Phylogenetic Analysis of Spike and Envelope Proteins for a Number of Bat Coronaviruses for Understanding the Hypothesis of Possible Origin for the Novel 2019-nCoV

S. Ibrahim Ali
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Abstract

Coronavirus Disease 19 (COVID-19) emergence reveals  globally a great health issue and due to the limited information and knowledge on the origin of this novel coronavirus 2019 (2019-nCoV). Therefore, this study aims to investigate the evolution and analysis of molecular epidemiology for both Spike and Envelope proteins of 20 available complete genome sequences of different bat coronaviruses including 2019-nCoV in order to find out which type of bat coronaviruses is more likely to be the origin of this new 2019-nCoV and also multiple amino acid sequences of Envelope protein for all bat coronaviruses were aligned for the purpose of finding the greater probability of novel 2019-nCoV original host   among bat coronaviruses. Phylogenetic tree analysis for Spike protein revealed that all 2019-nCoV related coronaviruses isolated from these species of species are discovered in China and Hong Kong and the Middle East bat are less likely to contribute in spreading or to become the origin of 2019-nCoV and all coronaviruses that from Hong Kong and China are located into one clade next to the clade that contains 2019-nCoV coronaviruses which indicates that this group of coronaviruses are genetically different for 2019-nCoV; moreover, Hong Kong and USA bat coronaviruses does not contain the bat coronavirus from China and are located into one clade far from the clade that contains 2019-nCoV indicates that all coronaviruses are genetically very different from 2019-nCoV, and USA bat coronavirus may has no role in generating of 2019-nCoV. The phylogenetic trees analysis of Envelope protein showed that Envelope protein of different coronaviruses are more similar in comparison to Spike protein, USA bat coronavirus has a relatively closeness relationship to 2019-nCoV. Furthermore, Envelope protein alignment showed the closely related amino acid sequence which confirms that the outcomes of phylogenetic tree analysis in which that these bat coronaviruses have genetically close relationship together and more interestingly amino acid sequence (MG772934.1) shows 100% identity with the amino acid sequence of 2019-nCoV (NC 045512.2) and the same virus has a close relationship in both Spike and Envelope due to that in both phylogenetic tree analysis are neighbored with 2019-nCoV in the same clade. 
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多种蝙蝠冠状病毒刺突蛋白和包膜蛋白的系统发育分析,以了解新型2019-nCoV可能起源的假设
2019冠状病毒病(COVID-19)的出现在全球范围内揭示了一个巨大的健康问题,而且由于对这种新型冠状病毒2019 (2019- ncov)来源的信息和知识有限。因此,本研究旨在对包括2019-nCoV在内的20种不同蝙蝠冠状病毒全基因组序列的Spike蛋白和Envelope蛋白进行进化和分子流行病学分析,以确定哪种类型的蝙蝠冠状病毒更有可能是新型2019-nCoV的起源,并对所有蝙蝠冠状病毒的Envelope蛋白的多个氨基酸序列进行比对,以发现新型2019-nCoV起源的可能性更大蝙蝠冠状病毒中的宿主。Spike蛋白的系统进化树分析显示,从这些物种中分离出的所有与2019-nCoV相关的冠状病毒都是在中国大陆和香港发现的,中东蝙蝠对2019-nCoV的传播或成为2019-nCoV的起源的可能性较小,来自香港和中国大陆的所有冠状病毒都位于含有2019-nCoV冠状病毒的分支旁边的一个分支中,这表明这组冠状病毒与2019-nCoV基因不同;此外,香港和美国的蝙蝠冠状病毒不含有来自中国的蝙蝠冠状病毒,并且与含有2019-nCoV的进化支位于一个很远的进化支中,这表明所有冠状病毒与2019-nCoV在基因上有很大差异,美国的蝙蝠冠状病毒可能对2019-nCoV的产生没有作用。包膜蛋白系统进化树分析显示,不同冠状病毒的包膜蛋白与Spike蛋白更为相似,美国蝙蝠冠状病毒与新型冠状病毒的亲缘关系相对较近。此外,包膜蛋白比对显示氨基酸序列密切相关,证实了系统进化树分析结果,这些蝙蝠冠状病毒在遗传上具有密切的关系,更有趣的是氨基酸序列(MG772934.1)与2019-nCoV的氨基酸序列(NC 045512.2) 100%一致,同一病毒在Spike和Envelope中都有密切的关系,因为两者在系统进化树分析中都与2019-nCoV相邻属于同一个分支。
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审稿时长
12 weeks
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