首页> 外文期刊>International journal of biological sciences >Permethrin induction of multiple cytochrome P450 genes in insecticide resistant mosquitoes, Culex quinquefasciatus
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Permethrin induction of multiple cytochrome P450 genes in insecticide resistant mosquitoes, Culex quinquefasciatus

机译:苄氯菊酯诱导抗虫蚊中多种细胞色素P450基因的表达

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The expression of some insect P450 genes can be induced by both exogenous and endogenous compounds and there is evidence to suggest that multiple constitutively overexpressed P450 genes are co-responsible for the development of resistance to permethrin in resistant mosquitoes. This study characterized the permethrin induction profiles of P450 genes known to be constitutively overexpressed in resistant mosquitoes, Culex quinquefasciatus. The gene expression in 7 of the 19 P450 genes CYP325K3v1, CYP4D42v2, CYP9J45, (CYP) CPIJ000926, CYP325G4, CYP4C38, CYP4H40 in the HAmCqG8 strain, increased more than 2-fold after exposure to permethrin at an LC50 concentration (10 ppm) compared to their acetone treated counterpart; no significant differences in the expression of these P450 genes in susceptible S-Lab mosquitoes were observed after permethrin treatment. Eleven of the fourteen P450 genes overexpressed in the MAmCqG6 strain, CYP9M10, CYP6Z12, CYP9J33, CYP9J43, CYP9J34, CYP306A1, CYP6Z15, CYP9J45, CYPPAL1, CYP4C52v1, CYP9J39, were also induced more than doubled after exposure to an LC50 (0.7 ppm) dose of permethrin. No significant induction in P450 gene expression was observed in the susceptible S-Lab mosquitoes after permethrin treatment except for CYP6Z15 and CYP9J39, suggesting that permethrin induction of these two P450 genes are common to both susceptible and resistant mosquitoes while the induction of the others are specific to insecticide resistant mosquitoes. These results demonstrate that multiple P450 genes are co-up-regulated in insecticide resistant mosquitoes through both constitutive overexpression and induction mechanisms, providing additional support for their involvement in the detoxification of insecticides and the development of insecticide resistance.
机译:某些昆虫P450基因的表达可以由外源性化合物和内源性化合物共同诱导,并且有证据表明,多个组成型过表达的P450基因与抗性蚊子对苄氯菊酯的抗性发展共同负责。这项研究的特点是在抗性蚊子库克斯库蚊中组成性过表达的P450基因的苄氯菊酯诱导概况。在19%的P450基因CYP325K3v1,CYP4D42v2,CYP9J45,(CYP)CPIJ000926,CYP325G4,CYP4C38,CYP4H40中的7个基因表达在LC50浓度(10 ppm)下暴露于氯菊酯后增加了2倍以上。给他们丙酮处理过的对应物;氯菊酯处理后,在易感S-Lab蚊子中未观察到这些P450基因表达的显着差异。在MAmCqG6菌株中过表达的14个P450基因中的11个,CYP9M10,CYP6Z12,CYP9J33,CYP9J43,CYP9J34,CYP306A1,CYP6Z15,CYP9J45,CYPPAL1,CYP4C52J39在超过d剂量后,CYP4C9J50的CYP40.7倍,CYP4C9v氯菊酯。氯菊酯处理后,除CYP6Z15和CYP9J39外,在易感S-Lab蚊子中未观察到P450基因表达的显着诱导,表明这两种P450基因的苄氯菊酯诱导对易感和抗性蚊子均相同,而对其他蚊子的诱导则是特异性的抗杀虫剂的蚊子。这些结果表明,多个P450基因通过组成型过表达和诱导机制在抗药性蚊子中共同上调,为它们参与杀虫剂的解毒和抗药性的发展提供了额外的支持。

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