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关键抗性 P450s 的底物混杂性赋予了噻虫嗪抗性,同时增加了疟疾传播媒介对氯虫苯甲酰胺的药效。

Substrate promiscuity of key resistance P450s confers clothianidin resistance while increasing chlorfenapyr potency in malaria vectors.

机构信息

Centre for Research in Infectious Diseases (CRID), Medical Entomology Department, P.O. Box 13501, Yaoundé, Cameroon.

Centre for Research in Infectious Diseases (CRID), Medical Entomology Department, P.O. Box 13501, Yaoundé, Cameroon; Department of Biochemistry, Bayero University, PMB 3011, Kano, Nigeria; Department of Vector Biology, Liverpool School of Tropical Medicine, Pembroke Place, Liverpool L35QA, UK.

出版信息

Cell Rep. 2024 Aug 27;43(8):114566. doi: 10.1016/j.celrep.2024.114566. Epub 2024 Jul 31.

Abstract

Novel insecticides were recently introduced to counter pyrethroid resistance threats in African malaria vectors. To prolong their effectiveness, potential cross-resistance from promiscuous pyrethroid metabolic resistance mechanisms must be elucidated. Here, we demonstrate that the duplicated P450s CYP6P9a/-b, proficient pyrethroid metabolizers, reduce neonicotinoid efficacy in Anopheles funestus while enhancing the potency of chlorfenapyr. Transgenic expression of CYP6P9a/-b in Drosophila confirmed that flies expressing both genes were significantly more resistant to neonicotinoids than controls, whereas the contrasting pattern was observed for chlorfenapyr. This result was also confirmed by RNAi knockdown experiments. In vitro expression of recombinant CYP6P9a and metabolism assays established that it significantly depletes both clothianidin and chlorfenapyr, with metabolism of chlorfenapyr producing the insecticidally active intermediate metabolite tralopyril. This study highlights the risk of cross-resistance between pyrethroid and neonicotinoid and reveals that chlorfenapyr-based control interventions such as Interceptor G2 could remain efficient against some P450-based resistant mosquitoes.

摘要

最近引入了新型杀虫剂来应对非洲疟疾传播媒介对拟除虫菊酯的抗药性威胁。为了延长其效果,必须阐明潜在的来自于混用的拟除虫菊酯代谢抗性机制的交叉抗性。在这里,我们证明了重复的 P450s CYP6P9a/-b,即有效的拟除虫菊酯代谢物,在致倦库蚊中降低了新烟碱类杀虫剂的功效,同时增强了氯虫酰胺的效力。CYP6P9a/-b 在果蝇中的转基因表达证实,与对照相比,表达这两个基因的果蝇对新烟碱类杀虫剂的抗性显著增强,而氯虫酰胺则呈现相反的模式。RNAi 敲低实验也证实了这一结果。体外表达重组 CYP6P9a 和代谢测定建立了它显著耗尽了噻虫啉和氯虫酰胺,氯虫酰胺的代谢产生了杀虫活性的中间代谢物三氟甲吡醚。这项研究强调了拟除虫菊酯和新烟碱类杀虫剂之间发生交叉抗性的风险,并揭示了氯虫酰胺为基础的防控干预措施,如 Interceptor G2 仍能有效地针对一些基于 P450 的抗性蚊子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/917d/11372441/11bd30dd1119/fx1.jpg

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