首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Midgut de novo transcriptome analysis and gene expression profiling of Achaea janata larvae exposed with Bacillus thuringiensis (Bt)-based biopesticide formulation
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Midgut de novo transcriptome analysis and gene expression profiling of Achaea janata larvae exposed with Bacillus thuringiensis (Bt)-based biopesticide formulation

机译:Emgut de Novo转录组分析和基因表达剖析achaeajanata幼虫暴露于芽孢杆菌(Bt)的生物农药制剂

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摘要

India is the major producer and exporter of castor oil in the world. Castor semilooper, Achaea janata is one of the main castor crop pests, which causes serious economic loss of crop, hence management and control of the pest are important. Currently, Bacillus thuringiensis (Bt) based biopesticides are being used for their control. However, the insects are known to develop resistance not only against chemical pesticides but also to Bt based biopesticides. In the present study, de novo transcriptome analysis was conducted to monitor the expression pattern of larval midgut genes in Achaea janata exposed to sublethal dose of Bt formulation. A total of 34,612 and 41,109 transcripts were identified in control and toxin-exposed larval midgut samples out of which 18,836 in control and 21,046 in toxin-exposed samples are annotated. Microarray data analysis employed to monitor the gene expression upon Cry toxin exposure revealed that 375 genes were upregulated and 579 genes were down regulated during all the time points (12-60 h) of toxin exposure. The differentially expressed transcripts include i.e. Cry toxin receptors, gut proteases, arylphorin, REPATs, detoxification enzymes and aquaporins. Validation of microarray data was performed by real-time quantitative PCR using few randomly selected genes and the results obtained were in corroboration. This is the first study on transcriptome data from the castor semilooper and the results would provide valuable resources for the characterization of Bt toxin response in the pest.
机译:印度是世界上蓖麻油的主要生产国和出口商。 Castor Semilooper,Achaea Janata是主要的蓖麻作物害虫之一,导致严重的经济丧失作物,因此管理和控制害虫是重要的。目前,芽孢杆菌(BT)基于Bacillus(BT)的生物化物用于它们的控制。然而,已知昆虫不仅对化学杀虫剂产生抗性,而且是基于BT的生物农药的抗性。在本研究中,进行了Novo转录组分析,以监测在暴露于亚偶甲醚剂量的Achaea Janata中的幼虫中肠基因的表达模式。在对照和毒素暴露的幼虫中肠样品中鉴定了总共34,612和41,109转录物,其中18,836中,毒素暴露样品中的21,046℃是注释。用于监测毒素毒素暴露的微阵列数据分析显示在毒素毒素暴露时显示出上调375个基因,并且在毒素暴露的所有时间点(12-60小时)期间调节579个基因。差异表达的转录物包括即毒毒素受体,肠道蛋白,芳基苯素,返回,解毒酶和水蛋白。通过使用少量随机选择的基因进行实时定量PCR来进行微阵列数据的验证,得到的结果是粗化。这是第一研究来自蓖麻半棉蛋白的转录组数据,结果将提供有益的资源,以便在害虫中表征Bt毒素响应。

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