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Midgut transcriptome analysis of Clostera anachoreta treated with lethal and sublethal Cry1Ac protoxin

机译:用致命和止聚乳蛋白治疗的蛋白质细胞腺癌的胚胎转录组分析

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Clostera anachoreta is one of the important Lepidoptera insect pests in forestry, especially in poplars woods in China, Europe, Japan, and India, and so forth, and also the target insect of Cry1Ac toxin and Bt plants. Six genes, HSC70, GNB2L/RACK1, PNLIP, BI1-like, arylphorin type 2, and PKM were found in this study, and they might be associated with the response to the Cry1Ac toxin, found by analyzing the transcriptome data. And the PI3K-Akt pathway was highly enriched in differentially expressed unigenes and linked to several crucial pathways, including the B-cell receptor signaling pathway, toll-like receptor pathway, and mitogen-activated protein kinase signaling pathway. They might be involved in the recovery stage of the damaged midgut during the response to sublethal doses of Cry1Ac toxin. This is the first study conducted to specifically investigate C. anachoreta response to Cry toxin stress using large-scale sequencing technologies, and the results highlighted some important genes and pathways that could be involved in Btcry1Ac resistance development or could serve as targets for biologically based control mechanisms of this insect pest.
机译:Clostera Anachoreta是林业中重要的鳞翅目昆虫害虫之一,特别是在中国,欧洲,日本和印度的Poplars伍兹等,以及Cry1Ac毒素和BT植物的目标昆虫。在该研究中发现了六个基因,HSC70,GNB2L / Rack1,Pnlip,Bi1样,芳基苯素蛋白2和PKM,并且它们可能与通过分析转录组数据发现对Cry1Ac Toxin的响应。并且PI3K-AKT途径在差异表达的unigenes中高度富集,并与若干关键途径连接,包括B细胞受体信号传导途径,Toll样受体途径和丝裂原激活的蛋白激酶信号传导途径。在对亚致死剂量的Cry1Ac毒素的反应期间,它们可能参与受损中间肠的恢复阶段。这是第一项研究,以具体研究了使用大规模测序技术进行哭泣毒素胁迫的C.Anachoreta响应,结果突出了一些重要的基因和途径,可参与BTCry1Ac抗性发展,或者可以作为生物学控制的目标这种虫害的机制。

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