Claims
- 1. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein, wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 1; 2) encodes an amino acid having SEQ ID NO: 2; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 1 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 1 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 2. A DNA construct comprising:
the nucleic acid molecule according to claim 1 and an operably linked promoter and 3′ regulatory region.
- 3. A DNA expression vector comprising:
the DNA construct according to claim 2.
- 4. A host cell transduced with a DNA construct according to claim 2.
- 5. A host cell according to claim 4, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 6. A transgenic plant transformed with a DNA construct according to claim 2.
- 7. A transgenic plant according to claim 6, wherein the plant is papaya.
- 8. A transgenic plant seed transformed with a DNA construct according to claim 2.
- 9. A transgenic plant seed according to claim 8, wherein the plant is papaya.
- 10. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 3; 2) encodes an amino acid having SEQ ID NO: 4; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 3 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 3 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 11. A DNA construct comprising:
the nucleic acid molecule according to claim 10 and an operably linked promoter and 3′ regulatory region.
- 12. An expression vector comprising the DNA construct of claim 11.
- 13. A host cell transduced with a DNA construct according to claim 11.
- 14. A host cell according to claim 13, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 15. A transgenic plant transformed with a DNA construct according to claim 11.
- 16. A transgenic plant according to claim 15, wherein the plant is papaya.
- 17. A transgenic plant seed transformed with a DNA construct according to claim 11.
- 18. A transgenic plant seed according to claim 17, wherein the plant is papaya.
- 19. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein, wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 5; 2) encodes an amino acid having SEQ ID NO: 7; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 5 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 5 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 20. A DNA construct comprising:
the nucleic acid molecule according to claim 19 and an operably linked promoter and 3′ regulatory region.
- 21. A DNA expression vector comprising:
the DNA construct according to claim 20.
- 22. A host cell transduced with a DNA construct according to claim 20.
- 23. A host cell according to claim 22, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 24. A transgenic plant transformed with a DNA construct according to claim 20.
- 25. A transgenic plant according to claim 24, wherein the plant is papaya.
- 26. A transgenic plant seed transformed with a DNA construct according to claim 20.
- 27. A transgenic plant seed according to claim 26, wherein the plant is papaya.
- 28. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 6; 2) encodes an amino acid having SEQ ID NO: 8; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 6 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 6 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 29. A DNA construct comprising:
the nucleic acid molecule according to claim 28 and an operably linked promoter and 3′ regulatory region.
- 30. An expression vector comprising the DNA construct of claim 29.
- 31. A host cell transduced with a DNA construct according to claim 29.
- 32. A host cell according to claim 31, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 33. A transgenic plant transformed with a DNA construct according to claim 29.
- 34. A transgenic plant according to claim 33, wherein the plant is papaya.
- 35. A transgenic plant seed transformed with a DNA construct according to claim 29.
- 36. A transgenic plant seed according to claim 35, wherein the plant is papaya.
- 37. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein, wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 11; 2) encodes an amino acid having SEQ ID NO: 12; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 11 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 11 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 38. A DNA construct comprising:
the nucleic acid molecule according to claim 37 and an operably linked promoter and 3′ regulatory region.
- 39. A DNA expression vector comprising:
the DNA construct according to claim 38.
- 40. A host cell transduced with a DNA construct according to claim 38.
- 41. A host cell according to claim 40, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 42. A transgenic plant transformed with a DNA construct according to claim 38.
- 43. A transgenic plant according to claim 42, wherein the plant is papaya.
- 44. A transgenic plant seed transformed with a DNA construct according to claim 38.
- 45. A transgenic plant seed according to claim 44, wherein the plant is papaya.
- 46. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 13; 2) encodes an amino acid having SEQ ID NO: 14; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 13 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 13 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 47. A DNA construct comprising:
the nucleic acid molecule according to claim 46 and an operably linked promoter and 3′ regulatory region.
- 48. An expression vector comprising the DNA construct of claim 47.
- 49. A host cell transduced with a DNA construct according to claim 47.
- 50. A host cell according to claim 49, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 51. A transgenic plant transformed with a DNA construct according to claim 47.
- 52. A transgenic plant according to claim 51, wherein the plant is papaya.
- 53. A transgenic plant seed transformed with a DNA construct according to claim 47.
- 54. A transgenic plant seed according to claim 53, wherein the plant is papaya.
- 55. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein, wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 15; 2) encodes an amino acid having SEQ ID NO: 16; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 15 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 15 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 56. A DNA construct comprising:
the nucleic acid molecule according to claim 55 and an operably linked promoter and 3′ regulatory region.
- 57. A DNA expression vector comprising:
the DNA construct according to claim 56.
- 58. A host cell transduced with a DNA construct according to claim 56.
- 59. A host cell according to claim 58, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 60. A transgenic plant transformed with a DNA construct according to claim 56.
- 61. A transgenic plant according to claim 60, wherein the plant is papaya.
- 62. A transgenic plant seed transformed with a DNA construct according to claim 56.
- 63. A transgenic plant seed according to claim 62, wherein the plant is papaya.
- 64. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 17; 2) encodes an amino acid having SEQ ID NO: 18; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 17 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 17 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 65. A DNA construct comprising:
the nucleic acid molecule according to claim 64 and an operably linked promoter and 3′ regulatory region.
- 66. An expression vector comprising the DNA construct of claim 65.
- 67. A host cell transduced with a DNA construct according to claim 65.
- 68. A host cell according to claim 67, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 69. A transgenic plant transformed with a DNA construct according to claim 65.
- 70. A transgenic plant according to claim 69, wherein the plant is papaya.
- 71. A transgenic plant seed transformed with a DNA construct according to claim 65.
- 72. A transgenic plant seed according to claim 71, wherein the plant is papaya.
- 73. An isolated nucleic acid molecule encoding a papaya ringspot virus coat protein wherein the nucleic acid molecule either: 1) has a nucleic acid sequence of SEQ ID NO: 19; 2) encodes an amino acid having SEQ ID NO: 20; 3) has a nucleotide sequence that is at least 85% similar to the nucleotide sequence of SEQ ID NO: 19 by basic BLAST using default parameters analysis; or 4) hybridizes to the nucleotide sequence of SEQ ID NO: 19 under stringent conditions characterized by a hybridization buffer comprising 5×SSC buffer at a temperature of 56° C.
- 74. A DNA construct comprising:
the nucleic acid molecule according to claim 73 and an operably linked promoter and 3′ regulatory region.
- 75. An expression vector comprising the DNA construct of claim 74.
- 76. A host cell transduced with a DNA construct according to claim 74.
- 77. A host cell according to claim 76, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 78. A transgenic plant transformed with a DNA construct according to claim 74.
- 79. A transgenic plant according to claim 78, wherein the plant is papaya.
- 80. A transgenic plant seed transformed with a DNA construct according to claim 74.
- 81. A transgenic plant seed according to claim 80, wherein the plant is papaya.
- 82. A DNA construct comprising:
a plurality of trait DNA molecules at least some of which have a length that is insufficient to impart that trait to plants transformed with that trait DNA molecule, but said plurality of trait DNA molecules collectively impart their traits to plants transformed with said DNA construct and effect silencing of the DNA construct, wherein the trait is disease resistance and the trait DNA molecules are derived from a gene encoding a papaya ringspot virus coat protein in a papaya ringspot virus strain selected from the group consisting of TH, KE, KA, ME, YK, BR, JA, OA, VE, and PA.
- 83. A DNA construct according to claim 82, wherein one or more of the trait DNA molecules are selected from the group consisting of the variable regions and conserved regions of said papaya ringspot viral coat proteins.
- 84. The DNA construct according to claim 82, wherein one or more of the trait DNA molecules are in the sense (5′→3′) orientation.
- 85. The DNA construct according to claim 82, wherein one or more of the trait DNA molecules are inserted in the antisense (3′→5′) orientation.
- 86. An expression vector comprising:
the DNA construct according to claim 82.
- 87. A host cell transduced with a DNA construct according to claim 82.
- 88. A host cell according to claim 87, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 89. A transgenic plant transformed with a DNA construct according to claim 82.
- 90. A transgenic plant according to claim 89, wherein the plant is papaya.
- 91. A transgenic plant seed transformed with a DNA construct according to claim 82.
- 92. A transgenic plant seed according to claim 91, wherein the plant is papaya.
- 93. A DNA construct comprising:
a fusion gene comprising:
a trait DNA molecule which has a length that is insufficient to independently impart a desired trait to plants transformed with said trait DNA molecule and a silencer DNA molecule effective to achieve post-transcriptional gene silencing and operatively coupled to said trait DNA molecule, wherein said trait DNA molecule and said silencer DNA molecule collectively impart the trait to the plants transformed with said DNA construct, and wherein the trait DNA molecules are derived from a gene encoding a papaya ringspot viral coat protein from a papaya ringspot virus strain selected from the group consisting of TH, KE, KA, ME, YK, BR, JA, OA, VE, and PA.
- 94. A DNA construct according to claim 93, further comprising:
a promoter sequence operatively coupled to said fusion gene and a termination sequence operatively coupled to said fusion gene to end transcription.
- 95. A DNA construct according to claim 93, wherein said silencer DNA molecule is selected from the group consisting of a viral DNA molecule, a fluorescence protein encoding DNA molecule, a plant DNA molecule, a viral gene silencer, and combinations thereof.
- 96. An expression vector comprising:
the DNA construct according to claim 93.
- 97. A host cell transduced with a DNA construct according to claim 93.
- 98. A host cell according to claim 97, wherein the cell is selected from the group consisting of a bacterial cell, a virus, a yeast cell, and a plant cell.
- 99. A transgenic plant transformed with a DNA construct according to claim 93.
- 100. A transgenic plant according to claim 36, wherein the plant is papaya.
- 101. A transgenic plant seed transformed with a DNA construct according to claim 93.
- 102. A transgenic plant according to claim 101, wherein the plant is papaya.
- 103. A method of imparting resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 2.
- 104. A method of imparting resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 11.
- 105. A method of imparting resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 20.
- 106. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 29.
- 107. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 38.
- 108. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 47.
- 109. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 56.
- 110. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 65.
- 111. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 74.
- 112. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 82.
- 113. A method of imparting viral resistance to papaya plants against papaya ringspot virus comprising:
transforming a papaya plant with a DNA construct according to claim 93.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/283,007, filed Apr. 11, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60283007 |
Apr 2001 |
US |