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一个被掩蔽的基因与叉头蛋白鳄鱼中的手在手套中密切合作,调节棉蚜 Glover 中的主要解毒 CYP6DA1。

A masked gene concealed hand in glove in the forkhead protein crocodile regulates the predominant detoxification CYP6DA1 in Aphis gossypii Glover.

机构信息

College of Plant Science, Jilin University, Changchun 130062, PR China.

College of Plant Science, Jilin University, Changchun 130062, PR China.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 3):126824. doi: 10.1016/j.ijbiomac.2023.126824. Epub 2023 Sep 9.

DOI:10.1016/j.ijbiomac.2023.126824
PMID:37690634
Abstract

Cytochrome P450-mediated metabolism is an important mechanism of insecticide resistance, most studies show upregulated transcript levels of P450s in resistant insect strains. Our previous studies illustrated that some upregulated P450s were associated with cyantraniliprole resistance, and it is more comprehensive to use the tissue specificity of transcriptomes to compare resistant (CyR) and susceptible (SS) strains. In this study, the expression profiles of P450s in a CyR strain compared with a SS strain in remaining carcass or midgut were investigated by RNA sequencing, and candidate genes were selected for functional study. Drosophila melanogaster bioassays suggested that ectopic overexpression of CYP4CK1, CYP6CY5, CYP6CY9, CYP6CY19, CYP6CZ1 and CYP6DA1 in flies was sufficient to confer cyantraniliprole resistance, among which CYP6DA1 was the predominant contributor to resistance (12.24-fold). RNAi suppression of CYP4CK1, CYP6CY5, CYP6CY9 and CYP6DA1 significantly increased CyR aphid sensitivity to cyantraniliprole. The CYP6DA1 promoter had two predicted binding sites for crocodile (CROC), an intron-free ORF with bidirectional transcription yielding CROC (+) and CROC (-). Y1H, RNAi and EMSA found that CROC (-) was a transcription factor directly regulating CYP6DA1 expression. In conclusion, P450 genes contribute to cyantraniliprole resistance, and the transcription factor CROC (-) regulates the expression of CYP6DA1 in A. gossypii.

摘要

细胞色素 P450 介导的代谢是杀虫剂抗性的重要机制,大多数研究表明抗性昆虫品系中 P450 的转录水平上调。我们之前的研究表明,一些上调的 P450s 与氰氟虫腙抗性有关,使用转录组的组织特异性更全面地比较抗性(CyR)和敏感(SS)品系。在这项研究中,通过 RNA 测序研究了 CyR 品系与 SS 品系在剩余尸体或中肠中的 P450s 表达谱,并选择候选基因进行功能研究。黑腹果蝇生物测定表明,CYP4CK1、CYP6CY5、CYP6CY9、CYP6CY19、CYP6CZ1 和 CYP6DA1 在果蝇中的异位过表达足以赋予氰氟虫腙抗性,其中 CYP6DA1 是抗性的主要贡献者(12.24 倍)。CYP4CK1、CYP6CY5、CYP6CY9 和 CYP6DA1 的 RNAi 抑制显著增加了 CyR 棉蚜对氰氟虫腙的敏感性。CYP6DA1 启动子有两个预测的鳄鱼(CROC)结合位点,一个无内含子的 ORF 具有双向转录,产生 CROC(+)和 CROC(-)。Y1H、RNAi 和 EMSA 发现 CROC(-)是直接调节 CYP6DA1 表达的转录因子。总之,P450 基因有助于氰氟虫腙抗性,转录因子 CROC(-)调节 A. gossypii 中 CYP6DA1 的表达。

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