Claims
- 1. An isolated protein comprising a member selected from the group consisting of:
(a) a polypeptide of at least 20 contiguous amino acids from the polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4; (b) a polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4; (c) a polypeptide having at least 70% sequence identity to, and having at least one linear epitope in common with, a polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4, wherein the percent sequence identity is determined according to the GAP program using the default settings; and (d) a polypeptide encoded by a polynucleotide which selectively hybridizes under stringent hybridization conditions and a wash in 0.1× SSC at 60° C. to a polynucleotide selected from the group consisting of SED ID NOS: 1 and 3.
- 2. A recombinant expression cassette, expressing a member of claim 1.
- 3. A non-human host cell comprising the recombinant expression cassette of claim 2.
- 4. A transgenic plant comprising the recombinant expression cassette of claim 2.
- 5. The transgenic plant of claim 4, wherein said plant is a monocot or dicot.
- 6. The transgenic plant of claim 5, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 7. A transgenic seed from the transgenic plant of claim 4.
- 8. A method of increasing targeted gene insertion comprising:
(a) introducing into a plant cell a polynucleotide of interest and a Rad23 polynucleotide encoding a Rad23 polypeptide to produce a transformed cell; (b) culturing the transformed plant cell under cell growing conditions; and (c) inducing expression of the Rad23 polypeptide for a time sufficient to increase the targeted gene insertion of the polynucleotide of interest.
- 9. The method of claim 8, wherein the polynucleotide encodes a Rad23 polypeptide selected from the group consisting of:
(a) a polypeptide of at least 20 contiguous amino acids from the polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4; (b) a polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4; (c) a polypeptide having at least 70% sequence identity to, and having at least one linear epitope in common with, a polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4, wherein the percent sequence identity is determined according to the GAP program using the default settings; and (d) a polypeptide encoded by a polynucleotide which selectively hybridizes under stringent hybridization conditions and a wash in 0.1× SSC at 60° C. to a polynucleotide selected from the group consisting of SED ID NOS: 1 and 3.
- 10. The method of claim 8, wherein the plant cell is from a monocot or a dicot.
- 11. The method of claim 10, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 12. A transformed plant cell produced by the method of claim 8.
- 13. The plant cell of claim 12, wherein the plant cell is from a monocot or a dicot.
- 14. The plant cell of claim 13, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 15. The method of claim 8, wherein the transformed plant cell is grown under conditions sufficient to produce a transformed plant.
- 16. A transformed plant produced by the method of claim 15.
- 17. The plant of claim 16, wherein the plant is a monocot or a dicot.
- 18. The plant of claim 17, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 19. A transgenic seed produced by the plant of claim 16.
- 20. The method of claim 8, wherein the Rad23 polynucleotide and the polynucleotide of interest are introduced in to the plant cell simultaneously.
- 21. A transformed plant cell produced by the method of claim 20.
- 22. The plant cell of claim 21, wherein the plant cell is from a monocot or a dicot.
- 23. The plant cell of claim 22, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 24. The method of claim 20, wherein the transformed plant cell is grown under conditions sufficient to produce a transformed plant.
- 25. A transformed plant produced by the method of claim 24.
- 26. The plant of claim 25, wherein the plant is a monocot or a dicot.
- 27. The plant of claim 26, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 28. A transgenic seed produced by the plant of claim 25.
- 29. The method of claim 8, wherein the Rad23 polynucleotide is introduced into the plant cell prior to the introduction of the polynucleotide of interest.
- 30. A transformed plant cell produced by the method of claim 29.
- 31. The plant cell of claim 30, wherein the plant cell is from a monocot or a dicot.
- 32. The plant cell of claim 31, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 33. The method of claim 29, wherein the transformed plant cell in grown under conditions sufficient to produce a transformed plant.
- 34. A transformed plant produced by the method of claim 33.
- 35. The plant of claim 34, wherein the plant is a monocot or a dicot.
- 36. The plant of claim 35, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 37. A transgenic seed produced by the plant of claim 34.
- 38. A method of increasing transformation efficiency comprising:
(a) introducing into a plant cell a polynucleotide of interest and a Rad23 polynucleotide encoding a Rad23 polypeptide to produce a transformed cell; (b) culturing the transformed plant cell under cell growing conditions; and (c) inducing expression of the Rad23 polypeptide for a time sufficient to increase the targeted gene insertion of the polynucleotide of interest.
- 39. The method of claim 38, wherein the polynucleotide encodes a Rad23 polypeptide selected from the group consisting of:
(a) a polypeptide of at least 20 contiguous amino acids from the polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4; (b) a polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4; (c) a polypeptide having at least 70% sequence identity to, and having at least one linear epitope in common with, a polypeptide selected from the group consisting of SEQ ID NOS: 2 or 4, wherein the percent sequence identity is determined according to the GAP program using the default settings; and (d) a polypeptide encoded by a polynucleotide which selectively hybridizes under stringent hybridization conditions and a wash in 0.1× SSC at 60° C. to a polynucleotide selected from the group consisting of SED ID NOS: 1 and 3.
- 40. The method of claim 38, wherein the plant cell is from a monocot or a dicot.
- 41. The method of claim 40, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 42. A transformed plant cell produced by the method of claim 38.
- 43. The plant cell of claim 42, wherein the plant cell is from a monocot or a dicot.
- 44. The plant cell of claim 43, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 45. The method of claim 38, wherein the transformed plant cell is grown under conditions sufficient to produce a transformed plant.
- 46. A transformed plant produced by the method of claim 45.
- 47. The plant of claim 46, wherein the plant is a monocot or a dicot.
- 48. The plant of claim 47, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 49. A transgenic seed produced by the plant of claim 46.
- 50. The method of claim 38, wherein the Rad23 polynucleotide and the polynucleotide of interest are introduced into the plant cell simultaneously.
- 51. A transformed plant cell produced by the method of claim 50.
- 52. The plant cell of claim 51, wherein the plant cell is from a monocot or a dicot.
- 53. The plant cell of claim 52, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 54. The method of claim 50, wherein the transformed plant cell is grown under conditions sufficient to produce a transformed plant.
- 55. A transformed plant produced by the method of claim 54.
- 56. The plant of claim 55, wherein the plant is a monocot or a dicot.
- 57. The plant of claim 56, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 58. A transgenic seed produced by the plant of claim 55.
- 59. The method of claim 38, wherein the Rad23 polynucleotide is introduced into the plant cell prior to the introduction of the polynucleotide of interest.
- 60. A transformed plant cell produced by the method of claim 59.
- 61. The plant cell of claim 60, wherein the plant cell is from a monocot or a dicot.
- 62. The plant cell of claim 61, wherein the plant cell is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 63. The method of claim 59, wherein the transformed plant cell is grown under conditions sufficient to produce a transformed plant.
- 64. A transformed plant produced by the method of claim 63.
- 65. The plant of claim 64, wherein the plant is a monocot or a dicot.
- 66. The plant of claim 65, wherein the plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, and millet.
- 67. A transgenic seed produced by the plant of claim 64.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of co-pending U.S. application Ser. No. 09/413,574 filed Oct. 6, 1999 and claims the benefit of U.S. Application Ser. No. 60/109,728 filed Nov. 23, 1998, now abandoned, which are herein incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60109728 |
Nov 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09413574 |
Oct 1999 |
US |
Child |
09805550 |
Mar 2001 |
US |