Screening and functional validation of the core detoxification genes conferring broad‐spectrum response to insecticides in Spodoptera frugiperda

夜蛾 生物 戒毒(替代医学) 广谱 基因 计算生物学 毒理 遗传学 化学 医学 重组DNA 替代医学 病理 组合化学
作者
Zhihui Lu,Kai Lǚ,Yahong Li,Tianxiang Xiao,Zhonglin Zhou,Yaping Chen,Jianhui Liu,Zhongxiang Sun,Furong Gui
出处
期刊:Pest Management Science [Wiley]
卷期号:80 (7): 3491-3503 被引量:3
标识
DOI:10.1002/ps.8054
摘要

Abstract Background Fall armyworm, Spodoptera frugiperda , a formidable agricultural pest, has developed resistance to various synthetic insecticides. However, how S. frugiperda utilizes its limited energy and resources to deal with various insecticides remains largely unexplored. Results We utilized transcriptome sequencing to decipher the broad‐spectrum adaptation mechanism of S. frugiperda to eight insecticides with distinct modes‐of‐action. Analysis of the Venn diagram revealed that 1014 upregulated genes and 778 downregulated genes were present in S. frugiperda treated with at least five different insecticides, compared to the control group. Exposure to various insecticides led to the significant upregulation of eight cytochrome P450 monooxygenases (P450s), four UDP glucosyltransferases (UGTs), two glutathione‐ S ‐transferases (GSTs) and two ATP‐binding cassette transporters (ABCs). Among them, the sfCYP340AD3 and sfCYP4G74 genes were demonstrated to respond to stress from six different insecticides in S. frugiperda , as evidenced by RNA interference and toxicity bioassays. Furthermore, homology modeling and molecular docking analyses showed that sfCYP340AD3 and sfCYP4G74 possess strong binding affinities to a variety of insecticides. Conclusion Collectively, these findings showed that S. frugiperda utilizes a battery of core detoxification genes to cope with the exposure of synthetic insecticides. This study also sheds light on the identification of efficient insecticidal targets gene and the development of resistance management strategies in S. frugiperda , thereby facilitating the sustainable control of this serious pest. © 2024 Society of Chemical Industry.
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