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首页> 外文期刊>Pesticide Biochemistry and Physiology >Transcriptional characteristics of gene expression in the midgut of domestic silkworms (Bombyx mori) exposed to phoxim.
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Transcriptional characteristics of gene expression in the midgut of domestic silkworms (Bombyx mori) exposed to phoxim.

机译:暴露在辛硫磷中的家蚕(Bombyx mori)中肠基因表达的转录特征。

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摘要

Silkworm (Bombyx mori) is not only an economically important insect but also a model system for lepidoptera. As a vital organ of digestion and nutrient absorption, the midgut of insects also serves as the first physiological barrier to chemical pesticides. In this study, microarray was performed to profile the gene expression changes in the midgut of silkworms exposed to phoxim. After 24 h of phoxim exposure (4.0 micro g/mL), 266 genes displayed at least 2.0-fold changes in expression levels. Among them, 192 genes were up-regulated, and 74 genes were down-regulated. The most significant changes were 14.88-fold up-regulation and 23.36-fold down-regulation. According to gene ontology annotation and pathway analysis, differentially expressed genes were mainly classified into different groups based on their potential involvements in detoxification, immunne response, stress response, energy metabolism and transport. Particularly, the transcription levels of detoxification-related genes were up-regulated, such as cytochrome P450s, esterases and glutathione-S-transferase (GST), indicating increased detoxification activity in the midgut. Our study provides new insights into the molecular mechanism of pesticide metabolism in the midgut of insects, which may promote the development of highly efficient insecticides.
机译:蚕(Bombyx mori)不仅是经济上重要的昆虫,还是鳞翅目的模型系统。作为消化和营养吸收的重要器官,昆虫的中肠还成为化学农药的第一个生理屏障。在这项研究中,进行了微阵列分析,以分析暴露于辛硫磷的家蚕中肠中基因表达的变化。暴露于辛硫磷24小时(4.0微克/毫升)后,266个基因的表达水平至少变化了2.0倍。其中,上调192个基因,下调74个基因。最显着的变化是上调14.88倍,下调23.36倍。根据基因本体论注释和途径分析,差异表达基因主要根据其潜在的排毒,免疫应答,应激反应,能量代谢和转运作用分为不同的组。特别是,排毒相关基因的转录水平上调,例如细胞色素P450,酯酶和谷胱甘肽S-转移酶(GST),表明中肠的排毒活性增加。我们的研究为昆虫中肠中农药代谢的分子机制提供了新见解,这可能促进高效杀虫剂的开发。

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