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首页> 外文期刊>Annual Research & Review in Biology >Gene Encoding and Bioinformatics Analysis of Protein Structure of ?2-Galactosidase from Sunn Pest, Eurygaster integriceps Putton
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Gene Encoding and Bioinformatics Analysis of Protein Structure of ?2-Galactosidase from Sunn Pest, Eurygaster integriceps Putton

机译:桑树害虫Eurygaster integriceps Puttonβ2-半乳糖苷酶的蛋白质结构的基因编码和生物信息学分析

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摘要

Aims: To identify the partial sequence of beta-galactosidase (EC 3.2.1.23) enzyme of sunn pest, Eurygaster integriceps Putton (Hemiptera: Scutelleridae), which is a key pest of wheat and barley in the wide area of the world and its relationship with other creatures. Place and Duration of Study: Department of Plant Protection, Varamin-Pishva Branch, Islamic Azad University, Varamin, Iran, and Department of Entomology, Science and Reaserch Branch, Islamic Azad University, Tehran, Iran. Between March 2012 and July 2013. Methodology: A part of β-galactosidase (βgal) gene was isolated from E. integriceps (designated as Ei-βgal-JQ889818), containing 328 bp. Nucleotide sequences were translated into 109 amino acids by translation tools. Twenty-six beta-galactosidase protein sequences from twenty-seven insect species, two animal samples including human and mouse, two bacteria samples including Escherichia coli and Synechococcus sp . and a sample of plants including Arabidopsis thaliana were aligned. Homology search was done by BLAST to identify the most similar protein sequences to Ei -βgal-JQ889818. Results: Protein structure analysis revealed that the deduced Ei -βgal-JQ889818 had extensive homology with other insect βgals and contained two catalytic domains of βgals. The predicted 3-D model of Ei -βgal-JQ889818 has a typical spatial structure of βgals and is partly similar to βgals. Phylogenetic tree analysis of Ei -βgal-JQ889818 showed that there is a close relationship among Arabidopsis thaliana, Acyrthosiphun pisum and Mus musculus . Conclusion: Accordingly, βgals should be functional proteins involved in the biosynthesis of lactose and are derived from a common ancestor. This research will lead us to know more about the role of βgal as a digestive enzyme through its phylogenetic relationship.
机译:目的:鉴定太阳害虫Eurygaster integriceps Putton(半翅目:Scutelleridae)的β-半乳糖苷酶(EC 3.2.1.23)的部分序列,这是世界范围内小麦和大麦的主要害虫及其关系与其他生物。研究的地点和持续时间:伊朗瓦拉明伊斯兰阿扎德大学Varamin-Pishva分部植物保护系,以及伊朗德黑兰伊斯兰阿扎德大学昆虫学,科学和Reaserch分部。在2012年3月至2013年7月之间。方法:从完整的大肠杆菌(命名为Ei-βgal-JQ889818)中分离出一部分β-半乳糖苷酶(βgal)基因,其长度为328 bp。通过翻译工具将核苷酸序列翻译成109个氨基酸。来自27种昆虫的26种β-半乳糖苷酶蛋白序列,包括人和小鼠在内的两个动物样本,包括大肠杆菌和Synechococcus sp的两个细菌样本。并比对了包括拟南芥在内的植物样品。通过BLAST进行同源性搜索以鉴定与Ei-βgal-JQ889818最相似的蛋白质序列。结果:蛋白质结构分析表明,推导的Ei-βgal-JQ889818与其他昆虫βgal具有广泛的同源性,并含有两个βgal的催化结构域。 Ei-βgal-JQ889818的预测3-D模型具有βgals的典型空间结构,部分与βgals类似。 Ei-βgal-JQ889818的系统进化树分析表明,拟南芥,拟南芥和小家鼠之间存在密切的关系。结论:因此,βgals应该是参与乳糖生物合成的功能蛋白,并且是源自共同祖先。这项研究将使我们通过系统发育关系进一步了解βgal作为消化酶的作用。

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