Claims
- 1. A cross-incompatible maize plant comprising a TCB trait.
- 2. The cross-incompatible plant of claim 1 wherein said plant fails to set seed when pollinated by plants lacking the TCB trait but sets seed when pollinated by plants carrying the TCB trait.
- 3. The cross-incompatible plant of claims 1 or 2 wherein said plant maintains functional pollen and sets seed when pollinated by itself or causes other maize plants to set seed when pollinated by said plant.
- 4. The cross-incompatible maize plant of claim 1 wherein said maize plant is an inbred plant.
- 5. The cross-incompatible maize plant of claim 1 wherein said maize plant is a hybrid plant.
- 6. The cross-incompatible maize plant of claim 1 wherein said maize plant is a haploid plant.
- 7. The cross-incompatible maize plant of claim 1 wherein said maize plant is an apomictic maize plant.
- 8. The cross-incompatible maize plant of claim 1, 4, 5, 6 or 7 wherein said plant is a genetically engineered plant.
- 9. The cross-incompatible maize plant of claim 9 further comprising a gene cluster within its genome wherein said gene cluster is located on the short arm of chromosome 4 between map units 40-85.
- 10. The cross-incompatible maize plant of claim 9 further comprising a Tcb locus within its genome.
- 11. The cross-incompatible maize plant of claim 10 wherein said Tcb locus is located on the short arm of chromosome 4 about 6 map units distal to the sugary1 gene and about 40 map units from the Ga1 gene.
- 12. The cross-incompatible maize plant of claim 10 wherein said Tcb locus comprises at least one gene which encodes for a silk effect function in said plant.
- 13. The cross-incompatible maize plant of claims 10 or 12 wherein said Tcb locus comprises at least one gene which encodes for a pollen effect function in said plant.
- 14. The cross-incompatible maize plant of claims 9, 10, 12 or 13 further comprising at least one modifier gene within its genome.
- 15. A cross-incompatible maize plant comprising a TCB trait and which (1) fails to set seed when pollinated by plants lacking the TCB trait but sets seed when pollinated by plants carrying the TCB trait; and (2) maintains functional pollen and sets seed when pollinated by itself or causes other maize plants to set seed when pollinated by said plant.
- 16. The cross-incompatible maize plant of claim 15 wherein said maize plant is an inbred plant.
- 17. The cross-incompatible maize plant of claim 15 wherein said maize plant is a hybrid plant.
- 18. The cross-incompatible maize plant of claim 15 wherein said maize plant is a haploid plant.
- 19. The cross-incompatible maize plant of claim 15 wherein said maize plant is an apomictic maize plant.
- 20. The cross-incompatible maize plant of claim 15, 16, 17, 18 or 19 wherein said plant is a genetically engineered plant.
- 21. The cross-incompatible maize plant of claim 15 further comprising a gene cluster within its genome wherein said gene cluster is located on the short arm of chromosome 4 between map units 40-85.
- 22. The cross-incompatible maize plant of claim 21 further comprising a Tcb locus within its genome.
- 23. The cross-incompatible maize plant of claim 22 wherein said Tcb locus is located on the short arm of chromosome 4 about 6 map units distal to the sugary1 gene and about 40 map units from the Ga1 gene.
- 24. The cross-incompatible maize plant of claim 22 wherein said Tcb locus comprises at least one gene which encodes for a silk effect function in said plant.
- 25. The cross-incompatible maize plant of claim 22 or 24 wherein said Tcb locus comprises at least one gene which encodes for a pollen effect function in said plant.
- 26. The cross-incompatible maize plant of claim 21, 22, 24 or 25 further comprising at least one modifier gene within its genome.
- 27. A cross-incompatible maize plant comprising a TCB trait and wherein said TCB trait is derived from plant W22-TCB deposited as ATCC No. PTA-1601.
- 28. The cross-incompatible maize plant of claim 27 further comprising a gene cluster within its genome wherein said gene cluster is located on the short arm of chromosome 4 between map units 40-85.
- 29. The cross-incompatible maize plant of claim 28 further comprising a Tcb locus within its genome.
- 30. The cross-incompatible maize plant of claim 29 wherein said Tcb locus is located on the short arm of chromosome 4 about 6 map units distal to the sugary1 gene and about 40 map units from the Ga1 gene.
- 31. The cross-incompatible maize plant of claim 29 wherein said Tcb locus comprises at least one gene which encodes for a silk effect function in said plant.
- 32. The cross-incompatible maize plant of claim 29 or 31 wherein said Tcb locus comprises at least one gene which encodes for a pollen effect function in said plant.
- 33. The cross-incompatible maize plant of claim 28, 29, 31 or 32 further comprising at least one modifier gene within its genome.
- 34. The cross-incompatible maize plant of claim 27 wherein said maize plant is an inbred plant.
- 35. The cross-incompatible maize plant of claim 27 wherein said maize plant is a hybrid plant.
- 36. The cross-incompatible maize plant of claim 27 wherein said maize plant is a haploid plant.
- 37. The cross-incompatible maize plant of claim 27 wherein said maize plant is an apomictic maize plant.
- 38. The cross-incompatible maize plant of claim 34, 35, 36 or 37 wherein said plant is a genetically engineered plant.
- 39. A process for obtaining an inbred maize plant, which when crossed with a second inbred maize plant, produces a hybrid maize plant which is cross-incompatible and contains a TCB trait, the process comprising the steps of:
a) selecting a first donor parental maize plant from a population of maize plants, wherein said first donor parental maize plant is cross-incompatible and contains a TCB trait; b) crossing said selected first donor parental maize plant with a second parental maize plant containing genes which encode for desirable traits in hybrid combination; c) collecting the seed resulting from the cross in step b); d) planting and growing the seed collected in step c) under plant growth conditions; e) screening the resulting plant population for the presence of the TCB trait identified in step (a); and f) selecting plants from said population having the TCB trait for cross-incompatibility for further crossings and screenings until a line is obtained which is homozygous for the TCB trait for cross-incompatibility to provide such a trait in an inbred to be used in hybrid combination.
- 40. The process of claim 39 wherein the first donor parental maize plant further comprises a gene cluster within its genome wherein said gene cluster is located on the short arm of chromosome 4 between map units 40-85.
- 41. The process of claim 40 wherein the first donor parental maize plant further comprises a Tcb locus.
- 42. The process of claim 41 wherein said Tcb locus is located on the short arm of chromosome 4 about 6 map units distal to the sugaryl gene and about 40 map units from the Ga1 gene.
- 43. The process of claim 41 wherein said Tcb locus comprises at least one gene which encodes for a silk effect function in said plant.
- 44. The process of claims 41 or 43 wherein said Tcb locus comprises at least one gene which encodes for a pollen effect function in said plant.
- 45. The process of claim 40, 41, 43 or 44 wherein the first donor parental maize plant further comprises at least one modifier gene.
- 46. The process of claim 39 wherein the second parental maize plant is cross-incompatible and comprises a TCB trait.
- 47. A cross-incompatible inbred maize plant comprising a TCB trait produced by the process of claim 39.
- 48. A process for producing a cross-incompatible hybrid maize plant exhibiting a TCB trait, the process comprising the steps of:
a) crossing the inbred maize plant of claim 39 with a second maize inbred line comprising genes encoding desirable phenotypic traits to produce a segregating plant population; and b) collecting the hybrid seed resulting from the cross in step a).
- 49. The process of claim 48 wherein the second maize inbred line is cross-incompatible and comprises a TCB trait.
- 50. A cross-incompatible hybrid maize plant comprising a TCB trait produced by the process of claim 48.
- 51. A process for selecting a first donor parental maize plant suitable for use in producing an inbred maize plant, which inbred maize plant, if crossed with a second inbred maize plant, produces a hybrid maize plant which is cross-incompatible and contains a TCB trait, the process comprising the steps of:
analyzing each plant from a population of maize plants for the presence of a TCB trait.
- 52. The process of claim 51 further comprising the step of analyzing the DNA of each plant from said population for a gene cluster within its genome wherein said gene cluster is located on the short arm of chromosome 4 between map units 40-85.
- 53. The process of claim 52 further comprising the step of analyzing the DNA of each plant from said population for a Tcb locus.
- 54. The process of claim 53 wherein said Tcb locus is located on the short arm of chromosome 4 about 6 map units distal to the sugaryl gene and about 40 map units from the gene Ga1 gene.
- 55. The process of claim 53 further comprising the step of analyzing the DNA of each plant from said population for at least one gene which encodes for a silk effect function in said plant.
- 56. The process of claim 52, 53 or 55 further comprising the step of analyzing the DNA of each plant from said population for at least one gene which encodes for a pollen effect function in said plant.
- 57. The process of claim 52, 53, 55 or 56 further comprising the step of analyzing the DNA of each plant of said population for at least one modifier gene.
- 58. A cross-incompatible first donor parental maize plant comprising a TCB trait produced by the process of claim 51.
- 59. A process for selecting a cross-incompatible hybrid maize plant containing a TCB trait, the process comprising the steps of:
analyzing each plant from a population of hybrid maize plants for the a TCB trait.
- 60. The process of claim 59 further comprising the step of analyzing the DNA of each plant from said population for a gene cluster wherein said gene cluster is located on the short arm of chromosome 4 between map units 40-85.
- 61. The process of claim 60 further comprising the step of analyzing the DNA of each plant from said population for a Tcb locus.
- 62. The process of claim 61 wherein said Tcb locus is located on the short arm of chromosome 4 about 6 map units distal to the sugary1 gene and about 40 map units from the gene Ga1 gene.
- 63. The process of claim 61 further comprising the step of analyzing the DNA of each plant from said population for at least one gene which encodes for a silk effect function in said plant.
- 64. The process of claims 61 or 63 further comprising the step of analyzing the DNA of each plant from said population for at least one gene which encodes for a pollen effect function in said plant.
- 65. The process of claim 60, 61, 63 or 64 further comprising the step of analyzing the DNA of each plant of said population for at least one modifier gene.
- 66. A cross-incompatible hybrid maize plant comprising a TCB trait produced by the process of claim 60.
- 67. A process of controlling hybridization of a maize plant in a field, the process comprising the step of planting in a field a cross-incompatible maize plant of claim 1, 4, 5, 7, 8, 15, 16, 17, 19, 20, 27, 34, 35, 37, 38, 47, 50, 58 or 66.
- 68. A process of controlling hybridization of inbred maize plants in a field being used in hybrid seed production, the process comprising the step of planting in a field being used for hybrid seed production, a cross-incompatible inbred maize plant of claim 4, 8, 16, 20, 34, 38, 47 or 58.
CROSS-RELATED APPLICATION INFORMATION
[0001] This application claims priority from U.S. application Ser. No. 60/193,082 filed on Mar. 30, 2000.
STATEMENT OF GOVERNMENT RIGHTS
[0002] This invention was made with United States government support awarded by the following agencies: USDA 98-CRHF-0-6055.
Provisional Applications (1)
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Number |
Date |
Country |
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60193082 |
Mar 2000 |
US |