首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Identification and Functional Analysis of a Novel Cytochrome P450 Gene CYP9A105 Associated with Pyrethroid Detoxification in Spodoptera exigua Hübner
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Identification and Functional Analysis of a Novel Cytochrome P450 Gene CYP9A105 Associated with Pyrethroid Detoxification in Spodoptera exigua Hübner

机译:贪夜蛾中拟除虫菊酯类解毒相关细胞色素P450基因CYP9A105的鉴定与功能分析

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摘要

In insects, cytochrome P450 monooxygenases (P450s or CYPs) are known to be involved in the detoxification and metabolism of insecticides, leading to increased resistance in insect populations. Spodoptera exigua is a serious polyphagous insect pest worldwide and has developed resistance to various insecticides. In this study, a novel CYP3 clan P450 gene CYP9A105 was identified and characterized from S. exigua. The cDNAs of CYP9A105 encoded 530 amino acid proteins, respectively. Quantitative real-time PCR analyses showed that CYP9A105 was expressed at all developmental stages, with maximal expression observed in fifth instar stage larvae, and in dissected fifth instar larvae the highest transcript levels were found in midguts and fat bodies. The expression of CYP9A105 in midguts was upregulated by treatments with the insecticides α-cypermethrin, deltamethrin and fenvalerate at both LC15 concentrations (0.10, 0.20 and 5.0 mg/L, respectively) and LC50 concentrations (0.25, 0.40 and 10.00 mg/L, respectively). RNA interference (RNAi) mediated silencing of CYP9A105 led to increased mortalities of insecticide-treated 4th instar S. exigua larvae. Our results suggest that CYP9A105 might play an important role in α-cypermethrin, deltamethrin and fenvalerate detoxification in S. exigua.
机译:在昆虫中,已知细胞色素P450单加氧酶(P450或CYP)参与杀虫剂的解毒和代谢,从而导致昆虫种群的抗药性增加。斜纹夜蛾是世界范围内的一种严重的多食性害虫,对各种杀虫剂具有抗性。在这项研究中,新的CYP3氏族P450基因CYP9A105被鉴定并从S. exigua表征。 CYP9A105的cDNA分别编码530个氨基酸。实时荧光定量PCR分析表明,CYP9A105在所有发育阶段均表达,在五龄幼虫中表达最大,而在解剖的五龄幼虫中肠和脂肪体中的转录水平最高。通过在LC15浓度(分别为0.10、0.20和5.0 mg / L)和LC50浓度(分别为0.25、0.40和10.00 mg / L)下使用杀虫剂α-氯氰菊酯,溴氰菊酯和氰戊菊酯处理,中肠中CYP9A105的表达上调。 )。 CYP9A105的RNA干扰(RNAi)介导的沉默导致杀虫剂处理的4龄S. exigua幼虫的死亡率增加。我们的研究结果表明CYP9A105可能在S. exigua的α-氯氰菊酯,溴氰菊酯和灭戊醛解毒中起重要作用。

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