Method for producing yellow flower by controlling flavonoid synthetic pathway
View Patent ↗There is provided a gene coding for the amino acid sequence listed as SEQ ID NO: 2 or SEQ ID NO: 70, for example. Co-expression of the 4′CGT gene and AS gene in a plant lacking natural aurone synthesis ability is carried out to successfully accumulate aurones and alter the flower color to have a yellow tint. In addition to the expression of both genes, the flavonoid pigment synthesis pathway of the host plant itself is inhibited to obtain flowers with a more defined yellow color.
1. An isolated gene coding for a protein having activity of transferring a sugar to the chalcone 4′-position, wherein the protein having activity of transferring a sugar to the chalcone 4′-position has the amino acid sequence of SEQ ID NO:2.
2. The gene according to claim 1 , which is derived from the family Scrophulariaceae.
3. The gene according to claim 2 , which is derived from Antirrhinum majus.
4. A vector comprising the gene according to claim 1 .
5. An isolated host cell transformed by the vector according to claim 4 .
6. A plant having the gene according to claim 1 introduced therein or a progeny of said plant having the same properties as said plant, wherein the progeny comprises the gene according to claim 1 , or a propagated plant or tissue from the plant or plant progeny wherein the propagated plant or tissue comprise said gene.
7. Flowers cut from the plant or plant progeny according to claim 6 .
8. A method for transferring a sugar to the chalcone 4′-position comprising expressing the gene according to claim 1 .
9. A plant having modified flower color obtained by introducing and expressing the gene according to claim 1 into a plant, or a progeny of said plant having the same properties as said plant, wherein the plant progeny comprises the gene according to claim 1 .
10. The plant or plant progeny according to claim 9 , wherein the flower color has a yellow tint.
11. A method for altering flower color to yellow in a plant comprising introducing and expressing the gene according to claim 1 together with a gene coding for Antirrhinum majus aureusidin synthase in a plant to alter the flower color to yellow.