菜蛾
阿维菌素
RNA干扰
谷胱甘肽S-转移酶
生物
阿维菌素
谷胱甘肽转移酶
基因
谷胱甘肽
人口
遗传学
基因表达
抗药性
毒理
植物
生物化学
核糖核酸
幼虫
酶
杀虫剂
农学
人口学
解剖
社会学
作者
Jiyuan Liu,Zhen Tian,Ruichi Li,Shujun Ni,Hong Sun,Fei Yin,Zhenyu Li,Yalin Zhang,Yifan Li
标识
DOI:10.1021/acs.jafc.3c09458
摘要
The overexpression of insect detoxification enzymes is a typical adaptive evolutionary strategy for insects to cope with insecticide pressure. In this study, we identified a glutathione S-transferase (GST) gene, PxGSTs1, that exhibited pronounced expression in the field-resistant population of Plutella xylostella. By using RNAi (RNA interference), the transgenic fly models, and quantitative real-time polymerase chain reaction (RT-qPCR) methods, we confirmed that the augmented expression of PxGSTs1 mediates the resistance of P. xylostella to various types of insecticides, including chlorantraniliprole, novaluron, λ-cyhalothrin, and abamectin. PxGSTs1 was found to bolster insecticide resistance in two ways: direct detoxification and enhancing antioxidative defenses. In addition, our findings demonstrated that pxy-miR-8528a exerts a pivotal influence on forming insecticide resistance in P. xylostella by downregulating PxGSTs1 expression. In summary, we elucidated the multifaceted molecular and biochemical underpinnings of PxGSTs1-driven insecticide resistance in P. xylostella. Our results provide a new perspective for understanding the insecticide resistance mechanism of P. xylostella.
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