron
mefenpyr


B-1048
flumetsulam
mefenpyr


B-1049
flupyrsulfuron-methyl-sodium
mefenpyr


B-1050
foramsulfuron
mefenpyr


B-1051
imazamox
mefenpyr


B-1052
imazapic
mefenpyr


B-1053
imazapyr
mefenpyr


B-1054
imazaquin
mefenpyr


B-1055
imazethapyr
mefenpyr


B-1056
imazosulfuron
mefenpyr


B-1057
iodosulfuron-methyl-sodium
mefenpyr


B-1058
mesosulfuron
mefenpyr


B-1059
nicosulfuron
mefenpyr


B-1060
penoxsulam
mefenpyr


B-1061
propoxycarbazone-sodium
mefenpyr


B-1062
pyrazosulfuron-ethyl
mefenpyr


B-1063
pyroxsulam
mefenpyr


B-1064
rimsulfuron
mefenpyr


B-1065
sulfosulfuron
mefenpyr


B-1066
thiencarbazone-methyl
mefenpyr


B-1067
tritosulfuron
mefenpyr


B-1068
2,4-D and its salts and esters
mefenpyr


B-1069
aminopyralid and its salts and esters
mefenpyr


B-1070
clopyralid and its salts and esters
mefenpyr


B-1071
dicamba and its salts and esters
mefenpyr


B-1072
fluroxypyr-meptyl
mefenpyr


B-1073
quinclorac
mefenpyr


B-1074
quinmerac
mefenpyr


B-1075
H-9
mefenpyr


B-1076
diflufenzopyr
mefenpyr


B-1077
diflufenzopyr-sodium
mefenpyr


B-1078
clomazone
mefenpyr


B-1079
diflufenican
mefenpyr


B-1080
fluorochloridone
mefenpyr


B-1081
isoxaflutol
mefenpyr


B-1082
mesotrione
mefenpyr


B-1083
picolinafen
mefenpyr


B-1084
sulcotrione
mefenpyr


B-1085
tefuryltrione
mefenpyr


B-1086
tembotrione
mefenpyr


B-1087
topramezone
mefenpyr


B-1088
H-7
mefenpyr


B-1089
atrazine
mefenpyr


B-1090
diuron
mefenpyr


B-1091
fluometuron
mefenpyr


B-1092
hexazinone
mefenpyr


B-1093
isoproturon
mefenpyr


B-1094
metribuzin
mefenpyr


B-1095
propanil
mefenpyr


B-1096
terbuthylazine
mefenpyr


B-1097
paraquat dichloride
mefenpyr


B-1098
flumioxazin
mefenpyr


B-1099
oxyfluorfen
mefenpyr


B-1100
saflufenacil
mefenpyr


B-1101
sulfentrazone
mefenpyr


B-1102
H-1
mefenpyr


B-1103
H-2
mefenpyr


B-1104
glyphosate
mefenpyr


B-1105
glyphosate-isopropylammonium
mefenpyr


B-1106
glyphosate-trimesium (sulfosate)
mefenpyr


B-1107
glufosinate
mefenpyr


B-1108
glufosinate-ammonium
mefenpyr


B-1109
pendimethalin
mefenpyr


B-1110
trifluralin
mefenpyr


B-1111
acetochlor
mefenpyr


B-1112
cafenstrole
mefenpyr


B-1113
dimethenamid-P
mefenpyr


B-1114
fentrazamide
mefenpyr


B-1115
flufenacet
mefenpyr


B-1116
mefenacet
mefenpyr


B-1117
metazachlor
mefenpyr


B-1118
metolachlor-S
mefenpyr


B-1119
pyroxasulfone
mefenpyr


B-1120
isoxaben
mefenpyr


B-1121
dymron
mefenpyr


B-1122
indanofan
mefenpyr


B-1123
oxaziclomefone
mefenpyr


B-1124
triaziflam
mefenpyr


B-1125
atrazine + H-1
mefenpyr


B-1126
atrazine + glyphosate
mefenpyr


B-1127
atrazine + mesotrione
mefenpyr


B-1128
atrazine + nicosulfuron
mefenpyr


B-1129
atrazine + tembotrione
mefenpyr


B-1130
atrazine + topramezone
mefenpyr


B-1131
clomazone + glyphosate
mefenpyr


B-1132
diflufenican + clodinafop-propargyl
mefenpyr


B-1133
diflufenican + fenoxaprop-P-ethyl
mefenpyr


B-1134
diflufenican +
mefenpyr



flupyrsulfuron-methyl-sodium



B-1135
diflufenican + glyphosate
mefenpyr


B-1136
diflufenican + mesosulfuron-methyl
mefenpyr


B-1137
diflufenican + pinoxaden
mefenpyr


B-1138
diflufenican + pyroxsulam
mefenpyr


B-1139
flumetsulam + glyphosate
mefenpyr


B-1140
flumioxazin + glyphosate
mefenpyr


B-1141
imazapic + glyphosate
mefenpyr


B-1142
imazethapyr + glyphosate
mefenpyr


B-1143
isoxaflutol + H-1
mefenpyr


B-1144
isoxaflutol + glyphosate
mefenpyr


B-1145
metazachlor + H-1
mefenpyr


B-1146
metazachlor + glyphosate
mefenpyr


B-1147
metazachlor + mesotrione
mefenpyr


B-1148
metazachlor + nicosulfuron
mefenpyr


B-1149
metazachlor + terbuthylazine
mefenpyr


B-1150
metazachlor + topramezone
mefenpyr


B-1151
metribuzin + glyphosate
mefenpyr


B-1152
pendimethalin + H-1
mefenpyr


B-1153
pendimethalin + clodinafop-propargyl
mefenpyr


B-1154
pendimethalin + fenoxaprop-P-ethyl
mefenpyr


B-1155
pendimethalin +
mefenpyr



flupyrsulfuron-methyl-sodium



B-1156
pendimethalin + glyphosate
mefenpyr


B-1157
pendimethalin + mesosulfuron-methyl
mefenpyr


B-1158
pendimethalin + mesotrione
mefenpyr


B-1159
pendimethalin + nicosulfuron
mefenpyr


B-1160
pendimethalin + pinoxaden
mefenpyr


B-1161
pendimethalin + pyroxsulam
mefenpyr


B-1162
pendimethalin + tembotrione
mefenpyr


B-1163
pendimethalin + topramezone
mefenpyr


B-1164
pyroxasulfone + tembotrione
mefenpyr


B-1165
pyroxasulfone + topramezone
mefenpyr


B-1166
sulfentrazone + glyphosate
mefenpyr


B-1167
terbuthylazine + H-1
mefenpyr


B-1168
terbuthylazine + foramsulfuron
mefenpyr


B-1169
terbuthylazine + glyphosate
mefenpyr


B-1170
terbuthylazine + mesotrione
mefenpyr


B-1171
terbuthylazine + nicosulfuron
mefenpyr


B-1172
terbuthylazine + tembotrione
mefenpyr


B-1173
terbuthylazine + topramezone
mefenpyr


B-1174
trifluralin + glyphosate
mefenpyr


B-1175
clodinafop-propargyl
H-12


B-1176
cycloxydim
H-12


B-1177
cyhalofop-butyl
H-12


B-1178
fenoxaprop-P-ethyl
H-12


B-1179
pinoxaden
H-12


B-1180
profoxydim
H-12


B-1181
tepraloxydim
H-12


B-1182
tralkoxydim
H-12


B-1183
esprocarb
H-12


B-1184
prosulfocarb
H-12


B-1185
thiobencarb
H-12


B-1186
triallate
H-12


B-1187
bensulfuron-methyl
H-12


B-1188
bispyribac-sodium
H-12


B-1189
cyclosulfamuron
H-12


B-1190
flumetsulam
H-12


B-1191
flupyrsulfuron-methyl-sodium
H-12


B-1192
foramsulfuron
H-12


B-1193
imazamox
H-12


B-1194
imazapic
H-12


B-1195
imazapyr
H-12


B-1196
imazaquin
H-12


B-1197
imazethapyr
H-12


B-1198
imazosulfuron
H-12


B-1199
iodosulfuron-methyl-sodium
H-12


B-1200
mesosulfuron
H-12


B-1201
nicosulfuron
H-12


B-1202
penoxsulam
H-12


B-1203
propoxycarbazone-sodium
H-12


B-1204
pyrazosulfuron-ethyl
H-12


B-1205
pyroxsulam
H-12


B-1206
rimsulfuron
H-12


B-1207
sulfosulfuron
H-12


B-1208
thiencarbazone-methyl
H-12


B-1209
tritosulfuron
H-12


B-1210
2,4-D and its salts and esters
H-12


B-1211
aminopyralid and its salts and esters
H-12


B-1212
clopyralid and its salts and esters
H-12


B-1213
dicamba and its salts and esters
H-12


B-1214
fluroxypyr-meptyl
H-12


B-1215
quinclorac
H-12


B-1216
quinmerac
H-12


B-1217
H-9
H-12


B-1218
diflufenzopyr
H-12


B-1219
diflufenzopyr-sodium
H-12


B-1220
clomazone
H-12


B-1221
diflufenican
H-12


B-1222
fluorochloridone
H-12


B-1223
isoxaflutol
H-12


B-1224
mesotrione
H-12


B-1225
picolinafen
H-12


B-1226
sulcotrione
H-12


B-1227
tefuryltrione
H-12


B-1228
tembotrione
H-12


B-1229
topramezone
H-12


B-1230
H-7
H-12


B-1231
atrazine
H-12


B-1232
diuron
H-12


B-1233
fluometuron
H-12


B-1234
hexazinone
H-12


B-1235
isoproturon
H-12


B-1236
metribuzin
H-12


B-1237
propanil
H-12


B-1238
terbuthylazine
H-12


B-1239
paraquat dichloride
H-12


B-1240
flumioxazin
H-12


B-1241
oxyfluorfen
H-12


B-1242
saflufenacil
H-12


B-1243
sulfentrazone
H-12


B-1244
H-1
H-12


B-1245
H-2
H-12


B-1246
glyphosate
H-12


B-1247
glyphosate-isopropylammonium
H-12


B-1248
glyphosate-trimesium (sulfosate)
H-12


B-1249
glufosinate
H-12


B-1250
glufosinate-ammonium
H-12


B-1251
pendimethalin
H-12


B-1252
trifluralin
H-12


B-1253
acetochlor
H-12


B-1254
cafenstrole
H-12


B-1255
dimethenamid-P
H-12


B-1256
fentrazamide
H-12


B-1257
flufenacet
H-12


B-1258
mefenacet
H-12


B-1259
metazachlor
H-12


B-1260
metolachlor-S
H-12


B-1261
pyroxasulfone
H-12


B-1262
isoxaben
H-12


B-1263
dymron
H-12


B-1264
indanofan
H-12


B-1265
oxaziclomefone
H-12


B-1266
triaziflam
H-12


B-1267
atrazine + H-1
H-12


B-1268
atrazine + glyphosate
H-12


B-1269
atrazine + mesotrione
H-12


B-1270
atrazine + nicosulfuron
H-12


B-1271
atrazine + tembotrione
H-12


B-1272
atrazine + topramezone
H-12


B-1273
clomazone + glyphosate
H-12


B-1274
diflufenican + clodinafop-propargyl
H-12


B-1275
diflufenican + fenoxaprop-P-ethyl
H-12


B-1276
diflufenican +
H-12



flupyrsulfuron-methyl-sodium



B-1277
diflufenican + glyphosate
H-12


B-1278
diflufenican + mesosulfuron-methyl
H-12


B-1279
diflufenican + pinoxaden
H-12


B-1280
diflufenican + pyroxsulam
H-12


B-1281
flumetsulam + glyphosate
H-12


B-1282
flumioxazin + glyphosate
H-12


B-1283
imazapic + glyphosate
H-12


B-1284
imazethapyr + glyphosate
H-12


B-1285
isoxaflutol + H-1
H-12


B-1286
isoxaflutol + glyphosate
H-12


B-1287
metazachlor + H-1
H-12


B-1288
metazachlor + glyphosate
H-12


B-1289
metazachlor + mesotrione
H-12


B-1290
metazachlor + nicosulfuron
H-12


B-1291
metazachlor + terbuthylazine
H-12


B-1292
metazachlor + topramezone
H-12


B-1293
metribuzin + glyphosate
H-12


B-1294
pendimethalin + H-1
H-12


B-1295
pendimethalin + clodinafop-propargyl
H-12


B-1296
pendimethalin + fenoxaprop-P-ethyl
H-12


B-1297
pendimethalin +
H-12



flupyrsulfuron-methyl-sodium



B-1298
pendimethalin + glyphosate
H-12


B-1299
pendimethalin + mesosulfuron-methyl
H-12


B-1300
pendimethalin + mesotrione
H-12


B-1301
pendimethalin + nicosulfuron
H-12


B-1302
pendimethalin + pinoxaden
H-12


B-1303
pendimethalin + pyroxsulam
H-12


B-1304
pendimethalin + tembotrione
H-12


B-1305
pendimethalin + topramezone
H-12


B-1306
pyroxasulfone + tembotrione
H-12


B-1307
pyroxasulfone + topramezone
H-12


B-1308
sulfentrazone + glyphosate
H-12


B-1309
terbuthylazine + H-1
H-12


B-1310
terbuthylazine + foramsulfuron
H-12


B-1311
terbuthylazine + glyphosate
H-12


B-1312
terbuthylazine + mesotrione
H-12


B-1313
terbuthylazine + nicosulfuron
H-12


B-1314
terbuthylazine + tembotrione
H-12


B-1315
terbuthylazine + topramezone
H-12


B-1316
trifluralin + glyphosate
H-12


B-1317
2-1



B-1318
2-2



B-1319
2-3



B-1320
2-4



B-1321
2-5



B-1322
2-6



B-1323
2-7



B-1324
2-8



B-1325
2-9



B-1326
2-1
benoxacor


B-1327
2-2
benoxacor


B-1328
2-3
benoxacor


B-1329
2-4
benoxacor


B-1330
2-5
benoxacor


B-1331
2-6
benoxacor


B-1332
2-7
benoxacor


B-1333
2-8
benoxacor


B-1334
2-9
benoxacor


B-1335
2-1
cloquintocet


B-1336
2-2
cloquintocet


B-1337
2-3
cloquintocet


B-1338
2-4
cloquintocet


B-1339
2-5
cloquintocet


B-1340
2-6
cloquintocet


B-1341
2-7
cloquintocet


B-1342
2-8
cloquintocet


B-1343
2-9
cloquintocet


B-1344
2-1
cyprosulfamide


B-1345
2-2
cyprosulfamide


B-1346
2-3
cyprosulfamide


B-1347
2-4
cyprosulfamide


B-1348
2-5
cyprosulfamide


B-1349
2-6
cyprosulfamide


B-1350
2-7
cyprosulfamide


B-1351
2-8
cyprosulfamide


B-1352
2-9
cyprosulfamide


B-1353
2-1
dichlormid


B-1354
2-2
dichlormid


B-1355
2-3
dichlormid


B-1356
2-4
dichlormid


B-1357
2-5
dichlormid


B-1358
2-6
dichlormid


B-1359
2-7
dichlormid


B-1360
2-8
dichlormid


B-1361
2-9
dichlormid


B-1362
2-1
fenchlorazole


B-1363
2-2
fenchlorazole


B-1364
2-3
fenchlorazole


B-1365
2-4
fenchlorazole


B-1366
2-5
fenchlorazole


B-1367
2-6
fenchlorazole


B-1368
2-7
fenchlorazole


B-1369
2-8
fenchlorazole


B-1370
2-9
fenchlorazole


B-1371
2-1
isoxadifen


B-1372
2-2
isoxadifen


B-1373
2-3
isoxadifen


B-1374
2-4
isoxadifen


B-1375
2-5
isoxadifen


B-1376
2-6
isoxadifen


B-1377
2-7
isoxadifen


B-1378
2-8
isoxadifen


B-1379
2-9
isoxadifen


B-1380
2-1
mefenpyr


B-1381
2-2
mefenpyr


B-1382
2-3
mefenpyr


B-1383
2-4
mefenpyr


B-1384
2-5
mefenpyr


B-1385
2-6
mefenpyr


B-1386
2-7
mefenpyr


B-1387
2-8
mefenpyr


B-1388
2-9
mefenpyr


B-1389
2-1
H-11


B-1390
2-2
H-11


B-1391
2-3
H-11


B-1392
2-4
H-11


B-1393
2-5
H-11


B-1394
2-6
H-11


B-1395
2-7
H-11


B-1396
2-8
H-11


B-1397
2-9
H-11


B-1398
2-1
H-12


B-1399
2-2
H-12


B-1400
2-3
H-12


B-1401
2-4
H-12


B-1402
2-5
H-12


B-1403
2-6
H-12


B-1404
2-7
H-12


B-1405
2-8
H-12


B-1406
2-9
H-12









The compounds of formula (I) and the compositions according to the invention may also have a plant-strengthening action. Accordingly, they are suitable for mobilizing the defense system of the plants against attack by unwanted microorganisms, such as harmful fungi, but also viruses and bacteria. Plant-strengthening (resistance-inducing) substances are to be understood as meaning, in the present context, those substances which are capable of stimulating the defense system of treated plants in such a way that, when subsequently inoculated by unwanted microorganisms, the treated plants display a substantial degree of resistance to these microorganisms.


The compounds of formula (I) can be employed for protecting plants against attack by unwanted microorganisms within a certain period of time after the treatment. The period of time within which their protection is effected generally extends from 1 to 28 days, preferably from 1 to 14 days, after the treatment of the plants with the compounds of formula (I), or, after treatment of the seed, for up to 9 months after sowing.


The compounds of formula (I) and the compositions according to the invention are also suitable for increasing the harvest yield.


Moreover, they have reduced toxicity and are tolerated well by the crop plants.







EXAMPLES

The preparation of the compounds of formula (I) is illustrated by examples; however, the subject matter of the present invention is not limited to the examples given. With appropriate modification of the starting materials, the procedures given in the examples below were used to obtain further compounds I. The compounds obtained in this manner are listed in table C, together with physical data. The products shown below were characterized by determination of the melting point, NMR spectroscopy or the masses ([m/z]) determined by HPLC-MS spectrometry.


HPLC-MS: high performance liquid chromatography coupled with mass spectrometry;


EtOAc: acetic acid ethyl ester


d6-DMSO: Hexadeuterodimethylsulfoxide


MeOD: Tetradeuteromethanol


MS: Mass spectroscopy


THF: tetrahydrofuran


TFA: trifluoroacetic acid


s: singlet


d: dublet


t: triplet


q: quartet


HPLC column: RP-18 column (Chromolith Speed ROD from Merck KgaA, Germany), 50*4.6 mm; mobile phase: acetonitrile+0.1% TFA/water+0.1% TFA, using a gradient from 5:95 to 100:0 over 5 minutes at 40° C., flow rate 1.8 mL/min.


MS: quadrupole electrospray ionization, 80 V (positive mode).


HPLC column: Luna-C18(2) 5 pm column (Phenomenex), 2.0*50 mm; mobile phase: acetonitrile+0.0625% TFA/water+0.0675% TFA, using a gradient from 10:90 to 80:20 over 4.0 minutes at 40 ° C., flow rate 0.8 mL/min.


MS: quadrupole electrospray ionization, 70 V (positive mode).


Example 1: Preparation of 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide of the formula (I), where, R1, R2 and R3 are as defined in line 1 of table A



embedded image


A slurry of 3-amino-4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)benzamide (17.5 g, 53 mmol) in n-butyl acetate was added dropwise to a suspension of triphosgene (23.7 g, 80 mmol) in the same solvent (ca. 100 ml) and heated to reflux until the evolution of gas ceased. The solvent was evaporated in vacuo and the residue was dissolved in THF. To the solution 2,2,2-trifluoro-N-methyl-ethanamine hydrochloride (7.6 g) and triethylamine (7.7 g, 1.5 equiv.) were added and the mixture was stirred overnight. Sodium hydroxide solution (50 ml, 2 molar in water) was added and the mixture was stirred for 24 h. Then, water was added and THF was evaporated in vacuo. The obtained aqueous phase was extracted with methyl tert-butyl ether and then adjusted with aqueous hydrochloric acid to pH 1-2. Extraction of the aqueous acidic solution with EtOAc yielded a crude product which was purified by silica gel column chromatography (EtOAc) and crystallized from EtOAc/hexane/methanol to yield the title compound (yield 10.4 g).



1H NMR (400 MHz, d6-DMSO), 67 12 (br s, 1 H), 8.45 (s, 1 H), 7.7 (d, 1 H), 4.2 (br m, 2H), 4.0 (s, 3 H), 3.15 (s, 3 H), 2.2 (s, 3 H).


Example 2: Preparation of 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[ethyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide of the formula (I), where, R1, R2 and R3 are as defined in line 2 of table A



embedded image


Similar to the procedure of example 1, a slurry of 3-amino-4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)benzamide (7.0 g, 21 mmol) in n-butyl acetate was added dropwise to a suspension of triphosgene (9.5 g, 32 mmol) in the same solvent and heated to reflux until the evolution of gas ceased. The solvent was evaporated in vacuo and the residue was dissolved in THF. To the solution 2,2,2-trifluoro-N-ethyl-ethanamine hydrochloride (3.5 g) and triethylamine (2.8 g, 1.3 equiv.) were added and the mixture stirred for 2 h. Sodium hydroxide solution (21 ml, 2 molar in water) was added and the mixture was stirred for 24 h. Then, water was added and THF was evaporated in vacuo. The obtained aqueous phase was extracted with methyl tert-butyl ether and then adjusted with aqueous hydrochloric acid to pH 1-2. Extraction of the aqueous acidic solution with EtOAc yielded a crude product which was purified by silica gel column chromatography (EtOAc) and crystallized from EtOAc/hexane/methanol to yield the title compound (yield 4.3 g).



1H NMR (400 MHz, CDCl3+3 drops of MeOD), δ 7.35 (d, 1 H), 4.1-4.0 (m, 2H) 4.05 (s, 3 H), 3.6 (q, 2 H), 2.30 (s, 3 H), 1.4 (t, 3 h).


By analogy to the methods described in the Examples 1 and 2, the following compounds of formula (I) according to Table C (examples 3 to were prepared:









TABLE C









embedded image

















cpd. no
in table A
R1
R2
R3
MS (m/z)















1
1
CH3
Br
CH3
469.9


2
2
CH3
Br
CH2CH3
484.0


3
6
CH3
Br
CH2CF3
536.0


4
3
CH3
Br
CH2CH2CH3
498.1


5
4
CH3
Br
CH(CH3)2
498.1


6
5
CH3
Br
cyclopropyl
494.1


7
47
Cl
Cl
cyclopropyl
470.0


8
44
Cl
Cl
CH2CH3
458.0


9
43
Cl
Cl
CH3
444.0


10
49
Cl
CF3
CH3
478.2


11
45
Cl
Cl
CH2CH2CH3
472.0


12
7
CH3
Cl
CH3
424.0


13
10
CH3
Cl
CH(CH3)2
452.0


14
52
Cl
CF3
CH(CH3)2
506.1


15
40
Cl
Br
CH(CH3)2
518.3


16
37
Cl
Br
CH3
490.2


17
38
Cl
Br
CH2CH3
504.2


18
8
CH3
Cl
CH2CH3
438.3


19
12
CH3
Cl
CH2CF3
492.0


20
46
Cl
Cl
CH(CH3)2
472.0


21
11
CH3
Cl
cyclopropyl
450.0


22
54
Cl
CF3
CH2CF3
545.9









Use Examples

The herbicidal activity of the compounds of formula (I) was demonstrated by the following greenhouse experiments:


The culture containers used were plastic flowerpots containing loamy sand with approximately 3.0% of humus as the substrate. The seeds of the test plants were sown separately for each species.


For the pre-emergence treatment, the active ingredients, which had been suspended or emulsified in water, were applied directly after sowing by means of finely distributing nozzles. The containers were irrigated gently to promote germination and growth and subsequently covered with transparent plastic hoods until the plants had rooted. This cover caused uniform germination of the test plants, unless this had been impaired by the active ingredients. For the post-emergence treatment, the test plants were first grown to a height of 3 to 15 cm, depending on the plant habit, and only then treated with the active ingredients which had been suspended or emulsified in water. For this purpose, the test plants were either sown directly and grown in the same containers, or they were first grown separately as seedlings and transplanted into the test containers a few days prior to treatment. Depending on the species, the plants were kept at 10-25° C. or 20-25° C., respectively. The test period extended over 2 to 4 weeks. During this time, the plants were tended, and their response to the individual treatments was evaluated.


Evaluation was carried out using a scale from 0 to 100. 100 means no emergence of the plants, or complete destruction of at least the aerial moieties, and 0 means no damage, or normal course of growth. A good herbicidal activity is given at values of at least 70 and a very good herbicidal activity is given at values of at least 85.


Test Series 1:


At an application rate of 62.5 g/ha the following compounds were tested in post-emergence tests against:


ALOMY (Alopecurus myosuroiedes)


AVEFA (Avena fatua)


ECHCG (Echinocloa crus-galli)


AMARE (Amaranthus retroflexus)


CHEAL (Chenopodium album)


In test series 1, compounds of examples 1, 2, 3, 5, 6, 7, 9, 10, 12, 14, 15, 16, 17, 18, 19, 20, 21 and 22 showed >85% control of ALOMY.


In test series 1, compounds of examples 1 to 22 showed >85% control of AVEFA.


In test series 1, compounds of examples 1 to 22 showed >85% control of ECHCG.


In test series 1, compounds of examples 1 to 22 showed >85% control of AMARE.


In test series 1, compounds of examples 1 to 22 showed >85% control of CHEAL.


Test Series 2:


At an application rate of 125 g/ha the following compounds were tested in pre-emergence tests against


ALOMY (Alopecurus myosuroiedes)


SETFA (Setaria faberi)


In test series 2, compounds of examples 1, 2, 3, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21 and 22 showed >85% control of ALOMY.


In test series 2, compounds of examples 1, 2, 3, 6, 7, 8, 10, 11, 13, 14, 15, 16, 17, 18, 21 and 22 showed >85% control of SETFA.

Claims
  • 1. A compound of formula I,
  • 2. The compound of claim 1, where R2 is selected from the group consisting of Br, Cl and CF3.
  • 3. The compound of claim 1, where R3 is selected from the group consisting of C1-C6-alkyl, C1-C3-haloalkyl and C3-C6-cycloalkyl.
  • 4. The compound of claim 3, where R3 is selected from the group consisting of C1-C4-alkyl, fluorinated C1-C2-alkyl and C3-C4-cycloalkyl.
  • 5. The compound of claim 1, where R2 is selected from the group consisting of Br, Cl and CF3; and R3 is selected from the group consisting of C1-C3-alkyl, CH2CF3 and cyclopropyl.
  • 6. The compound of claim 1, where R3 is C1-C6-alkyl.
  • 7. The compound of claim 6, where R3 is methyl or ethyl.
  • 8. The compound of claim 1, where R1 is CH3.
  • 9. The compound of claim 8, where R2 is Br.
  • 10. The compound of claim 1, where R1 is Cl.
  • 11. The compound of claim 10, where R2 is Br.
  • 12. The compound of claim 10, where R2 is Cl.
  • 13. The compound of claim 1, which is selected from the group consisting of compounds of formula (I), the N-oxides and the agriculturally suitable salts thereof, where the combination of R1, R2 and R3 is as defined in the lines 1 to 72 of table A:
  • 14. The compound of claim 1, which is selected from the group consisting of 4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide,4-bromo-6-fluoro-2-methyl-N-(1-methyltetrazol-5-yl)-3-[[ethyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide2,4-dichloro-6-fluoro-N-(1-methyltetrazol-5-yl)-3-[[methyl(2,2,2-trifluoroethyl)-carbamoyl]amino]benzamide,4-bromo-2-chloro-6-fluoro-N-(1-methyltetrazol-5-yl)-3-[[ethyl(2,2,2-trifluoroethyl)carbamoyl]amino]benzamide,the N-oxides and the agriculturally suitable salts thereof.
  • 15. A composition comprising at least one compound as claimed in claim 1, an N-oxide or an agriculturally suitable salt thereof, and at least one auxiliary which is customary for formulating crop protection compounds.
  • 16. A combination of compounds comprising at least one compound as claimed in claim 1, an N-oxide or an agriculturally suitable salt thereof, and at least one further compound which is selected from compounds having herbicidal activity and safener compounds.
  • 17. A composition comprising at least one compound as claimed in claim 1, an N-oxide or an agriculturally suitable salt thereof, at least one further compound which is selected from compounds having herbicidal activity and safener compounds, and at least one auxiliary, which is customary for formulating crop protection compounds.
  • 18. A compound as claimed in claim 1, an N-oxide or an agriculturally suitable salt thereof, for use in controlling unwanted vegetation.
  • 19. A method for controlling unwanted vegetation which comprises allowing a herbicidally effective amount of at least one compound as claimed in claims 1, an N-oxide or an agriculturally suitable salt thereof, to act on plants, their seed and/or their habitat.
  • 20. The compound of claim 4, wherein R3 is selected from the group consisting of C1-C3-alkyl, CH2CF3 and cyclopropyl.
Priority Claims (1)
Number Date Country Kind
17204426.5 Nov 2017 EP regional
PCT Information
Filing Document Filing Date Country Kind
PCT/EP2018/082813 11/28/2018 WO 00