Claims
- 1. A nucleic acid molecule comprising a first nucleic acid segment comprising a polypeptide encoding sequence and a second nucleic acid segment comprising a gene suppression sequence, wherein transcription of said nucleic acid molecule in a host cell results in expression of a polypeptide by said polypeptide encoding sequence and suppression of a gene in said host cell.
- 2. The nucleic acid molecule according to claim 1, wherein said second nucleic acid segment is expressed as a dsRNA molecule.
- 3. The nucleic acid molecule according to claim 2, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to an mRNA.
- 4. The nucleic acid molecule according to claim 3, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to an intron from said mRNA.
- 5. The nucleic acid molecule according to claim 3, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to an exon from said mRNA.
- 6. The nucleic acid molecule according to claim 3, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to a 3′ UTR from said mRNA.
- 7. The nucleic acid molecule according to claim 3, wherein said second nucleic segment acid has at least 21 contiguous nucleotides corresponding to a 5′ UTR from said mRNA.
- 8. The nucleic acid molecule according to claim 1, wherein said first nucleic acid segment and said second nucleic acid segment are operably linked to a single promoter.
- 9. The nucleic acid molecule according to claim 1, wherein said suppression of a gene is suppression of an endogenous gene to said host cell.
- 10. A plant having in its genome a nucleic acid molecule of claim 1.
- 11. A method of simultaneously altering the expression of more than one RNA molecule in a plant comprising introducing into the genome of said plant a nucleic acid molecule of claim 1.
- 12. The method according to claim 11, wherein said second nucleic acid segment is expressed as a dsRNA molecule.
- 13. The method according to claim 12, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to an mRNA.
- 14. The method according to claim 12, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to an intron from said mRNA.
- 15. The method according to claim 12, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to an exon from said mRNA.
- 16. The method according to claim 12, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to a 3′ UTR from said mRNA.
- 17. The method according to claim 12, wherein said second nucleic acid segment has at least 21 contiguous nucleotides corresponding to a 5′ UTR from said mRNA.
- 18. The method according to claim 11, wherein the level of expression of at least one of said more than one RNA molecules is at least partially reduced.
- 19. The method according to claim 18, wherein said level of expression of at least one of said more than one RNA molecules is substantially reduced.
- 20. The method according to claim 19, wherein the level of expression of at least one of said more than one RNA molecules is effectively eliminated.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 10/393,347, filed Mar. 21, 2003, which claims priority under 35 U.S.C. §19(e) to U.S. Provisional Application No. 60/390,185, filed Jun. 21, 2002, each of which is herein incorporated by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60390185 |
Jun 2002 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10393347 |
Mar 2003 |
US |
Child |
10668240 |
Sep 2003 |
US |