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Transcriptome Sequencing of the Striped Cucumber Beetle, Acalymma vittatum (F.), Reveals Numerous Sex-Specific Transcripts and Xenobiotic Detoxification Genes

机译:条纹黄瓜甲虫的转录组测序,Acalymma Vittatum(F.),揭示了许多性别特异性转录物和异种症解毒基因

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Acalymma vittatum (F.), the striped cucumber beetle, is an important pest of cucurbit crops in the contintental United States, damaging plants through both direct feeding and vectoring of a bacterial wilt pathogen. Besides providing basic biological knowledge, biosequence data for A. vittatum would be useful towards the development of molecular biopesticides to complement existing population control methods. However, no such datasets currently exist. In this study, three biological replicates apiece of male and female adult insects were sequenced and assembled into a set of 630,139 transcripts (of which 232,899 exhibited hits to one or more sequences in NCBI NR). Quantitative analyses identified 2898 genes differentially expressed across the male–female divide, and qualitative analyses characterized the insect’s resistome, comprising the glutathione S-transferase, carboxylesterase, and cytochrome P450 monooxygenase families of xenobiotic detoxification genes. In summary, these data provide useful insights into genes associated with sex differentiation and this beetle’s innate genetic capacity to develop resistance to synthetic pesticides; furthermore, these genes may serve as useful targets for potential use in molecular-based biocontrol technologies.
机译:条纹黄瓜甲虫(F.)acalymma Vittatum(F.)是美国春季葫芦作物的重要害虫,通过直接喂养和细菌枯萎病原体的直接喂养和载体损坏植物。除了提供基本的生物学知识外,A. Vittatum的生物酶数据对于分子生物特性的开发是有用的,以补充现有的人口控制方法。但是,目前没有这样的数据集。在这项研究中,将雄性和雌性成年昆虫的三个生物复制成分被测序并组装成630,139转录物(其中232,899在NCBI NR中表现出一个或多个序列)。定量分析鉴定在阳性 - 雌性分裂中差异表达的2898个基因,定性分析表征了昆虫的抵抗体,其包含谷胱甘肽S-转移酶,羧基酯酶和细胞色素P450单氧化基因的单酸毒性解毒基因。总之,这些数据为与性别分化相关的基因提供了有用的见解,并且这种甲虫的天生遗传能力产生了对合成农药的抵抗力;此外,这些基因可以用作潜在的基于分子的生物控制技术的有用靶标。

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