首页> 外文期刊>Insect Biochemistry and Molecular Biology >Transcriptome-wide survey, gene expression profiling and exogenous chemical-induced transcriptional responses of cytochrome P450 superfamily genes in migratory locust (Locusta migratoria)
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Transcriptome-wide survey, gene expression profiling and exogenous chemical-induced transcriptional responses of cytochrome P450 superfamily genes in migratory locust (Locusta migratoria)

机译:转录组的调查,基因表达分析和外源化学诱导的细胞色素P450超家族基因在迁移蝗虫(Locusta Migratoria)中的转录反应

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Cytochrome P450 monooxygenases (CYPs) belong to a large superfamily of heme-containing enzymes catalyzing at least 60 different types of chemically distinct reactions. Insect CYPs play key roles in biotransformation of insecticides and plant chemicals, and are implicated in insecticide resistance and insect adaptation to their host plants. Insect CYPs are well studied in model insects, but little is known about the CYP superfamily in paurometabolous insects. We employed Illumina sequencing technology to identify 71 partial and 78 full-length open reading frames (ORFs) of LmCYP genes from the migratory locust (Locusta migratoria), one of the most destructive paurometabolous insect pests in the world. Seventy-eight LmCYPs with complete ORFs were formally named and classified into 19 families and 43 subfamilies. The majority of LmCYPs were mainly expressed in nymphal and adult stages, but LmCYP expression varied widely among thirteen different tissues examined. Regulatory elements were predicted in the promoter regions of LmCYP genes, and subsequent exposure of locusts to 12 different exogenous chemicals showed that 2-tridecanone and xanthotoxin were the most effective at increasing LmCYP expression. Our results represent the first transcriptome-wide analysis of the LmCYP super family from migratory locust, and provide a foundation for understanding the physiological functions, functional diversity, evolution, and regulatory mechanisms controlling the expression of the CYP gene superfamily in the locust.
机译:细胞色素P450单氧基酶(CYPS)属于含血红素酶的大型超家族,催化至少60种不同类型的化学明显反应。昆虫Cyps在杀虫剂和植物化学品的生物转化中发挥关键作用,并涉及杀虫剂抗性和昆虫适应宿主植物。昆虫CYP在模型昆虫中进行了很好地研究,但对Paurometabolous昆虫的Cyp Superfamily知之甚少。我们使用Illumina测序技术来识别来自迁移蝗虫(Locusta Migratoria)的71个部分和78个全长开放阅读框(ORFS)Lmcyp基因,是世界上最具破坏性的Paurometabolous害虫之一。具有完整ORF的七十八百分比被正式命名并分类为19个家庭和43个亚属。大多数Lmcyps主要在若虫和成人阶段表达,但LMCYP表达在检查的十三种不同组织中的广泛变化。在Lmcyp基因的启动子区域预测调控元件,随后的蝗虫暴露于12种不同的外源化学品,表明,2-三癸酮和黄嘌呤毒素在增加LMCYP表达时最有效。我们的结果代表了来自迁徙蝗虫的LMCYP超级家族的第一个转录组宽分析,为了解控制Cyp基因超家族在蝗虫中表达的生理功能,功能多样性,演化和调节机制提供基础。

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