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鉴定和潜在应用于光肩星天牛低度偏好宿主——银砂槐中的关键杀虫代谢物。

Identification and potential application of key insecticidal metabolites in Tilia amurensis, a low-preference host of Hyphantria cunea.

机构信息

School of Forestry, Northeast Forestry University, Harbin 150040, PR China; Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, Northeast Forestry University, Harbin 150040, PR China.

Heilongjiang Forestry Vocational Technical College, Mudanjiang 157011, PR China.

出版信息

Pestic Biochem Physiol. 2024 Feb;199:105796. doi: 10.1016/j.pestbp.2024.105796. Epub 2024 Jan 19.

Abstract

Developing effective insecticidal strategies is an important means of reducing the spread and host plant damage by Hyphantria cunea. In this study, key metabolites with insecticidal activity against H. cunea were screened by targeted metabolomics in Tilia amurensis, a low-preference host plant. Subsequently, the potential of key metabolites that could be used as botanical pesticides was evaluated. The results showed that coumarin was the key insecticidal metabolite of T. amurensis and had a significant insecticidal effect and weight inhibition effect on H. cunea larvae. Coumarin treatment significantly decreased the larval nutrient content and the gene expression of rate-limiting enzymes in the glycolytic pathway and tricarboxylic acid cycle. A significantly enhanced detoxification enzyme activity (CarE and GST), antioxidant oxidase activity (SOD and CAT), non-enzymatic antioxidant levels (GSH), and total antioxidant capacity were observed in coumarin-treated larvae. Coumarin treatment resulted in a significant increase in the expression levels of detoxification enzyme genes (CarE1, CarE2, CarE3, GST2, and GST3) and antioxidant oxidase genes (SOD1, CAT1, and CAT2) in H. cunea larvae. Coumarin treatment significantly increased the levels of MDA and HO in larvae but did not cause pathological changes in the ultrastructure of the larval midgut. Coumarin solution sprayed directly or as a microcapsule suspension formulation with coumarin as the active ingredient had significant insecticidal activity against the H. cunea larvae. Overall, coumarin, a key anti-insect metabolite identified from T. amurensis, can significantly inhibit the growth and survival of H. cunea larvae and has the potential to be developed as a botanical pesticide.

摘要

开发有效的杀虫策略是减少舞毒蛾传播和寄主植物损害的重要手段。本研究通过靶向代谢组学在喜树的低偏好寄主植物中筛选出对舞毒蛾具有杀虫活性的关键代谢物,随后评估了可作为植物源农药的关键代谢物的潜力。结果表明,香豆素是喜树的关键杀虫代谢物,对舞毒蛾幼虫具有显著的杀虫效果和体重抑制作用。香豆素处理显著降低了幼虫的营养物质含量和糖酵解途径和三羧酸循环中限速酶的基因表达。香豆素处理幼虫的解毒酶活性(CarE 和 GST)、抗氧化氧化酶活性(SOD 和 CAT)、非酶抗氧化水平(GSH)和总抗氧化能力显著增强。香豆素处理导致舞毒蛾幼虫解毒酶基因(CarE1、CarE2、CarE3、GST2 和 GST3)和抗氧化氧化酶基因(SOD1、CAT1 和 CAT2)的表达水平显著升高。香豆素处理显著增加了幼虫 MDA 和 HO 的水平,但未引起幼虫中肠超微结构的病理变化。香豆素溶液直接喷洒或以香豆素为活性成分的微胶囊悬浮剂对舞毒蛾幼虫具有显著的杀虫活性。总的来说,从喜树中鉴定出的关键抗虫代谢物香豆素能显著抑制舞毒蛾幼虫的生长和存活,具有开发为植物源农药的潜力。

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