首页> 外文期刊>Environmental Pollution >Olfactory perception of herbicide butachlor by GOBP2 elicits ecdysone biosynthesis and detoxification enzyme responsible for chlorpyrifos tolerance in Spodoptera litura
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Olfactory perception of herbicide butachlor by GOBP2 elicits ecdysone biosynthesis and detoxification enzyme responsible for chlorpyrifos tolerance in Spodoptera litura

机译:通过Gobp2对除草剂丁香的嗅觉感知引发蜕皮的生物合成和排毒酶,其负责Spodoptera Litura的紫外线耐受性

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摘要

Insecticide resistance is one of the major obstacles for controlling agricultural pests. There have been a lot of studies on insecticides stimulating the development of insect resistance. Herbicides account for the largest sector in the agrochemical market and are often co-applied with insecticides to control insect pests and weeds in the same cropland ecosystem. However, whether and how herbicides exposure will affect insecticide resistance in insect pests is largely unexplored. Here we reported that after exposure to herbicide butachlor, the lepidopteran Spodoptera litura larvae reduced susceptibility to the insecticide chlorpyrifos. Docking simulation studies suggested that general odorant-binding protein 2 (GOBP2) could bind to butachlor with high binding affinity, and silencing SlGOBP2 by RNA interference (RNAi) decreased larval tolerance to chlorpyrifos. Butachlor exposure induced ecdysone biosynthesis, whose function on increasing chlorpyrifos tolerance was supported in synergism experiments and confirmed by silencing the key gene (SlCYP307A1) for ecdysone synthesis. Butachlor exposure also activated the expression of detoxification enzyme genes. Silencing the genes with the highest herbicideinduced expression among the three detoxification enzyme genes led to increased larval susceptibility to chlorpyrifos. Collectively, we proposed a new mechanism that olfactory recognition of herbicides by GOBP2 triggers insect hormone biosynthesis and leads to high metabolic tolerance against insecticides. These findings provide valuable information for the dissection of mechanisms of herbicide-induced resistance to insecticides and also supplements the development of reduced-risk strategies for pest control.
机译:杀虫剂抗性是控制农业害虫的主要障碍之一。有很多关于杀虫剂刺激抗虫病的研究。除草剂占农业化学市场中最大的部门,通常与杀虫剂共同应用,以控制同一农田生态系统中的虫害和杂草。但是,除了除草剂暴露是否会影响害虫的杀虫剂抗性在很大程度上是未开发的。在这里,我们报道称,在暴露于除草剂丁草蛋白后,Lepidopteran Spodoptera Litura幼虫将易受杀虫剂紫外线的敏感性降低。对接模拟研究表明,通用气味结合蛋白2(Gobp2)可以与具有高结合亲和力的丁香属,并通过RNA干扰(RNAi)沉默的SLGOBP2降低对紫外幼虫耐受性。 Butachlor暴露诱导蜕皮生物合成,其功能在增强氯吡啶耐受性上的协同性实验中支持,并通过沉默偏心基因(SLCOP307A1)来证实蜕皮酮合成。 Butachlor暴露还活化了解毒酶基因的表达。在三种解毒酶基因中沉默具有最高的除草剂诱导的表达的基因,导致对紫外线的幼虫易感性增加。统称,我们提出了一种新的机制,即通过GOBP2诱导除草剂的嗅觉诱导昆虫激素生物合成,并导致对杀虫剂的高代谢耐受性。这些调查结果为解剖除草剂诱导的耐药机制的机制提供了有价值的信息,并补充了害虫防治的减少风险策略的发展。

著录项

  • 来源
    《Environmental Pollution》 |2021年第9期|117409.1-117409.10|共10页
  • 作者单位

    Yunnan Agr Univ State Key Lab Conservat & Utilizat Bioresources Y Kunming 650201 Yunnan Peoples R China|Fujian Agr & Forestry Univ Coll Agr Key Lab Minist Educ Genet Breeding & Multiple Utilizat Cr Fuzhou 350002 Peoples R China|Fujian Agr & Forestry Univ Coll Life Sci State Key Lab Ecol Pest Control Fujian & Taiwan C Fuzhou 350002 Peoples R China;

    Fujian Agr & Forestry Univ Coll Agr Key Lab Minist Educ Genet Breeding & Multiple Utilizat Cr Fuzhou 350002 Peoples R China;

    Fujian Agr & Forestry Univ Coll Agr Key Lab Minist Educ Genet Breeding & Multiple Utilizat Cr Fuzhou 350002 Peoples R China;

    Fujian Agr & Forestry Univ Coll Agr Key Lab Minist Educ Genet Breeding & Multiple Utilizat Cr Fuzhou 350002 Peoples R China;

    Yunnan Agr Univ State Key Lab Conservat & Utilizat Bioresources Y Kunming 650201 Yunnan Peoples R China|Yunnan Plateau Characterist Agr Ind Res Inst Kunming 650201 Yunnan Peoples R China;

    Fujian Agr & Forestry Univ Coll Life Sci State Key Lab Ecol Pest Control Fujian & Taiwan C Fuzhou 350002 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Herbicides; Insecticides; Spodoptera litura; Olfactory perception; Ecdysone biosynthesis; Detoxification enzyme;

    机译:除草剂;杀虫剂;Spodoptera litura;嗅觉感知;蜕皮生物合成;解毒酶;
  • 入库时间 2022-08-19 03:04:09

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