首页> 外文期刊>Journal of Economic Entomology >Proteomic Analysis Reveals Resistance Mechanism Against Chlorpyrifos in Frankliniella occidentalis (Thysanoptera: Thripidae)
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Proteomic Analysis Reveals Resistance Mechanism Against Chlorpyrifos in Frankliniella occidentalis (Thysanoptera: Thripidae)

机译:蛋白质组学分析揭示了西花蓟马对毒死rif的抗性机制。

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The western flower thrips is an economically important worldwide pest of many crops, and chlorpyrifos has been used to control western flower thrips for many years. To develop a better resistance-management strategy, a chlorpyrifos-resistant strain of western flower thrips (WFT-chl) was selected in the laboratory. More than 39-fold resistance was achieved after selected by chlorpyrifos for 19 generations in comparison with the susceptible strain (WFT-S). Proteome of western flower thrips (WFT-S and WFT-chl) was investigated using a quantitative proteomics approach with isobaric tag for relative and absolute quantification technique and liquid chromatography-tandem mass spectrometry technologies. According to the functional analysis, 773 proteins identified were grouped into 10 categories of molecular functions and 706 proteins were presented in 213 kinds of pathways. Comparing the proteome of WFT-chl with that of WFT-S, a total of eight proteins were found up-regulated and three down-regulated. The results from functional annotation and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses indicated that the differentially expressed protein functions in binding, catalyzing, transporting, and enzyme regulation were most important in resistance development. A list of proteins functioning in biological processes of metabolism, biological regulation, and response to stimulus was found in WFT-chl, suggesting that they are possibly the major components of the resistance mechanism to chlorpyrifos in western flower thrips. Notably, several novel potential resistance-related proteins were identified such as ribosomal protein, Vg (vitellogenin), and MACT (muscle actin), which can be used to improve our understanding of the resistance mechanisms in western flower thrips. This study provided the first comprehensive view of the complicated resistance mechanism employed by WFT-S and WFT-chl through the isobaric tag for relative and absolute quantification coupled with liquid chromatography-tandem mass spectrometry technologies.
机译:西花蓟马是世界上许多作物的重要经济害虫,毒死rif多年来一直被用于控制西花蓟马。为了制定更好的抗药性管理策略,在实验室中选择了一种抗毒死western的西花蓟马菌株(WFT-chl)。与易感菌株(WFT-S)相比,毒死selected筛选19代后获得的抗性超过39倍。西方蛋白质花蓟马的蛋白质组学(WFT-S和WFT-chl)使用等压标记的定量蛋白质组学方法进行了相对和绝对定量技术以及液相色谱-串联质谱技术的研究。根据功能分析,鉴定出的773种蛋白质分为十类分子功能,并且在213种途径中共有706种蛋白质。比较WFT-ch1蛋白质组和WFT-S蛋白质组,共发现8种蛋白质被上调,而3种蛋白质被下调。功能注释和《京都议定书》的基因和基因组途径富集分析结果表明,差异表达的蛋白质在结合,催化,转运和酶调节中的功能在耐药性发展中最为重要。在WFT-chl中发现了一系列在新陈代谢,生物调节和对刺激反应的生物过程中起作用的蛋白质,这表明它们可能是西方花蓟马中毒死rif抗性机制的主要成分。值得注意的是,鉴定出了几种新型的潜在抗性相关蛋白,如核糖体蛋白,Vg(玻璃纤维蛋白原)和MACT(肌动蛋白),这些蛋白可用于增进我们对西方花蓟马中抗性机制的了解。这项研究提供了WFT-S和WFT-chl通过等压标记用于相对和绝对定量结合液相色谱-串联质谱技术的复杂抗药性机理的第一个综合视图。

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