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TRANSCRIPTOME AND TISSUE-SPECIFIC EXPRESSION ANALYSIS OF OBP AND CSP GENES IN THE DARK BLACK CHAFER

机译:暗黑鸟笼中OBP和CSP基因的转录组和组织特异性表达分析

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摘要

The dark black chafer, Holotrichia parallela, is an economically important pest in China and worldwide. Traps based on chemical communication are being developed as an alternative control measure to pesticides for this pest, and studies to reveal chemical communication mechanisms in this pest are highly desirable. To systematically analyze genes potentially involved in chemical communication in this pest, we generated a comprehensive transcriptome with combined samples derived from multiple tissues and developmental stages. A total of 43,967 nonredundant sequences (unigenes) with average length of 806 bp were obtained. These unigenes were annotated into different pathways using gene ontology analysis and cluster analysis of orthologous groups of proteins, and kyoto encyclopedia of genes and genomes. In total, 25 transcripts encoding odorant-binding proteins (OBPs) and 16 transcripts encoding chemosensory proteins (CSPs) were identified based on homology searches. Tissue-specific expression profile indicates that OBP17 and CSP7 are likely responsible for male sex pheromone recognition, whereas OBP1-4, OBP9, OBP13-14, OBP17-18, OBP20, OBP22, OBP25, CSP1-7, CSP11, and CSP12-15 are likely responsible for chemical communication between the beetle and environments. Our data shall provide a foundation for further research on the molecular aspects of chemical communication of this insect, and for comparative genomic studies with other species.
机译:深黑金龟子,Holotrichia parallela,是中国和世界范围内一种重要的经济害虫。目前正在开发基于化学通讯的诱集装置,作为对该害虫使用的农药的替代控制措施,非常需要进行研究以揭示该有害生物中的化学通讯机制。为了系统地分析这种有害生物中可能参与化学通讯的基因,我们生成了一个综合的转录组,其中包含来自多个组织和发育阶段的组合样品。总共获得了43967个平均长度为806 bp的非冗余序列(单基因)。使用基因本体分析和直系同源蛋白质组的聚类分析,以及基因和基因组的京都百科全书,将这些单基因注释为不同的途径。基于同源性搜索,总共鉴定出25个编码气味结合蛋白(OBP)的转录本和16个编码化学感觉蛋白(CSP)的转录本。组织特异性表达谱表明OBP17和CSP7可能负责男性信息素识别,而OBP1-4,OBP9,OBP13-14,OBP17-18,OBP20,OBP22,OBP25,CSP1-7,CSP11和CSP12-15可能负责甲虫和环境之间的化学交流。我们的数据将为进一步研究该昆虫化学交流的分子方面以及与其他物种进行比较基因组研究提供基础。

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