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靶基因突变赋予稗草对乙酰乳酸合成酶抑制剂的抗性。

Mutations in target gene confers resistance to acetolactate synthase inhibitors in Echinochloa phyllopogon.

机构信息

Shenyang Agricultural University, College of Plant Protection, Shenyang, Liaoning, 110866, China.

Solid Waste and Chemical Management Center, MEE of PR China, No. 1 Yu Hui Nan Road, Chaoyang District, Beijing, China.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109194. doi: 10.1016/j.plaphy.2024.109194. Epub 2024 Oct 11.

Abstract

Echinochloa phyllopogon is a noxious weed that can harm rice over prolonged periods. Recently, a penoxsulam-resistant variant of E. phyllopogon with a mutation in the acetolactate synthase (ALS) gene was collected in Northeastern China. In the present study, the molecular mechanism underlying herbicide resistance in mutant populations was evaluated. The GR and IC values of the herbicide-resistant mutant 1-11 were 27.0- and 21.4-fold higher than those of the susceptible population 2-31, respectively. In addition, pre-application of malathion reduced the GR value of the resistant population. Additionally, mutant populations developed cross-resistance to other ALS inhibitors. E. phyllopogon ALS sequencing showed a Trp-574-Leu mutation in ALS2 variant 1-11. Molecular docking showed that the Trp-574-Leu substitution reduced the number of hydrogen bonds and altered the interaction between penoxsulam and ALS2. Transgenic Arabidopsis plants harboring the ALS2 mutant gene also showed resistance to penoxsulam and other ALS inhibitors. Overall, our study demonstrated that the Trp-574-Leu mutation and P450-mediated metabolic resistance lead to the cross-resistance of E. phyllopogon to ALS inhibitors.

摘要

稗草是一种有害杂草,长时间会对水稻造成危害。最近,在中国东北地区发现了稗草乙酰乳酸合成酶(ALS)基因突变的抗吡嘧磺隆突变体。本研究评估了突变体种群中除草剂抗性的分子机制。除草剂抗性突变体 1-11 的 GR 和 IC 值分别比敏感种群 2-31 高 27.0 倍和 21.4 倍。此外,马拉硫磷的预先应用降低了抗性种群的 GR 值。此外,突变体种群对其他 ALS 抑制剂产生了交叉抗性。稗草 ALS 测序显示 ALS2 变体 1-11 中的色氨酸 574 突变为亮氨酸。分子对接表明,色氨酸 574 突变为亮氨酸减少了氢键的数量,并改变了吡嘧磺隆与 ALS2 的相互作用。携带 ALS2 突变基因的转基因拟南芥植物也表现出对吡嘧磺隆和其他 ALS 抑制剂的抗性。总体而言,我们的研究表明,色氨酸 574 突变为亮氨酸和 P450 介导的代谢抗性导致稗草对 ALS 抑制剂的交叉抗性。

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