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乙酰乳酸合成酶中苯丙氨酸 206 亮氨酸的新突变赋予稗草(Echinochloa crus-galli(L.)P. Beauv.)对吡嘧磺隆的抗性。

A novel Phe-206-Leu mutation in acetolactate synthase confers resistance to penoxsulam in barnyardgrass (Echinochloa crus-galli (L.) P. Beauv).

机构信息

State and Local Joint Engineering Research Center of Green Pesticide Invention and Application/College of Plant Protection, Nanjing Agricultural University, Nanjing, China.

Key Laboratory of Integrated Pest Management on Crops in East China, Ministry of Agriculture, Nanjing Agricultural University, Nanjing, China.

出版信息

Pest Manag Sci. 2022 Jun;78(6):2560-2570. doi: 10.1002/ps.6887. Epub 2022 Apr 11.

Abstract

BACKGROUND

Barnyardgrass (Echinochloa crus-galli (L.) P. Beauv) has evolved resistance to the acetolactate synthase (ALS) inhibitor penoxsulam which is used to control weeds in rice fields in China. The present study is conducted to identify the target-site resistance (TSR) mechanisms conferring resistance in a penoxsulam-resistant population.

RESULTS

The ALS sensitivity in vitro of the resistant population was sixfold lower to penoxsulam than that of the sensitive population. ALS sequencing revealed that no known mutation conferring ALS herbicide resistance was detected. However, a novel mutation Phe-206-Leu was identified in the ALS gene. Additionally, ALS gene expression level of the resistant population was lower than that of the sensitive population. Therefore, the penoxsulam resistance was not due to the overexpression of ALS gene. Molecular docking revealed that this mutation may change the interaction of the penoxsulam-ALS binding and weaken its mutual affinity by approximately 10%. Arabidopsis thaliana transformed with mutant ALS had fourfold greater resistance to penoxsulam and varied cross-resistance to other ALS herbicides than those transformed with sensitive ALS. Mutant and sensitive ALS proteins expressed by the baculovirus system exhibited different in vitro penoxsulam sensitivity levels. Mutant ALS had eightfold lower sensitivity to penoxsulam than sensitive ALS.

CONCLUSION

This report provides clear evidence that the ALS mutation at position 206 (Phe-206-Leu) confers penoxsulam resistance in barnyardgrass. Phe-206 was confirmed to be the ninth amino acid residue related to ALS herbicide resistance in weeds. © 2022 Society of Chemical Industry.

摘要

背景

稗草(Echinochloa crus-galli(L.)P. Beauv)已经对乙酰乳酸合成酶(ALS)抑制剂吡嘧磺隆产生了抗性,吡嘧磺隆在中国用于控制稻田杂草。本研究旨在鉴定稗草对吡嘧磺隆产生抗性的靶标抗性(TSR)机制。

结果

与敏感种群相比,抗性种群的 ALS 体外敏感性对吡嘧磺隆的敏感性降低了六倍。ALS 测序显示,未检测到赋予 ALS 除草剂抗性的已知突变。然而,在 ALS 基因中发现了一个新的突变 Phe-206-Leu。此外,抗性种群的 ALS 基因表达水平低于敏感种群。因此,吡嘧磺隆抗性不是由于 ALS 基因的过表达。分子对接表明,这种突变可能会改变吡嘧磺隆-ALS 结合的相互作用,并使它们的相互亲和力减弱约 10%。用突变 ALS 转化的拟南芥对吡嘧磺隆的抗性比用敏感 ALS 转化的拟南芥高四倍,对其他 ALS 除草剂的交叉抗性也不同。用杆状病毒系统表达的突变和敏感 ALS 蛋白表现出不同的体外吡嘧磺隆敏感性水平。突变 ALS 对吡嘧磺隆的敏感性比敏感 ALS 低八倍。

结论

本报告提供了明确的证据,表明位置 206(Phe-206-Leu)的 ALS 突变赋予稗草对吡嘧磺隆的抗性。Phe-206 被确认为杂草中与 ALS 除草剂抗性相关的第九个氨基酸残基。 © 2022 化学工业协会。

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