US2006206967A1PendingUtilityA1

Genetic control of flowering

Assignee: PIONEER HI BRED INTPriority: Nov 2, 1994Filed: Dec 22, 2005Published: Sep 14, 2006
Est. expiryNov 2, 2014(expired)· nominal 20-yr term from priority
C12N 15/8262C07K 14/415C12N 15/8261C12N 15/827Y02A40/146
52
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Claims

Abstract

The CONSTANS(CO) gene of Arabidopsis thaliana and homologues from Brassica napus are provided and are useful for influencing flowering characteristics in transgenic plants, especially the timing of flowering.

Claims

exact text as granted — not AI-modified
1 - 33 . (canceled)  
     
     
         34 . A nucleic acid isolate having a nucleotide sequence coding for a polypeptide which includes the amino acid sequence shown in  FIG. 1 .  
     
     
         35 . Nucleic acid according to  claim 34  wherein coding sequence is the coding sequence shown in  FIG. 1 .  
     
     
         36 . Nucleic acid according to  claim 34  wherein the coding sequence is a mutant, allele or derivative of the coding sequence shown in  FIG. 1 .  
     
     
         37 . A nucleic acid isolate having a nucleotide sequence coding for a polypeptide which includes a sequence mutant, allele or derivative of the CO amino acid sequence of the species  Arabdiopsis thaliana  shown in  FIG. 1  or a homologue from another species, by way of insertion, deletion, addition or substitution of one or more residues, or a said homologue, wherein expression of said nucleotide sequence delays flowering in a transgenic plant, the timing of flowering being substantially unaffected by vernalisation.  
     
     
         38 . A nucleic acid isolate having a nucleotide sequence coding for a polypeptide which includes a sequence mutant, allele or derivative of the CO amino acid sequence of the species  Arabidopsis thaliana  shown in  FIG. 1  or a homologue from another species, by way of insertion, deletion, addition or substitution of one or more residues, or a said homologue, wherein expression of said nucleotide sequence promotes flowering in a transgenic plant, the timing of flowering being substantially unaffected by vernalisation.  
     
     
         39 . Nucleic acid according to  claim 38  able to complement a co mutation.  
     
     
         40 . Nucleic acid according to  claim 39  wherein said mutation is in  Arabidopsis thaliana.    
     
     
         41 . Nucleic acid according to  claim 37  wherein the encoded polypeptide includes an arrangement of cysteines characteristic of zinc fingers.  
     
     
         42 . Nucleic acid according to  claim 41  wherein the arrangement of cysteines is C-X 2 -C-X 16 -C-X.  
     
     
         43 . Nucleic acid according to  claim 37  where the encoded polypeptide includes a zinc finger.  
     
     
         44 . Nucleic acid according to  claim 38  wherein said homologue has the amino acid sequence shown in  FIG. 5  or  FIG. 6 .  
     
     
         45 . Nucleic acid according to  claim 44  wherein said coding sequence is the coding sequence shown in  FIG. 5  or  FIG. 6 .  
     
     
         46 . Nucleic acid according to  claim 34  under the control of a regulatory sequence for expression of said polypeptide.  
     
     
         47 . Nucleic acid according to  claim 46  wherein said regulatory sequence includes an inducible promoter.  
     
     
         48 . Nucleic acid according to  claim 47  wherein the promoter is derived from a maize gene for a 27 kD subunit of glutathione-S-transferase, isoform II.  
     
     
         49 . A nucleic acid isolate having a nucleotide sequence complementary to a coding sequence of  claim 34  or a fragment of a said coding sequence suitable for use in anti-sense regulation of gene expression.  
     
     
         50 . Nucleic acid which is DNA according to  claim 34  wherein said nucleotide sequence or a fragment thereof is under control of a regulatory sequence for anti-sense transcription of said nucleotide sequence or a fragment thereof.  
     
     
         51 . Nucleic acid according to  claim 50  comprising an inducible promoter.  
     
     
         52 . Nucleic acid according to  claim 51  wherein the promoter is derived from a maize gene for a 27 kD subunit of glutathione-S-transferase, isoform II.  
     
     
         53 . A nucleic acid vector suitable for transformation of a plant cell and comprising nucleic acid according to  claim 34 .  
     
     
         54 . A plant cell comprising nucleic acid according to  claim 34 .  
     
     
         55 . A plant cell according to  claim 54  having heterologous said nucleic acid within its genome.  
     
     
         56 . A plant cell according to  claim 55  having more than one said nucleotide sequence per haploid genome.  
     
     
         57 . A plant comprising plant cell according to  claim 54 .  
     
     
         58 . Selfed or hybrid progeny or a descendant of a plant according to  claim 57 , or any part or propagule of such a plant, progeny or descendant, such as seed.  
     
     
         59 . A method of influencing a flowering characteristic of a plant, the method comprising causing or allowing expression of the polypeptide encoded by nucleic acid according to  claim 34  from that nucleic acid within cells of the plant.  
     
     
         60 . A method of influencing a flowering characteristic of a plant, the method comprising causing or allowing transcription from nucleic acid according to  claim 34  within cells of the plant.  
     
     
         61 . A method of influencing a flowering characteristic of a plant, the method comprising causing or allowing anti-sense transcription from nucleic acid according to  claim 49  within cells of the plant.  
     
     
         62 . A method of identifying and cloning CO homologues from plant species other than  Arabidopsis thaliana  which method employs a nucleotide sequence derived from that shown in  FIG. 1 .  
     
     
         63 . Nucleic acid encoding a CO homologue obtained by the method of  claim 62 , CO having the amino acid sequence shown in  FIG. 1 .  
     
     
         64 . Nucleic acid according to  claim 63  which comprises a nucleotide sequence shown in  FIG. 5  or  FIG. 6 .  
     
     
         65 . A method of identifying and cloning CO homologues from plant species other than  Arabadopsis thaliana  which method employs a nucleotide sequence derived from a sequence shown in  FIG. 5  or  FIG. 6 .  
     
     
         66 . Nucleic acid encoding a CO homologue obtained by the method of  claim 65 , CO having the amino acid sequence shown in  FIG. 1 .

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