Claims
- 1. An isolated dwf7 polynucleotide that imparts at least one dwf7 mutant phenotype when expressed in a plant, said polynucleotide selected from the group consisting of (a) a polynucleotide comprising the nucleotide sequence depicted at positions 143 to 322, inclusive, of FIGS. 8A-8D; (b) a polynucleotide comprising the nucleotide sequence depicted at positions 143 to 1552, inclusive, of FIGS. 8A-8D; (c) a polynucleotide comprising a nucleotide sequence having at least 70% identity to the nucleotide sequence of (a) or (b); (d) a fragment of (a), (b) or (c) comprising at least 15 contiguous nucleotides; and (e) complements of (a), (b), (c), (d) or (e).
- 2. The isolated dwf7 polynucleotide of claim 1, wherein said polynucleotide comprises the nucleotide sequence depicted at positions 143 to 322, inclusive, of FIGS. 8A-8D or the complement thereof.
- 3. The isolated dwf7 polynucleotide of claim 1, wherein said polynucleotide comprises the nucleotide sequence depicted at positions 143 to 1552, inclusive, of FIGS. 8A-8D or the complement thereof.
- 4. The isolated dwf7 polynucleotide of claim 1, wherein said polynucleotide consists of the nucleotide sequence depicted at positions 143 to 322, inclusive, of FIGS. 8A-8D or the complement thereof.
- 5. The isolated dwf7 mutant polynucleotide of claim 1, wherein said polynucleotide consists of the nucleotide sequence depicted at positions 143 to 1552, inclusive, of FIGS. 8A-8D or the complement thereof.
- 6. An isolated dwf7 polynucleotide that imparts at least one dwf7 mutant phenotype when expressed in a plant, said polynucleotide selected from the group consisting of (a) a polynucleotide comprising the nucleotide sequence depicted at positions 1506 to 2720, inclusive, of FIGS. 10A-10F; (b) a polynucleotide comprising a nucleotide sequence having at least 70% identity to the nucleotide sequence of (b); (c) a fragment of (a) or (b) comprising at least 15 contiguous nucleotides; and (d) complements of (a), (b), (c) or (d).
- 7. The isolated dwf7 polynucleotide of claim 6, wherein said polynucleotide consists of the nucleotide sequence depicted at positions 1506 to 2720, inclusive, of FIGS. 10A-10F or the complement thereof.
- 8. A recombinant vector comprising:
(a) the isolated dwf7 polynucleotide of claim 1; and (b) control elements that are operably linked to said polynucleotide whereby a coding sequence within said polynucleotide can be transcribed and translated in a host cell, and at least one of said control elements is heterologous to said coding sequence.
- 9. A recombinant vector comprising:
(a) the isolated dwf7 polynucleotide of claim 6; and (b) control elements that are operably linked to said polynucleotide whereby a coding sequence within said polynucleotide can be transcribed and translated in a host cell, and at least one of said control elements is heterologous to said coding sequence.
- 10. A host cell transformed with the recombinant vector of claim 8.
- 11. A host cell transformed with the recombinant vector of claim 9.
- 12. A method of producing a DWF7 polypeptide comprising:
(a) providing a population of host cells according to claim 10; and (b) culturing said population of cells under conditions whereby the DWF7 polypeptide encoded by the coding sequence present in said recombinant vector is expressed.
- 13. A method of producing a DWF7 polypeptide comprising:
(a) providing a population of host cells according to claim 11; and (b) culturing said population of cells under conditions whereby the DWF7 polypeptide encoded by the coding sequence present in said recombinant vector is expressed.
- 14. A transgenic plant comprising the polynucleotide of claim 1.
- 15. A transgenic plant comprising the polynucleotide of claim 6.
- 16. A method of producing a transgenic plant comprising the steps of:
(a) introducing the polynucleotide of claim 1 into a plant cell to produce a transformed plant cell; and (b) producing a transgenic plant from the transformed plant cell.
- 17. A method of producing a transgenic plant comprising the steps of:
(a) introducing the polynucleotide of claim 6 into a plant cell to produce a transformed plant cell; and (b) producing a transgenic plant from the transformed plant cell.
- 18. A method for altering the sterol composition of a plant relative to the wild-type plant comprising:
(a) introducing the polynucleotide of claim 1 into a plant cell to produce a transformed plant cell; and (b) producing a transgenic plant from the transformed plant cell, said transgenic plant having an altered sterol composition relative to the wild-type plant.
- 19. A method for altering the sterol composition of a plant relative to the wild-type plant comprising:
(a) introducing the polynucleotide of claim 6 into a plant cell to produce a transformed plant cell; and (b) producing a transgenic plant from the transformed plant cell, said transgenic plant having an altered sterol composition relative to the wild-type plant.
- 20. The method of claim 18, wherein the transgenic plant has less cholesterol relative to the wild-type plant.
- 21. The method of claim 19, wherein the transgenic plant has less cholesterol relative to the wild-type plant.
- 22. The method of claim 18, wherein the transgenic plant has increased sterol production relative to the wild-type plant.
- 23. The method of claim 19, wherein the transgenic plant has increased sterol production relative to the wild-type plant.
- 24. An isolated DWF7 polypeptide encoded by the polynucleotide of claim 1.
- 25. The isolated DWF7 polypeptide of claim 24, wherein said polypeptide consists of the amino acid sequence depicted at positions 1-60, inclusive, of FIG. 9.
- 26. The isolated DWF7 polypeptide of claim 24, wherein said polypeptide consists of the amino acid sequence depicted at positions 1-230, inclusive, of FIG. 9.
- 27. An isolated DWF7 polypeptide encoded by the polynucleotide of claim 6.
- 28. The isolated DWF7 polypeptide of claim 27 wherein said polypeptide consists of the amino acid sequence depicted at positions 1-279, inclusive, of FIG. 11.
- 29. An isolated control element having at least 70% identity to a control element found within nucleotide positions 43-142 of FIGS. 8A-8D.
- 30. A recombinant vector comprising:
(a) the isolated control element of claim 29; and (b) a polynucleotide comprising a coding sequence which is heterologous to said control element.
- 31. An isolated control element having at least 70% identity to a control element found within nucleotide positions 1-1505 of FIGS. 10A-10F.
- 32. A host cell transformed with the recombinant vector of claim 30.
- 33. A host cell transformed with the recombinant vector of claim 31.
- 34. A method of producing a recombinant polypeptide comprising:
(a) providing a population of host cells according to claim 32; and (b) culturing said population of cells under conditions whereby the recombinant polypeptide encoded by the coding sequence present in said recombinant vector is expressed.
- 35. A method of producing a recombinant polypeptide comprising:
(a) providing a population of host cells according to claim 33; and (b) culturing said population of cells under conditions whereby the recombinant polypeptide encoded by the coding sequence present in said recombinant vector is expressed.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is related to provisional patent application Serial No. 60/179,901, filed Feb. 2, 2000, from which priority is claimed under 35 USC §119(e)(1) and which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60179901 |
Feb 2000 |
US |