IMPROVEMENT OF HERBICIDE TOLERANCE TO HPPD INHIBITORS BY DOWN-REGULATION OF PUTATIVE 4-HYDROXYPHENYLPYRUVATE REDUCTASES IN SOYBEAN
A method for conferring tolerance to a 4-hydroxyphenylpyruvate dioxygenase (HPPD) inhibitor herbicide in a plant, comprising reducing expression of at least one 4-hydroxyphenylpyruvate reductase (HPPR) enzyme in the plant.
1 . A method for conferring tolerance to a 4-hydroxyphenylpyruvate dioxygenase (HPPD) inhibitor herbicide in a plant, comprising reducing expression of at least one 4-hydroxyphenylpyruvate reductase (HPPR) enzyme in the plant.
2 . The method according to claim 1 , wherein the method further comprises expressing a mutant HPPD enzyme, wherein the mutant HPPD enzyme is less sensitive to HPPD inhibitors than the native HPPD enzyme before mutation.
3 . The method according to claim 2 , wherein the mutant HPPD enzyme has the amino acid sequence of SEQ ID NO: 1 with the following amino acid substitutions:
(a) a proline at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1 and a tryptophan at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1;
(b) a serine at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1, a serine at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1, a threonine at the amino acid position corresponding to amino acid position 339 of SEQ ID NO:1, and a glutamine at the amino acid position corresponding to amino acid position 340 of SEQ ID NO:1;
(c) a tryptophan at the amino acid position corresponding to amino acid position 188 of SEQ ID NO:1 and a tryptophan at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1;
(d) a proline at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1, a serine at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1, and a glutamic acid at the amino acid position corresponding to amino acid position 340 of SEQ ID NO:1; or
(e) a proline at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1, a tryptophan at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1, an alanine at the amino acid position corresponding to amino acid position 339 of SEQ ID NO:1, and a glutamine at the amino acid position corresponding to amino acid position 340 of SEQ ID NO:1.
4 . The method according to claim 3 , wherein the mutant HPPD enzyme has the amino acid sequence of SEQ ID NO: 16.
5 . The method according to claim 1 , wherein the expression of at least one HPPR enzyme in the plant is reduced by silencing one or more endogenous HPPR genes in the plant.
6 . The method according to claim 1 , wherein the plant is selected from the group consisting of: maize, sorghum, wheat, sunflower, tomato, crucifers, peppers, potato, cotton, rice, soybean, sugarbeet, sugarcane, tobacco, barley, and oilseed rape.
7 . The method according to claim 1 , wherein the plant is soybean.
8 . The method according to claim 7 , wherein the HPPR enzyme is SEQ ID NO: 92 and/or SEQ ID NO: 93.
9 . The method according to claim 7 , wherein the method comprises:
(a) transforming a soybean cell with a DNA construct comprising a RNAi region for inhibiting the expression of one or more endogenous HPPR genes; and
(b) regenerating a transgenic soybean plant from said transformed soybean cell.
10 . The method according to claim 9 , wherein the DNA construct comprising a RNAi region for inhibiting the expression of one or more endogenous HPPR genes further comprises a coding region that encodes a mutant HPPD enzyme, wherein the mutant HPPD enzyme mutant is less sensitive to HPPD inhibitors than the native HPPD enzyme before mutation.
11 . The method according to claim 10 , wherein the mutant HPPD enzyme has the amino acid sequence of SEQ ID NO:1 with the following amino acid substitutions:
(a) a proline at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1 and a tryptophan at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1;
(b) a serine at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1, a serine at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1, a threonine at the amino acid position corresponding to amino acid position 339 of SEQ ID NO:1, and a glutamine at the amino acid position corresponding to amino acid position 340 of SEQ ID NO:1;
(c) a tryptophan at the amino acid position corresponding to amino acid position 188 of SEQ ID NO:1 and a tryptophan at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1;
(d) a proline at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1, a serine at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1, and a glutamic acid at the amino acid position corresponding to amino acid position 340 of SEQ ID NO:1; or
(e) a proline at the amino acid position corresponding to amino acid position 335 of SEQ ID NO:1, a tryptophan at the amino acid position corresponding to amino acid position 336 of SEQ ID NO:1, an alanine at the amino acid position corresponding to amino acid position 339 of SEQ ID NO:1, and a glutamine at the amino acid position corresponding to amino acid position 340 of SEQ ID NO:1.
12 . The method according to claim 10 , wherein the coding region encodes the amino acid sequence set forth in any of SEQ ID NOs: 3-59 or fragments thereof.
13 . The method according to claim 10 , wherein the coding region encodes the amino acid sequence set forth in SEQ ID NO: 16 or fragments thereof.
14 . The method according to claim 10 , wherein the coding region is a synthetic sequence that has been designed for expression in soybean.
15 . A transgenic soybean plant produced by the method of claim 9 .