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Molecular basis of Cyperus difformis cross-resistance to ALS-inhibiting herbicides

机译:香附子对抑制ALS的除草剂交叉抗性的分子基础

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摘要

Applications of 64 times higher rates of azimsulfuron and halosulfuron-methyl failed to reduce by 50% growth of 10 putative resistant (R) Cyperus difformis (smallflower umbrella-sedge) populations collected from rice fields located in Northern Greece. However, the growth rate of the susceptible (S) population was reduced by 50% by 1/4 of the recommended rate of both herbicides. The als gene sequencing identified point mutations at Pro-197 position, leading to amino acid substitution by Ala or Ser of the ALS enzyme. The in vitro activity of the ALS enzyme indicated that the 150 values (herbicide concentration required for 50% reduction of the ALS activity) ranged from 10.7 to 55.5 mu M azimsulfuron and from 6.7 to 50.6 mu M halosulfuron-methyl, whereas the respective values for the S population were 0.09 and 0.11 mu M. These results strongly support that cross-resistance of 10 C. difformis populations was due to point mutations of the als gene, which resulted in a less-sensitive ALS enzyme. This study reports the presence of a 1240 bp intron in the C difformis als gene with the Pro-197 point mutations near the splice junction. (c) 2015 Elsevier Inc. All rights reserved.
机译:从希腊北部稻田中收集的10种推定抗性(R)Cyperus difformis(小花伞状莎草)种群的施用,将阿齐磺隆和甲基甲基磺胺嘧啶的比率提高了64倍,却无法减少50%的增长。但是,易感(S)种群的生长速度降低了两种除草剂推荐速度的1/4的50%。 als基因测序鉴定出Pro-197位置的点突变,导致ALS酶被Ala或Ser取代。 ALS酶的体外活性表明,其150值(降低ALS活性50%所需的除草剂浓度)的范围是10.7至55.5μM阿齐磺隆和6.7至50.6μM卤代磺隆-甲基,而相应的S种群为0.09和0.11μM。这些结果有力地证明了10 C. difformis种群的交叉抗性归因于als基因的点突变,导致ALS酶的敏感性降低。这项研究报告了在C difformis als基因中存在一个1240 bp的内含子,其中Pro-197点突变位于剪接点附近。 (c)2015 Elsevier Inc.保留所有权利。

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