首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Midgut transcriptome response to a Cry toxin in the diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae)
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Midgut transcriptome response to a Cry toxin in the diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae)

机译:中肠转录组对Diamondback Moth,Plutella Xylostella(Lepidoptera:Plutellidae)的哭泣毒素的反应

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摘要

To investigate the response of Plutella xylostella transcriptome in defending against a Bt toxin, high-throughput RNA-sequencing was carried out to examine Cry1Ac-susceptible and -resistant strains. The comparative analysis indentified over 2900 differentially expressed unigenes (DEUs) between these two strains. Gene Ontology analysis placed these unigenes primarily into cell, cell part, organelle, binding, catalytic, cellular process, metabolic process, and response to stimulus categories. Based on pathway analyses, DEUs were enriched in oxidoreductase activity and membrane lipid metabolic processes, and they were also significantly enriched in pathways related to the metabolic and biosynthesis of secondary metabolites. Most of the unigenes involved in the metabolic pathway were up-regulated in resistant strains. Within the ABC transporter pathway, majority of the down-regulated unigenes belong to ABCC2 and ABCC10, respectively, while up-regulated unigenes were mainly categorized as ABCG2. Furthermore, two aminopeptidases, and four cadherins encoding genes were significantly elevated as well. This study provides a transcriptome foundation for the identification and functional characterization of genes involved in the Bt resistance in an agriculturally important insect pest, P. xylostella. (C) 2013 Elsevier B.V. All rights reserved.
机译:为了探讨Plutella Xylostella转录组在抗Bt毒素的防治方面的响应,进行高通量RNA测序以检查Cry1Ac易感和 - 抗生素菌株。对比分析在这两个菌株之间缩写超过2900种差异表达的unigenes(deus)。基因本体学分析主要将这些unigenes置于细胞,细胞部分,细胞器,结合,催化剂,细胞过程,代谢过程和对刺激类别的反应中。基于途径分析,富含氧化还原酶活性和膜脂代谢过程的DEU,并且在与次级代谢物的代谢物和生物合成相关的途径中也显着富集。在代谢途径中参与代谢途径的大多数unigenes在抗性菌株中进行上调。在ABC转运途径内,大多数下调的未预防的未分别属于ABCC2和ABCC10,而上调的unigenes主要分为ABCG2。此外,两个氨肽酶和四个钙丝蛋白编码基因也明显升高。本研究为在农业上重要的昆虫害虫P. Xylostella的BT阻力中鉴定和功能表征的转录组基础。 (c)2013年elestvier b.v.保留所有权利。

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