Key Laboratory of Plant Protection Resources and Pest Management of Ministry of Education, Entomological Museum, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China.
Key Laboratory of Plant Protection Resources and Pest Management of Ministry of Education, Entomological Museum, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China.
Pestic Biochem Physiol. 2024 Aug;203:106013. doi: 10.1016/j.pestbp.2024.106013. Epub 2024 Jul 4.
As an important class of detoxifying enzymes, glutathione S-transferases (GSTs) are pivotal in decreasing insecticide toxicity to insects. Periplaneta americana GSTd1 (PaGSTd1) has been verified as a key enzyme in detoxifying pyrethroid insecticides, but its detoxification capability against a broader spectrum of insecticides has never been investigated. It is revealed that PaGSTd1 expression showed a rapid and significant increase upon exposure to various insecticides (organophosphates, neonicotinoids, and fipronil). Subsequent in vitro metabolic assays indicated that organophosphates, particularly chlorpyrifos-methyl, can be effectively metabolized by PaGSTd1. Further knockdown of PaGSTd1 via RNA interference significantly heightened the susceptibility of P. americana to chlorpyrifos-methyl, underscoring the enzyme's key role in detoxifying chlorpyrifos-methyl. Additionally, this study confirmed that PaGSTd1 cannot mitigate insecticide toxicity through countering oxidative stress. Collectively, these findings elucidate the involvement of PaGSTd1 in the detoxification processes for organophosphates, offering a comprehensive insight into the metabolic mechanisms mediated by GSTs in P. americana. This research provides a foundational understanding for managing GSTs-mediated metabolic resistance in this species, which is crucial for effective pest control strategies.
谷胱甘肽 S-转移酶(GSTs)作为解毒酶的重要一类,在降低昆虫对杀虫剂的毒性方面起着关键作用。美洲大蠊 GSTd1(PaGSTd1)已被证实是解毒拟除虫菊酯杀虫剂的关键酶,但它对更广泛的杀虫剂的解毒能力从未被研究过。研究表明,PaGSTd1 的表达在暴露于各种杀虫剂(有机磷、新烟碱和氟虫腈)后会迅速显著增加。随后的体外代谢测定表明,有机磷,特别是甲基毒死蜱,可以被 PaGSTd1 有效代谢。通过 RNA 干扰进一步敲低 PaGSTd1 会显著增加美洲大蠊对甲基毒死蜱的敏感性,强调了该酶在解毒甲基毒死蜱中的关键作用。此外,本研究证实 PaGSTd1 不能通过对抗氧化应激来减轻杀虫剂的毒性。总之,这些发现阐明了 PaGSTd1 在有机磷解毒过程中的参与,为 GSTs 在美洲大蠊中的代谢机制提供了全面的见解。这项研究为管理 GSTs 介导的代谢抗性提供了基础理解,这对于有效的害虫控制策略至关重要。