首页> 外文期刊>Pesticide Biochemistry and Physiology >Cytochrome P450 monooxygenase-mediated permethrin resistance confers limited and larval specific cross-resistance in the southern house mosquito, Culex pipiens quinquefasciatus
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Cytochrome P450 monooxygenase-mediated permethrin resistance confers limited and larval specific cross-resistance in the southern house mosquito, Culex pipiens quinquefasciatus

机译:细胞色素P450单加氧酶介导的苄氯菊酯抗性在南方家蝇库蚊(Culex pipiens quinquefasciatus)中赋予有限的和幼虫特定的交叉抗性

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摘要

The cytochrome P450-dependent monooxygenases (P450s) are an important enzymatic system that metabolizes xenobiotics (e.g., pesticides), as well as endogenous compounds (e.g., hormones). P450-mediated metabolism can result in detoxification of insecticides such as pyrethroids, or can be involved in the bioactivation and detoxification of insecticides such as organophosphates. We isolated (from the JPAL strain) a permethrin resistant strain (ISOP450) of Culex pipiens quinquefasciatus, having 1300-fold permethrin resistance using standard backcrossing procedures. ISOP450 is highly related to the susceptible lab strain (SLAB) and the high resistance to permethrin is due solely to P450-mediated detoxification. This is the first time in mosquitoes that P450 monooxygenase involvement in pyrethroid resistance has been isolated and studied without the confounding effects of kdr. Resistance in ISOP450 is incompletely dominant (D = +0.3), autosomally linked, and monofactorally inherited. It is expressed in the larvae, but not in adults. Cross-resistance to pyrethroids lacking a 3-phenoxybenzyl moiety (tetramethrin, fenfluthrin, bioallethrin, and bifenthrin) ranged from 1.5- to 12-fold. ISOP450 had only limited (6.6- and 11-fold) cross-resistance to 3-phenoxybenzyl pyrethroids with an l-cyano group (cypermethrin and deltamethrin, respectively). Examination of cross-resistance patterns to organophosphate insecticides in ISOP450 showed an 8-fold resistance to fenitrothion, while low, but significant, levels of negative cross-resistance were found for malathion (RR = 0.84), temephos (RR = 0.73), and methyl-parathion (RR = 0.55). The importance and uniqueness of this P450 mechanism in insecticide resistance is discussed.
机译:细胞色素P450依赖的单加氧酶(P450)是重要的酶系统,可代谢异种生物(例如农药)以及内源性化合物(例如激素)。 P450介导的代谢可导致杀虫剂(如拟除虫菊酯)的解毒,或可参与杀虫剂(如有机磷酸酯)的生物活化和解毒。我们(从JPAL菌株中)分离了一个库蚊(Culex pipiens quinquefasciatus)的抗氯菊酯的菌株(ISOP450),使用标准的回交程序具有1300倍的氯菊酯抗性。 ISOP450与易感实验室菌株(SLAB)高度相关,而对氯菊酯的高耐药性完全归因于P450介导的排毒。这是蚊子中首次分离并研究了P450单加氧酶与拟除虫菊酯抗药性的关系,而没有kdr的混淆作用。 ISOP450中的抗性不完全占主导地位(D = +0.3),是自体连锁的,是单因素遗传的。它在幼虫中表达,但在成年人中不表达。对缺少3-苯氧基苄基部分(虫菊酯,芬氟菊酯,生物Allethethrin和联苯菊酯)的拟除虫菊酯的交叉耐药性范围为1.5到12倍。 ISOP450仅对具有l-氰基的3-苯氧基苄基拟除虫菊酯(分别为氯氰菊酯和溴氰菊酯)具有有限的(6.6倍和11倍)交叉抗性。在ISOP450中对有机磷酸酯杀虫剂的交叉耐药性模式检查显示对杀nitro硫磷有8倍的耐药性,而马拉硫磷(RR = 0.84),temephos(RR = 0.73)和低,但显着的负交叉耐药性水平甲基对硫磷(RR = 0.55)。讨论了这种P450机制在抗药性方面的重要性和独特性。

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