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Transcriptome Analysis of the Carmine Spider Mite Tetranychus cinnabarinus (Boisduval 1867) (Acari: Tetranychidae) and Its Response to β-Sitosterol

机译:胭脂红蜘蛛螨Tetranychus cinnabarinus的转录组分析(Boisduval1867年Acari:Tetranychidae)及其对β-谷固醇的响应

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摘要

Tetranychus cinnabarinus (Acari: Tetranychidae) is a worldwide polyphagous agricultural pest that has the title of resistance champion among arthropods. We reported previously the identification of the acaricidal compound β-sitosterol from Mentha piperita and Inula japonica. However, the acaricidal mechanism of β-sitosterol is unclear. Due to the limited genetic research carried out, we de novo assembled the transcriptome of T. cinnabarinus using Illumina sequencing and conducted a differential expression analysis of control and β-sitosterol-treated mites. In total, we obtained >5.4 G high-quality bases for each sample with unprecedented sequencing depth and assembled them into 22,941 unigenes. We identified 617 xenobiotic metabolism-related genes involved in detoxification, binding, and transporting of xenobiotics. A highly expanded xenobiotic metabolic system was found in mites. T. cinnabarinus detoxification genes—including carboxyl/cholinesterase and ABC transporter class C—were upregulated after β-sitosterol treatment. Defense-related proteins, such as Toll-like receptor, legumain, and serine proteases, were also activated. Furthermore, other important genes—such as the chloride channel protein, cytochrome b, carboxypeptidase, peritrophic membrane chitin binding protein, and calphostin—may also play important roles in mites' response to β-sitosterol. Our results demonstrate that high-throughput-omics tool facilitates identification of xenobiotic metabolism-related genes and illustration of the acaricidal mechanisms of β-sitosterol.
机译:Tetranychus cinnabarinus(Acari:Tetranychidae)是一种全球多食性农业害虫,在节肢动物中具有抗药性冠军的称号。我们先前报道了从薄荷脑和日本菊的杀螨化合物β-谷甾醇的鉴定。但是,β-谷甾醇的杀螨机理尚不清楚。由于进行的基因研究有限,因此我们从头开始使用Illumina测序组装了朱砂丁香的转录组,并对对照和β-谷固醇处理的螨进行了差异表达分析。总的来说,我们以前所未有的测序深度为每个样品获得了> 5.4 G的高质量碱基,并将它们组装成22,941个单基因。我们确定了617种与异种生物代谢有关的基因,这些基因与异种生物的解毒,结合和运输有关。在螨中发现了高度扩展的异源生物代谢系统。 β-谷固醇处理后,朱砂毛虫排毒基因(包括羧基/胆碱酯酶和ABC转运蛋白C类)被上调。与防御相关的蛋白质,如Toll样受体,豆蔻蛋白酶和丝氨酸蛋白酶也被激活。此外,其他重要基因,例如氯离子通道蛋白,细胞色素b,羧肽酶,营养层膜几丁质结合蛋白和钙磷蛋白,也可能在螨对β-谷固醇的反应中起重要作用。我们的结果表明,高通量组学工具有助于鉴定异种生物代谢相关基因并阐明β-谷甾醇的杀螨机制。

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