Claims
- 1. An isolated nucleic acid molecule comprising a nucleotide sequence, wherein the nucleotide sequence or the complement of the nucleotide sequence encodes a polypeptide having in the N-terminal to C-terminal direction two AP2 DNA binding domains followed in the C-terminal by an amino acid subsequence selected from the group consisting of Xaa-Ser-Ser-Ser-Arg-Glu (SEQ ID NO: 25), Xaa-Ser-Asn-Ser-Arg-Glu (SEQ ID NO: 26), and Asn-Ser-Ser-Ser-Arg-Asn (SEQ ID NO: 27), wherein Xaa is an amino acid is selected from the group consisting of Gly, Ala, Val, Leu, and Ile.
- 2. The isolated nucleic acid molecule of claim 1, wherein said amino acid subsequence is selected from the group consisting of Ser-Ser-Leu-Xaa-Thr-Ser-Xaa-Ser-Ser-Ser-Arg-Glu (SEQ ID NO: 28), Ser-Ser-Leu-Xaa-Pro-Ser-Xaa-Ser-Asn-Ser-Arg-Glu (SEQ ID NO: 29), Ser-Ser-Leu-Xaa-Thr-Ser-Xaa-Ser-Asn-Ser-Arg-Glu (SEQ ID NO: 30), and Ser-Leu-Xaa-Asn-Ser-Ser-Ser-Arg-Asn (SEQ ID NO: 31) wherein Xaa is an amino acid residue selected from the group consisting of Gly, Ala, Val, Leu, and Ile.
- 3. An isolated nucleic acid molecule comprising a nucleotide sequence, or its complement, which can encode a polypeptide having an amino acid sequence that is substantially identical to a sequence selected from group consisting of SEQ ID NOs: 2, 4, 6, 9, 11, and 13.
- 4. An isolated nucleic acid molecule comprising a nucleotide sequence, or its complement, which can hybridize under stringent conditions to a second nucleic acid sequence which can encode a protein with substantial identity to SEQ ID NOs: 2,4, 6, 9, 11 and 13.
- 5. An isolated nucleic acid sequence which encodes an amino acid sequence comprising SEQ ID NOs: 2, 4, 6, 9, 11, or 13 containing conservative amino acid substitutions.
- 6. An isolated nucleic acid sequence which encodes an amino acid sequence comprising SEQ ID NOs: 2, 4, 6, 9, 11, or 13.
- 7. A recombinant DNA molecule that comprises, in the 5′ to 3′ direction:
(a) a first DNA polynucleotide that comprises a tissue specific promoter that functions in plants, operably linked to; (b) a second DNA polynucleotide that encodes an ANT protein, operably linked to; (c) a 3′ transcription termination DNA polynucleotide; wherein said first DNA polynucleotide is heterologous to said second DNA polynucleotide.
- 8. A recombinant DNA molecule that comprises, in the 5′ to 3′ direction:
(a) a first DNA polynucleotide that comprises an inducible promoter that functions in plants, operably linked to; (b) a second DNA polynucleotide that encodes an ANT protein, operably linked to; (c) a 3′ transcription termination DNA polynucleotide; wherein said first DNA polynucleotide is heterologous to said second DNA polynucleotide.
- 9. A recombinant DNA molecule that comprises, in the 5′ to 3′ direction:
(a) a first DNA polynucleotide that comprises a promoter that functions in plants, operably linked to; (b) a second DNA polynucleotide that encodes a crop ANT protein, operably linked to; (c) a 3′ transcription termination DNA polynucleotide; wherein said first DNA polynucleotide is heterologous to said second DNA polynucleotide.
- 10. A plant cell containing in its genome a recombinant DNA molecule of claim 7.
- 11. A plant cell containing in its genome a recombinant DNA molecule of claim 8.
- 12. A plant cell containing in its genome a recombinant DNA molecule of claim 9.
- 13. A plant containing in its genome a recombinant DNA molecule of claim 7.
- 14. A plant containing in its genome a recombinant DNA molecule of claim 8.
- 15. A plant containing in its genome a recombinant DNA molecule of claim 9.
- 16. The propogules of said plant of claim 13.
- 17. The propogules of said plant of claim 14.
- 18. The propogules of said plant of claim 15.
- 19. A method for obtaining a nucleic acid molecule encoding all or a substantial portion of the amino acid sequence of an ANT-like polypeptide comprising: (a) probing a cDNA or genomic library with a hybridization probe comprising a nucleotide sequence encoding all or a substantial portion of the amino acid sequence of an ANT-like polypeptide, wherein the amino acid sequence of the ANT-like polypeptide is selected from the group consisting of SEQ ID Nos: 2, 4, 6, 9, 11, and 13; (b) identifying a DNA clone that hybridizes under stringent conditions to the hybridization probe; (c) isolating the DNA clone identified in step (b); and (d) sequencing the cDNA or genomic fragment that is contained in the clone isolated in step (c).
- 20. A method of producing a plant that has enhanced organ size, comprising the steps of:
a) inserting into the genome of a plant cell a recombinant DNA molecule comprising:
i) a first DNA polynucleotide that comprises a promoter that functions in plants, operably linked to; ii) a second DNA polynucleotide that encodes a crop ANT protein, operably linked to; iii) a transcription termination polynucleotide that functions in plants; wherein said first DNA polynucleotide is heterologous to second DNA polynucleotide, b) obtaining a transformed plant cell; and c) regenerating a plant from said plant cell; and d) selecting said plant for increased organ size.
- 21. A plant with increased organ size produced by the method of claim 20.
- 22. A method of producing a plant that has increased organ size, comprising the steps of:
a) inserting into the genome of a plant cell a recombinant DNA molecule comprising:
i) a first DNA polynucleotide that comprises a tissue specific promoter that functions in plants, operably linked to; ii) a second DNA polynucleotide that encodes an ANT protein, operably linked to; ii) a transcription termination polynucleotide that functions in plants; wherein said first DNA polynucleotide is heterologous to second DNA polynucleotide, b) obtaining a transformed plant cell; and c) regenerating a plant from said plant cell; and d) selecting said plant for increased organ size.
- 23. A plant with increased organ size produced by the method of claim 22.
- 24. A method of producing a plant that has increased organ size, comprising the steps of:
a) inserting into the genome of a plant cell a recombinant DNA molecule comprising:
i) a first DNA polynucleotide that comprises an inducible promoter that functions in plants, operably linked to; ii) a second DNA polynucleotide that encodes a ANT protein, operably linked to; iii) a transcription termination polynucleotide that functions in plants; wherein said first DNA polynucleotide is heterologous to second DNA polynucleotide, b) obtaining a transformed plant cell; and c) regenerating a plant from said plant cell; and d) selecting said plant for increased organ size.
- 25. A plant with increased organ size produced by the method of claim 24.
- 26. A plant of claim 13 wherein said plant is selected from the group consisting of corn, soy, canola, wheat, cotton, tomato, and/or potato.
- 27. A plant of claim 14 wherein said plant is selected from the group consisting of corn, soy, canola, wheat, cotton, tomato, and/or potato.
- 28. A plant of claim 15 wherein said plant is selected from the group consisting of corn, soy, canola, wheat, cotton, tomato, and/or potato.
- 29. A process wherein a propogule of said plant of claim 13 is used to produce ethanol.
- 30. A process wherein a propogule of said plant of claim 14 is used to produce ethanol.
- 31. A process wherein a propogule of said plant of claim 15 is used to produce ethanol.
- 32. A process wherein a propogule of said plant of claim 13 is used to produce animal feed.
- 33. A process wherein a propogule of said plant of claim 14 is used to produce animal feed.
- 34. A process wherein a propogule of said plant of claim 15 is used to produce animal feed.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §119(e) of U.S. Provisional Application Serial No. 60/257,896 filed on Dec. 21, 2000, the disclosures of which application is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60257896 |
Dec 2000 |
US |