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The Transcriptome Profile of the Mosquito Culex quinquefasciatus following Permethrin Selection

机译:蚊子库蚊的转录概况倦以下选择菊酯

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摘要

To gain valuable insights into the gene interaction and the complex regulation system involved in the development of insecticide resistance in mosquitoes Culex quinquefasciatus, we conducted a whole transcriptome analysis of Culex mosquitoes following permethrin selection. Gene expression profiles for the lower resistant parental mosquito strain HAmCqG0 and their permethrin-selected high resistant offspring HAmCqG8 were compared and a total of 367 and 3982 genes were found to be up- and down-regulated, respectively, in HAmCqG8, indicating that multiple genes are involved in response to permethrin selection. However, a similar overall cumulative gene expression abundance was identified between up- and down-regulated genes in HAmCqG8 mosquitoes following permethrin selection, suggesting a homeostatic response to insecticides through a balancing of the up- and down-regulation of the genes. While structural and/or cuticular structural functions were the only two enriched GO terms for down-regulated genes, the enriched GO terms obtained for the up-regulated genes occurred primarily among the catalytic and metabolic functions where they represented three functional categories: electron carrier activity, binding, and catalytic activity. Interestingly, the functional GO terms in these three functional categories were overwhelmingly overrepresented in P450s and proteases/serine proteases. The important role played by P450s in the development of insecticide resistance has been extensively studied but the function of proteases/serine proteases in resistance is less well understood. Hence, the characterization of the functions of these proteins, including their digestive, catalytic and proteinase activities; regulation of signaling transduction and protein trafficking, immunity and storage; and their precise function in the development of insecticide resistance in mosquitoes will provide new insights into how genes are interconnected and regulated in resistance.
机译:为了获得有价值的见解,以研究蚊子库蚊(Culex quinquefasciatus)的杀虫剂抗性发展过程中涉及的基因相互作用和复杂的调控系统,我们在选择氯菊酯后,对库蚊进行了整个转录组分析。比较了低抗性亲代蚊HAmCq G0 及其氯菊酯选择的高抗性后代HAmCq G8 的基因表达谱,发现共有367和3982个基因分别在HAmCq G8 中上调和下调,表明多个基因参与了对苄氯菊酯选择的反应。然而,在苄氯菊酯选择后,在HAmCq G8 蚊子的上调和下调基因之间发现了相似的总体累积基因表达丰度,这表明通过平衡上-下调对杀虫剂的体内稳态反应。基因的调控。虽然结构和/或表皮结构功能是下调基因的仅有的两个丰富的GO术语,但上调基因获得的丰富的GO术语主要发生在催化和代谢功能中,它们代表三个功能类别:电子载体活性,结合和催化活性。有趣的是,在这三个功能类别中的功能性GO术语在P450和蛋白酶/丝氨酸蛋白酶中占绝对优势。已经广泛地研究了P450在杀虫剂抗性的发展中所起的重要作用,但是对蛋白酶/丝氨酸蛋白酶在抗性中的功能的了解还很少。因此,这些蛋白质功能的表征包括其消化,催化和蛋白酶活性;调节信号转导和蛋白质运输,免疫和储存;以及它们在蚊子对杀虫剂产生抗药性中的精确功能,将为基因如何在抗药性中相互联系和调控提供新的见解。

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