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寡食性梨害虫(半翅目:木虱科)中的化学感应基因家族

Chemosensory Gene Families in the Oligophagous Pear Pest (Hemiptera: Psyllidae).

作者信息

Xu Ji-Wei, Zhu Xiu-Yun, Chao Qiu-Jie, Zhang Yong-Jie, Yang Yu-Xia, Wang Ran-Ran, Zhang Yu, Xie Meng-Zhen, Ge Ya-Ting, Wu Xin-Lai, Zhang Fan, Zhang Ya-Nan, Ji Lei, Xu Lu

机构信息

College of Life Sciences, Huaibei Normal University, Huaibei 235000, China.

Key Laboratory of Animal Resistance Research, College of Life Science, Shandong Normal University, Jinan 250000, China.

出版信息

Insects. 2019 Jun 17;10(6):175. doi: 10.3390/insects10060175.

Abstract

Chemosensory systems play an important role in insect behavior, and some key associated genes have potential as novel targets for pest control. is an oligophagous pest and has become one of the main pests of pear trees, but little is known about the molecular-level means by which it locates its hosts. In this study, we assembled the head transcriptome of using Illumina sequencing, and 63,052 Unigenes were identified. A total of 36 candidate chemosensory genes were identified, including five different families: 12 odorant binding proteins (OBPs), 11 chemosensory proteins (CSPs), 7 odorant receptors (ORs), 4 ionotropic receptors (IRs), and 2 gustatory receptors (GRs). The number of chemosensory gene families is consistent with that found in other Hemipteran species, indicating that our approach successfully obtained the chemosensory genes of . . The tissue expression of all genes using quantitative real-time PCR (qRT-PCR) found that some genes displayed male head, female head, or nymph-biased specific/expression. Our results enrich the gene inventory of and provide valuable resources for the analysis of the functions of some key genes. This will help in developing molecular targets for disrupting feeding behavior in .

摘要

化学感应系统在昆虫行为中起着重要作用,一些关键的相关基因具有作为害虫防治新靶点的潜力。 是一种寡食性害虫,已成为梨树的主要害虫之一,但对于其定位宿主的分子水平机制知之甚少。在本研究中,我们使用Illumina测序组装了 的头部转录组,并鉴定出63,052个单基因。共鉴定出36个候选化学感应基因,包括五个不同的家族:12个气味结合蛋白(OBP)、11个化学感应蛋白(CSP)、7个气味受体(OR)、4个离子型受体(IR)和2个味觉受体(GR)。化学感应基因家族的数量与在其他半翅目物种中发现的数量一致,表明我们的方法成功获得了 的化学感应基因。使用定量实时PCR(qRT-PCR)对所有基因进行组织表达分析发现,一些基因表现出雄性头部、雌性头部或若虫偏向的特异性/表达。我们的结果丰富了 的基因库,并为分析一些关键基因的功能提供了有价值的资源。这将有助于开发破坏 取食行为的分子靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c3f/6628306/213613c6f476/insects-10-00175-g001.jpg

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