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首页> 外文期刊>PLoS Genetics >High-resolution genetic mapping reveals cis-regulatory and copy number variation in loci associated with cytochrome P450-mediated detoxification in a generalist arthropod pest
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High-resolution genetic mapping reveals cis-regulatory and copy number variation in loci associated with cytochrome P450-mediated detoxification in a generalist arthropod pest

机译:高分辨率遗传映射揭示了与细胞色素P450介导的排毒相关的基因座的顺式调节和拷贝数变异在通用节肢动物害虫中

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摘要

Chemical control strategies are driving the evolution of pesticide resistance in pest populations. Understanding the genetic mechanisms of these evolutionary processes is of crucial importance to develop sustainable resistance management strategies. The acaricide pyflubumide is one of the most recently developed mitochondrial complex II inhibitors with a new mode of action that specifically targets spider mite pests. In this study, we characterize the molecular basis of pyflubumide resistance in a highly resistant population of the spider mite Tetranychus urticae . Classical genetic crosses indicated that pyflubumide resistance was incompletely recessive and controlled by more than one gene. To identify resistance loci, we crossed the resistant population to a highly susceptible T . urticae inbred strain and propagated resulting populations with and without pyflubumide exposure for multiple generations in an experimental evolution set-up. High-resolution genetic mapping by a bulked segregant analysis approach led to the identification of three quantitative trait loci (QTL) linked to pyflubumide resistance. Two QTLs were found on the first chromosome and centered on the cytochrome P450 CYP392A16 and a cluster of CYP392E6-8 genes. Comparative transcriptomics revealed a consistent overexpression of CYP392A16 and CYP392E8 in the experimental populations that were selected for pyflubumide resistance. We further corroborated the involvement of CYP392A16 in resistance by in vitro functional expression and metabolism studies. Collectively, these experiments uncovered that CYP392A16 N-demethylates the toxic carboxamide form of pyflubumide to a non-toxic compound. A third QTL coincided with cytochrome P450 reductase ( CPR ), a vital component of cytochrome P450 metabolism. We show here that the resistant population harbors three gene copies of CPR and that this copy number variation is associated with higher mRNA abundance. Together, we provide evidence for detoxification of pyflubumide by cytochrome P450s that is likely synergized by gene amplification of CPR .
机译:化学控制策略正在推动害虫种群的农药抗性的演变。了解这些进化过程的遗传机制对于制定可持续的抵抗管理策略至关重要。杀螨剂pyflubumide是最近开发的线粒体复合物II抑制剂之一,具有特异性靶向蜘蛛螨虫的新作用模式。在这项研究中,我们在蜘蛛螨Tetrancchus荨麻疹的高度抗性群体中表征了富氟沸石抗性的分子基础。典型遗传交叉表明,富氟沸石抗性不完全隐性并受到多于一种基因的控制。为了识别抵抗基因座,我们将抗性人口交叉到高度易感的T.在实验进化设置中,荨麻疹近铬菌株和繁殖的群体,没有血红制的多种几代曝光。通过膨胀的偏析分析方法的高分辨率遗传映射导致鉴定与蛭鲁的三种定量性状的基因座(QTL)鉴定。在第一染色体上发现两个QTL,并以细胞色素P450 CYP392A16和CYP392E6-8基因簇为中心。比较转录组织揭示了CYP392A16和CYP392E8的一致过度表达,其在选择用于吡酰鲁磺酰化抗性的实验群体中。我们进一步证实了CYP392A16通过体外功能表达和代谢研究的抗性的累积。总的来说,这些实验发现CYP392A16将CYP392A16 N-去甲基化物质的羧酰胺形式的吡喃胺形式为无毒化合物。第三QTL与细胞色素P450还原酶(CPR)一致,是细胞色素P450代谢的重要组成部分。我们在这里展示了抗性群体患者的三种基因拷贝,并且该拷贝数变异与更高的mRNA丰富相关。我们共同提供了通过CPR的基因扩增的细胞色素P450来提供PYFLUBUMIDE解毒的证据。

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