Floral transition genes in maize and uses thereof
The invention provides isolated floral transition nucleic acids and their encoded proteins. The present invention provides methods and compositions relating to altering floral transition in plants. The invention further provides regulatory elements, recombinant expression cassettes, host cells and transgenic plants.
1. An isolated promoter, comprising the nucleotide sequence set forth in SEQ ID NO: 31, wherein the promoter is operably linked to a heterologous polynucleotide.
2. A recombinant expression cassette comprising the promoter of claim 1 , wherein the promoter is operably linked to a heterologous polynucleotide.
3. An isolated host cell comprising the promoter of claim 1 .
4. A transgenic plant comprising the promoter of claim 1 .
5. The transgenic plant of claim 4 , wherein said plant is a monocot.
6. The transgenic plant of claim 4 , wherein said plant is a dicot.
7. The transgenic plant of claim 4 , wherein said plant is selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, millet, peanut and cocoa.
8. A transgenic seed from the transgenic plant of claim 4 wherein the seed comprises said promoter operably linked to a heterologous polynucleotide.
9. A method of modulating the flowering time in a plant, comprising:
a. introducing into a plant cell a recombinant expression cassette comprising the promoter of claim 1 wherein the heterologous polynucleotide encodes a polypeptide involved in flowering time; and
b. culturing a plant under plant cell growing conditions; wherein the flowering time in said plant is modulated.
10. The method of claim 9 , wherein the plant cell is from a plant selected from the group consisting of: maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, rice, barley, millet, peanut and cocoa.
11. The method of claim 9 , further comprising crossing said plant with another plant to produce hybrid seed.