Zhou Hong, Liu Jinlin, Wan Fenglin, Guo Fuyou, Ning Yeshuang, Liu Sisi, Ding Wei
Institute of Pesticide Science, College of Plant Protection, Southwest University, Chongqing 400715, PR China.
Institute of Pesticide Science, College of Plant Protection, Southwest University, Chongqing 400715, PR China.
Comp Biochem Physiol C Toxicol Pharmacol. 2021 Aug;246:109055. doi: 10.1016/j.cbpc.2021.109055. Epub 2021 Apr 21.
Investigating the mechanisms of action of natural bioactive products against pests is a vital strategy to develop novel promising biopesticides. Scoparone, isolated from Artemisia capillaris, exhibited potent oviposition inhibition activity against Tetranychus cinnabarinus (a crop-threatening mite pests with strong fecundity). To explore the underlying mechanism, the vitellogenin (Vg) protein content, and Vg gene expression of mites from three consecutive generations of G0 individuals exposed to scoparone were determined, revealing marked inhibition. This study is the first to explore the egg development defect behaviour of mite pests induced by scoparone. The egg-laying inhibition of mites by scoparone was significantly increased by 47.43% compared with that of the control when TcVg was silenced by RNA interference (RNAi), suggesting that egg-development inhibition of female T. cinnabarinus by scoparone was mediated by low Vg gene expression. Furthermore, scoparone bound to the Vg protein in vitro, and its K value was 218.9 μM, implying its potential function in inhibiting the egg development of mites by directly targeting the Vg protein. This study will lay the foundation for the future applications of scoparone as an agrochemical for controlling the strong egg-laying capacity mite pests in agriculture.
研究天然生物活性产物对害虫的作用机制是开发新型有前景的生物农药的重要策略。从茵陈蒿中分离出的滨蒿内酯对朱砂叶螨(一种繁殖力强、威胁作物的螨虫害虫)表现出强大的产卵抑制活性。为探究其潜在机制,测定了连续三代暴露于滨蒿内酯的G0个体的螨类卵黄原蛋白(Vg)含量和Vg基因表达,结果显示出明显的抑制作用。本研究首次探索了滨蒿内酯诱导的螨类害虫卵发育缺陷行为。当通过RNA干扰(RNAi)使TcVg沉默时,滨蒿内酯对螨类的产卵抑制作用与对照相比显著提高了47.43%,这表明滨蒿内酯对朱砂叶螨雌虫的卵发育抑制作用是由低Vg基因表达介导的。此外,滨蒿内酯在体外与Vg蛋白结合,其K值为218.9 μM,这意味着它可能通过直接靶向Vg蛋白来抑制螨类的卵发育。本研究将为滨蒿内酯作为一种农用化学品在农业中控制产卵能力强的螨类害虫的未来应用奠定基础。