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AN ACETOHYDROXY ACID SYNTHASE MUTANT REVEALS A SINGLE-SITE INVOLVED IN MULTIPLE HERBICIDE RESISTANCE
被引:91
作者:
HATTORI, J
BROWN, D
MOURAD, G
LABBE, H
OUELLET, T
SUNOHARA, G
RUTLEDGE, R
KING, J
MIKI, B
机构:
[1] AGR CANADA,PLANT RES CTR,CEF,OTTAWA,ON K1A 0C6,CANADA
[2] BISHOPS UNIV,DEPT BIOL,LENNOXVILLE,PQ J1M 1Z7,CANADA
[3] FORESTRY CANADA,PETAWAWA NATL FORESTRY INST,CHALK RIVER,ON K0J 1J0,CANADA
[4] UNIV SASKATCHEWAN,DEPT BIOL,SASKATOON,SK S7N 0W0,CANADA
来源:
MOLECULAR & GENERAL GENETICS
|
1995年
/
246卷
/
04期
关键词:
ACETOHYDROXY ACID SYNTHASE;
FEEDBACK INHIBITORS;
HERBICIDES;
MULTIPLE RESISTANCE;
D O I:
10.1007/BF00290445
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Acetohydroxy acid synthase (AHAS) is an essential enzyme for many organisms as it catalyzes the first step in the biosynthesis of the branched-chain amino acids valine, isoleucine, and leucine. The enzyme is under allosteric control by these amino acids. It is also inhibited by several classes of herbicides, such as the sulfonylureas, imidazolinones and triazolopyrimidines, that are believed to bind to a relic quinone-binding site. In this study, a mutant allele of AHAS3 responsible for sulfonylurea resistance in a Brassica napus cell line was isolated. Sequence analyses predicted a single amino acid change (557 Trp-->Leu) within a conserved region of AHAS. Expression in transgenic plants conferred strong resistance to the three classes of herbicides, revealing a single site essential for the binding of all the herbicide classes. The mutation did not appear to affect feedback inhibition by the branched-chain amino acids in plants.
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页码:419 / 425
页数:7
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