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首页> 外文期刊>Journal of pesticide science >Studies on Aphis gossypii cytochrome P450s CYP6CY22 and CYP6CY13 using an in vitro system
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Studies on Aphis gossypii cytochrome P450s CYP6CY22 and CYP6CY13 using an in vitro system

机译:使用体外系统研究APHIS Gossypii细胞色素P450S CYP6CY22和CYP6CY13的研究

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摘要

A field-collected Aphis gossypii clone [Kushima resistant (KR) clone] was resistant to neonicotinoid insecticides (23.8- to 394-fold). RNA-seq and next-generation sequence analyses were conducted to identify nine cytochrome P450 (CYP) genes that were significantly upregulated in the KR clone as compared with those in the insecticide-susceptible clone. A. gossypii P450s were transiently and efficiently expressed in S2 cell to show that CYP6CY22 (c21228) and CYP6CY13 (c21368), which were the most upregulated of the nine P450s in the KR clone, did not degrade sulfoxaflor, a new class of insecticides acting on insect nAChRs, but markedly metabolized all of the neonicotinoids tested. Hence, P450s are likely to underpin neonicotinoid resistance in other aphids as well in the future, and the P450 expression protocol established here will prompt studies on P450-medidated insecticide resistance and structural analyses of relevant metabolites. (C) Pesticide Science Society of Japan.
机译:局部收集的APHIS Gossypii克隆[KUSHIMA抗性(KR)克隆]对新烟碱杀虫剂(23.8至394倍)耐药。 进行RNA-SEQ和下一代序列分析以鉴定含有杀虫剂溶解克隆的九种细胞色素P450(CYP)基因,其在KR克隆中显着上调。 A.Gossypii P450s在S2细胞中瞬时和有效地表达,表明CYP6CY22(C21228)和CYP6CY13(C21368),这是KR克隆中九个P450的最令人上升的,并未降解SulfoxaFlor,这是一种新的杀虫剂作用 在昆虫nachrs上,但显着代谢了所测试的所有新烟碱素。 因此,P450s可能在未来的其他蚜虫中抵抗Neonicotinoid抗性,并且在此建立的P450表达协议将提示研究相关代谢物的P450-介质杀虫剂抗性和结构分析。 (c)日本农药科学学会。

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