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RNA干扰介导的大豆食心虫(鳞翅目:小卷蛾科)免疫反应相关基因的沉默

RNA interference-mediated silencing of genes involved in the immune responses of the soybean pod borer (Lepidoptera: Olethreutidae).

作者信息

Ran Ruixue, Li Tianyu, Liu Xinxin, Ni Hejia, Li Wenbin, Meng Fanli

机构信息

Key Laboratory of Soybean Biology in the Chinese Ministry of Education, Northeast Agricultural University, Harbin, Heilongjiang, China.

Colleges of Life Science, Northeast Agricultural University, Harbin, Heilongjiang, China.

出版信息

PeerJ. 2018 Jun 12;6:e4931. doi: 10.7717/peerj.4931. eCollection 2018.

Abstract

RNA interference (RNAi) technology may be useful for developing new crop protection strategies against the soybean pod borer (SPB; ), which is a critical soybean pest in northeastern Asia. Immune-related genes have been recently identified as potential RNAi targets for controlling insects. However, little is known about these genes or mechanisms underlying their expression in the SPB. In this study, we completed a transcriptome-wide analysis of SPB immune-related genes. We identified 41 genes associated with SPB microbial recognition proteins, immune-related effectors or signalling molecules in immune response pathways (e.g., Toll and immune deficiency pathways). Eleven of these genes were selected for a double-stranded RNA artificial feeding assay. The down-regulated expression levels of and resulted in relatively high larval mortality rates and abnormal development. Our data represent a comprehensive genetic resource for immune-related SPB genes, and may contribute to the elucidation of the mechanism regulating innate immunity in Lepidoptera species. Furthermore, two immune-related SPB genes were identified as potential RNAi targets, which may be used in the development of RNAi-mediated SPB control methods.

摘要

RNA干扰(RNAi)技术可能有助于开发针对大豆食心虫(SPB;)的新作物保护策略,大豆食心虫是亚洲东北部一种关键的大豆害虫。免疫相关基因最近已被确定为控制昆虫的潜在RNAi靶标。然而,对于这些基因或其在大豆食心虫中表达的潜在机制知之甚少。在本研究中,我们完成了对大豆食心虫免疫相关基因的全转录组分析。我们在免疫反应途径(如Toll和免疫缺陷途径)中鉴定出41个与大豆食心虫微生物识别蛋白、免疫相关效应器或信号分子相关的基因。其中11个基因被选用于双链RNA人工喂食试验。和的表达水平下调导致相对较高的幼虫死亡率和发育异常。我们的数据代表了大豆食心虫免疫相关基因的综合遗传资源,并可能有助于阐明鳞翅目物种先天免疫的调节机制。此外,两个大豆食心虫免疫相关基因被确定为潜在的RNAi靶标,可用于开发RNAi介导的大豆食心虫控制方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cfd/6003399/3c8a5ba8e642/peerj-06-4931-g001.jpg

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