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利用触角转录组分析鉴定小菜蛾化感器相关基因。

Identification of Genes Involved in Chemoreception in Plutella xyllostella by Antennal Transcriptome Analysis.

机构信息

Anhui Provincial Key Laboratory of the Conservation and Exploitation of Biological Resources, College of Life Sciences, Anhui Normal University, Wuhu, 241000, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

出版信息

Sci Rep. 2017 Sep 20;7(1):11941. doi: 10.1038/s41598-017-11646-7.

Abstract

Perception of environmental and habitat cues is of significance for insect survival and reproduction. Odor detection in insects is mediated by a number of proteins in antennae such as odorant receptors (ORs), ionotropic receptors (IRs), odorant binding proteins (OBPs), chemosensory proteins (CSPs), sensory neuron membrane proteins (SNMPs) and odorant degrading enzymes. In this study, we sequenced and assembled the adult male and female antennal transcriptomes of a destructive agricultural pest, the diamondback moth Plutella xyllostella. In these transcriptomes, we identified transcripts belonging to 6 chemoreception gene families related to ordor detection, including 54 ORs, 16 IRs, 7 gustatory receptors (GRs), 15 CSPs, 24 OBPs and 2 SNMPs. Semi-quantitative reverse transcription PCR analysis of expression patterns indicated that some of these ORs and IRs have clear sex-biased and tissue-specific expression patterns. Our results lay the foundation for future characterization of the functions of these P. xyllostella chemosensory receptors at the molecular level and development of novel semiochemicals for integrated control of this agricultural pest.

摘要

昆虫对环境和栖息地线索的感知对其生存和繁殖至关重要。昆虫的气味检测是由触角中的许多蛋白质介导的,如气味受体(ORs)、离子型受体(IRs)、气味结合蛋白(OBPs)、化学感觉蛋白(CSPs)、感觉神经元膜蛋白(SNMPs)和气味降解酶。在这项研究中,我们对一种具有破坏性的农业害虫小菜蛾的成年雄性和雌性触角转录组进行了测序和组装。在这些转录组中,我们鉴定了属于 6 个与气味检测相关的化学感受基因家族的转录本,包括 54 个 ORs、16 个 IRs、7 个味觉受体(GRs)、15 个 CSPs、24 个 OBPs 和 2 个 SNMPs。表达模式的半定量反转录 PCR 分析表明,其中一些 ORs 和 IRs 具有明显的性别偏倚和组织特异性表达模式。我们的研究结果为今后在分子水平上对这些小菜蛾化学感受器的功能进行表征以及开发用于综合防治这种农业害虫的新型信息素奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9044/5607341/a922f4b3f890/41598_2017_11646_Fig1_HTML.jpg

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