二化螟
草螟科
生物
藏红花
阿维菌素
转基因作物
多杀菌素
生殖器鳞翅目
毒理
遗传学
植物
基因
转基因
杀虫剂
农学
作者
Shuai Wang,Jing-Mei Huang,Fang‐Rui Guo,Chong Liu,Yuan Xie,Song‐Tao Qiao,Yunxiao Chen,Shun‐Fan Wu,Chris Bass,Cong‐Fen Gao
标识
DOI:10.1021/acs.jafc.4c09254
摘要
Understanding the role of flavin-containing monooxygenases (FMOs) in the genetic mechanisms of insecticide resistance is essential for developing effective management strategies against the rice stem borer, Chilo suppressalis. In this study, we identified five FMO genes in C. suppressalis, examined their expression patterns, and revealed overexpression of FMO3B and FMO3C in field populations resistant to multiple insecticides, including chlorantraniliprole and spinetoram. Functional characterization using transgenic Drosophila indicated that FMO3B and FMO3C do not confer resistance to abamectin or methoxyfenozide but do mediate resistance to chlorantraniliprole and spinetoram. Knockdown of FMO3B and FMO3C increased sensitivity to these insecticides in C. suppressalis. Molecular docking studies indicated direct binding of chlorantraniliprole and spinetoram to these FMOs, underscoring their role in metabolic resistance. These findings indicate that FMOs are key enzymes in the metabolic resistance of C. suppressalis to chlorantraniliprole and spinetoram, enhancing our understanding of insecticide resistance and aiding the development of management strategies.
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