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亚致死浓度Cry1Ca蛋白处理的幼虫中肠转录组从头分析及基因表达谱分析

Midgut de novo transcriptome analysis and gene expression profiling of larvae exposed with sublethal concentrations of Cry1Ca protein.

作者信息

Ren Xiangliang, Wang Yingying, Ma Yajie, Jiang Weili, Ma Xiaoyan, Hu Hongyan, Wang Dan, Ma Yan

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang, 455000 Henan China.

Honghu Agricultural Technology Extension Center, Jingzhou, 433200 Hubei China.

出版信息

3 Biotech. 2020 Mar;10(3):138. doi: 10.1007/s13205-020-2129-2. Epub 2020 Feb 25.

Abstract

(Hübner) is a polyphagous pest on agricultural crops, whose control is based mainly on the application of chemical insecticides. (Bt) is one of the most important biological agents that have been successfully applied as a biological control, and Cry1Ca protein is considered to be active against . Therefore, to understand the response of to Cry1Ca protein, high-throughput sequencing was used to analyse the larval midgut after treatment with sublethal concentrations of Cry1Ca protein. Transcriptome data showed that a total of 98,571 unigenes with an N50 value of 1135 bp and a mean length of 653 bp were obtained. Furthermore, 2962 differentially expressed genes (DEGs) were identified after Cry1Ca challenge, including 1508 up-regulated and 1454 down-regulated unigenes. Among these DEGs, detoxification (CYP, CarE, and GST) and Bt resistance (ALP, APN, and ABC transporter)-related genes were differentially expressed in the midgut of after Cry1Ca treatment. However, most DEGs of protective enzymes were down-regulated, while most DEGs related with serine protease and REPAT were up-regulated. Furthermore, almost all DEGs related to the immune signaling pathway, antimicrobial protein, and lysozyme were up-regulated by Cry1Ca treatment. These results indicated that the detoxification enzyme, protective enzymes, Bt resistance-related genes, serine protease, REPAT, and the immune response might have been involved in the response of to Cry1Ca protein. In summary, analysis of the transcriptomal expression of genes involved in Cry1Ca protein against provided potential clues for elucidating the host response processes and defensive mechanisms underlying Cry1Ca toxicity.

摘要

(菜粉蝶)是一种危害农作物的多食性害虫,对其防治主要基于化学杀虫剂的使用。(苏云金芽孢杆菌)是已成功应用于生物防治的最重要的生物制剂之一,Cry1Ca蛋白被认为对……具有活性。因此,为了解(菜粉蝶)对Cry1Ca蛋白的反应,采用高通量测序技术分析了用亚致死浓度的Cry1Ca蛋白处理后的(菜粉蝶)幼虫中肠。转录组数据显示,共获得98571个单基因,N50值为1135 bp,平均长度为653 bp。此外,在Cry1Ca刺激后鉴定出2962个差异表达基因(DEG),包括1508个上调单基因和1454个下调单基因。在这些DEG中,解毒(CYP、CarE和GST)和Bt抗性(ALP、APN和ABC转运蛋白)相关基因在Cry1Ca处理后的(菜粉蝶)中肠中差异表达。然而,大多数保护酶的DEG下调,而大多数与丝氨酸蛋白酶和REPAT相关的DEG上调。此外,几乎所有与免疫信号通路、抗菌蛋白和溶菌酶相关的DEG在Cry1Ca处理后上调。这些结果表明,解毒酶、保护酶、Bt抗性相关基因、丝氨酸蛋白酶、REPAT和免疫反应可能参与了(菜粉蝶)对Cry1Ca蛋白的反应。总之,对参与Cry1Ca蛋白作用于(菜粉蝶)的基因的转录组表达分析为阐明宿主反应过程和Cry1Ca毒性的防御机制提供了潜在线索。

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