College of Agriculture, Yangtze University, Jingzhou 434000, China; Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China; Key Laboratory of Environment Friendly Management on Fruit and Vegetable Pests in North China (Co-Construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Beijing 100097, China.
Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China; Key Laboratory of Environment Friendly Management on Fruit and Vegetable Pests in North China (Co-Construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Beijing 100097, China.
Pestic Biochem Physiol. 2024 May;201:105888. doi: 10.1016/j.pestbp.2024.105888. Epub 2024 Mar 26.
Bemisia tabaci is a formidable insect pest worldwide, and it exhibits significant resistance to various insecticides. Dimpropyridaz is a novel pyridazine pyrazolecarboxamide insecticide used against sucking insect pests, but there is little information regarding its metabolic detoxification in arthropods or cross-resistance with other insecticides. In this study, we found that dimpropyridaz shows no cross-resistance with three other popular insecticides, namely abamectin, cyantraniliprole, and flupyradifurone. After treatment of B. tabaci adults with a high dose of dimpropyridaz, higher cytochrome P450 monooxygenase (P450) activity was detected in the survivors, and the expression of the P450 gene CYP6DW4 was highly induced. Cloning and characterization of the full-length amino acid sequence of CYP6DW4 indicated that it contains conserved domains typical of P450 genes, phylogenetic analysis revealed that it was closely related to a B. tabaci protein, CYP6DW3, known to be involved in detoxification of imidacloprid. Silencing of CYP6DW4 by feeding insects with dsRNA significantly increased the susceptibility of B. tabaci to dimpropyridaz. In addition, homology modeling and molecular docking analyses showed the stable binding of dimpropyridaz to CYP6DW4, with binding free energy of -6.65 kcal/mol. Our findings indicate that CYP6DW4 plays an important role in detoxification of dimpropyridaz and possibly promotes development of resistance in B. tabaci.
烟粉虱是一种全球性的严重害虫,对各种杀虫剂表现出显著的抗性。双丙环虫酯是一种新型哒嗪吡唑甲酰胺类杀虫剂,用于防治刺吸式害虫,但关于其在节肢动物中的代谢解毒作用或与其他杀虫剂的交互抗性的信息较少。在本研究中,我们发现双丙环虫酯与另外三种常用杀虫剂阿维菌素、氯氰虫酰胺和氟啶虫酰胺均无交互抗性。用高剂量双丙环虫酯处理烟粉虱成虫后,存活者的细胞色素 P450 单加氧酶(P450)活性升高,且 P450 基因 CYP6DW4 的表达被高度诱导。CYP6DW4 全长氨基酸序列的克隆和特性表明,它包含 P450 基因的保守结构域,系统进化分析表明它与烟粉虱中一种已知参与啶虫脒解毒的 CYP6DW3 蛋白密切相关。用 dsRNA 喂养昆虫沉默 CYP6DW4 显著增加了烟粉虱对双丙环虫酯的敏感性。此外,同源建模和分子对接分析表明双丙环虫酯与 CYP6DW4 稳定结合,结合自由能为-6.65 kcal/mol。我们的研究结果表明,CYP6DW4 在双丙环虫酯的解毒中起重要作用,并可能促进烟粉虱对其产生抗性。