Claims
- 1. A method for conferring enhanced disease resistance on a plant or plant component to a pathogen, the method comprising the steps of:
introducing into a plant cell a nucleic acid molecule encoding an isochorismate synthase to yield a transformed plant cell; and generating a plant or plant component from the transformed plant cell, wherein the nucleic acid molecule is expressed in cells of the plant or plant component, thereby conferring enhanced disease resistance on the plant or plant component.
- 2. The method of claim 1, wherein said pathogen is a fungal pathogen.
- 3. The method of claim 1, wherein said pathogen is a bacterial pathogen.
- 4. The method of claim 2, wherein said fungal pathogen is a powdery mildew.
- 5. The method of claim 4, wherein the powdery mildew is Erysiphe orontii or Erysiphe cichoracearum.
- 6. The method of claim 3, wherein said bacterial pathogen is a leaf-spotting bacterial pathogen.
- 7. The method of claim 6, wherein the leaf-spotting bacterial pathogen is a virulent or avirulent strain of Pseudomonas syringae.
- 8. The method of claim 1, further comprising introducing into the plant cell a second nucleic acid molecule encoding a pyruvate lyase.
- 9. The method of claim 1, further comprising introducing into the plant cell a third nucleic acid molecule encoding a salicyl AMP ligase, a fourth nucleic acid molecule encoding a dihydroaeruginoic acid synthetase, or a fifth nucleic acid molecule encoding a pyochelin synthetase.
- 10. The method of claim 1, wherein expression of the nucleic acid molecule is directed by a rapid response inducible promoter.
- 11. A method for conferring enhanced disease resistance on a plant or plant component, the method comprising the steps of:
introducing into a plant cell a first nucleic acid molecule encoding a salicyl AMP ligase, a second nucleic acid molecule encoding a dihydroaeruginoic acid synthetase, or a third nucleic acid molecule encoding a pyochelin synthetase to yield a transformed plant cell; and generating a plant or plant component from the transformed plant cell, wherein the first, second, or third nucleic acid molecules are expressed in cells of the plant or plant component, thereby conferring enhanced disease resistance on the plant or plant component.
- 12. The method of claim 11, further comprising introducing into the plant cell a nucleic acid molecule encoding an isochorismate synthase or a nucleic acid molecule encoding a pyruvate lyase.
- 13. The method of claim 9 or 11, wherein the salicyl AMP ligase is PchD, the dihydroaeruginoic acid synthetase is PchE, or the pyochelin synthetase is PchF.
- 14. The method of claim 1 or 12, wherein the isochorismate synthase is Arabidopsis thaliana isochorismate synthase 1 or PchA.
- 15. The method of claim 1 or 12, wherein the pyruvate lyase is PchB.
- 16. The method of claim 11, wherein expression of the first, second, or third nucleic acid molecules is directed by a rapid response inducible promoter.
- 17. A method for determining whether the success of a pathogen in infecting a plant is affected by a plant disease resistance pathway involving isochorismate synthase, the method comprising the steps of:
contacting a mutant plant comprising a mutation in an inducible isochorismate synthase gene with a pathogen; and assessing the level of infection of the mutant plant with the pathogen, compared to a control plant containing a wild type inducible isochorismate synthase gene, wherein an altered degree of pathogen infection or disease symptoms in the mutant plant, as compared to the control plant, indicates that the success of a pathogen in infecting a plant is affected by a plant disease resistance pathway involving isochorismate synthase.
- 18. A method for determining whether a pathogen induces a plant disease resistance pathway involving isochorismate synthase in a plant, the method comprising the steps of:
contacting a mutant plant comprising a mutation in an inducible isochorismate synthase gene with a pathogen, and detecting the level of salicylic acid produced in the mutant plant, wherein detection of decreased levels of salicylic acid in the mutant plant, compared to a control plant comprising a wild type inducible isochorismate synthase gene, indicates that the pathogen induces a disease resistance pathway involving isochorismate synthase in the plant.
- 19. A method for determining whether a pathogen induces a plant disease resistance pathway involving isochorismate synthase in a plant, the method comprising the steps of:
contacting a test plant containing a wild type inducible isochorismate synthase gene with a pathogen; and detecting the level of inducible isochorismate synthase mRNA expressed by the test plant, wherein detection of increased levels of inducible isochorismate synthase mRNA in the test plant, compared to a control plant not contacted with the pathogen, indicates that the pathogen induces a disease resistance pathway involving isochorismate synthase in the plant.
- 20. A method for determining whether a pathogen induces a plant disease resistance pathway involving isochorismate synthase in a plant, the method comprising the steps of:
contacting a test plant containing a wild type inducible isochorismate synthase gene with a pathogen; and detecting the level of inducible isochorismate synthase protein expressed by the test plant, wherein detection of increased levels of inducible isochorismate synthase protein in the test plant, compared to a control plant not contacted with the pathogen, indicates that the pathogen induces a disease resistance pathway involving isochorismate synthase in the plant.
- 21. The method of claim 17, 18, 19, or 20, wherein the inducible isochorismate synthase gene is Arabidopsis thaliana isochorismate synthase 1.
- 22. The method of claim 17, 18, 19, or 20, wherein the pathogen is Erysiphe orontii, Erysiphe cichoracearum, or a virulent or avirulent strain of Pseudomonas syringae.
- 23. The method of claim 17 or 18, wherein the mutation is eds16 or sid-2-2.
- 24. A method for identifying a gene involved in disease resistance in a plant, the method comprising the steps of:
contacting a mutant plant comprising a mutation in an inducible isochorismate synthase gene with a pathogen; isolating RNA from the plant; contacting an ordered array of nucleic acid molecules from a non-mutant plant with the RNA; and analyzing the level of binding of the RNA from the mutant plant to the array, in comparison with RNA from a control plant, wherein detection of a difference in binding between the mutant and control plant-derived RNAs indicates the identification of a gene involved in disease resistance in the plant.
- 25. The method of claim 24, wherein the plant is Arabidopsis thaliana and the mutation is in isochorismate synthase 1.
- 26. The method of claim 24, wherein the RNA is isolated from a pathogen-infected leaf.
- 27. The method of claim 24, wherein the pathogen is Erysiphe orontii, Erysiphe cichoracearum, or a virulent or avirulent strain of Pseudomonas syringae.
- 28. A method for identifying a cis-acting DNA regulatory element that plays a role in disease resistance in a plant, the method comprising the steps of:
identifying genes that are coordinately regulated by an inducible isochorismate synthase; and analyzing the promoters of the genes for shared DNA regulatory motifs, wherein identification of a shared DNA regulatory motif indicates the identification of a cis-acting DNA regulatory element that plays a role in disease resistance in a plant.
- 29. A method for identifying a trans-acting factor that plays a role in the induction of expression of a pathogen-inducible isochorismate synthase, the method comprising the steps of:
providing an inducible isochorismate synthase reporter construct in which the promoter of an inducible isochorismate synthase gene is operably linked to a reporter gene; and introducing the isochorismate synthase reporter construct into a mutant plant cell to screen for altered induction of the isochorismate synthase, wherein detection of altered induction of the expression of the reporter construct indicates the identification of a trans-acting factor that regulates inducible isochorismate synthase expression.
- 30. A non-naturally occurring plant or plant component having decreased expression of an endogenous inducible isochorismate synthase, as compared with a wild type, untreated plant.
- 31. The non-naturally occurring plant of claim 30, wherein the plant comprises a gene that encodes a mutated form of an inducible isochorismate synthase or a mutated form of an isochorismate synthase promoter.
- 32. The non-naturally occurring plant of claim 30, wherein the plant is an Arabidopsis plant.
- 33. RNA isolated from a plant having decreased expression of an endogenous inducible isochorismate synthase.
- 34. A non-naturally occurring plant or plant component comprising a nucleic acid molecule encoding an isochorismate synthase, operably linked to a rapid response inducible promoter that is functional in the plant or plant component.
- 35. The non-naturally occurring plant or plant component of claim 34, wherein the isochorismate synthase is Arabidopsis thaliana isochorismate synthase 1 or PchA.
- 36. The non-naturally occurring plant or plant component of claim 34, further comprising a nucleic acid molecule encoding a pyruvate lyase.
- 37. The non-naturally occurring plant or plant component of claim 36, wherein the pyruvate lyase is PchB.
- 38. The non-naturally occurring plant or plant component of claim 34, further comprising a nucleic acid molecule encoding a salicyl AMP ligase, a nucleic acid molecule encoding a dihydroaeruginoic acid synthetase, or a nucleic acid molecule encoding a pyochelin synthetase.
- 39. A non-naturally occurring plant or plant component comprising a first nucleic acid molecule encoding a salicyl AMP ligase, a second nucleic acid molecule encoding a dihydroaeruginoic acid synthetase, and a third nucleic acid molecule encoding a pyochelin synthetase, wherein the first, second, and third nucleic acid molecules are expressed in the plant or plant component.
- 40. The non-naturally occurring plant or plant component of claim 38 or 39, wherein the salicyl AMP ligase is PchD, the dihydroaeruginoic acid synthetase is PchE, or the pyochelin synthetase is PchF.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit from U.S. provisional application No. 60/219,231 which was filed on Jul. 18, 2000
Provisional Applications (1)
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Number |
Date |
Country |
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60219231 |
Jul 2000 |
US |