Genetic Characteristics and Phylogeographic Dynamics of Echovirus.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
ACS Applied Electronic Materials Pub Date : 2023-09-01 Epub Date: 2023-09-15 DOI:10.1007/s12275-023-00078-w
Yan Wang, Pir Tariq Shah, Yue Liu, Amina Nawal Bahoussi, Li Xing
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Abstract

Echoviruses belong to the genus Enterovirus in the Picornaviridae family, forming a large group of Enterovirus B (EV-B) within the Enteroviruses. Previously, Echoviruses were classified based on the coding sequence of VP1. In this study, we performed a reliable phylogenetic classification of 277 sequences isolated from 1992 to 2019 based on the full-length genomes of Echovirus. In this report, phylogenetic, phylogeographic, recombination, and amino acid variability landscape analyses were performed to reveal the evolutional characteristics of Echovirus worldwide. Echoviruses were clustered into nine major clades, e.g., G1-G9. Phylogeographic analysis showed that branches G2-G9 were linked to common strains, while the branch G1 was only linked to G5. In contrast, strains E12, E14, and E16 clustered separately from their G3 and G7 clades respectively, and became a separate branch. In addition, we identified a total of 93 recombination events, where most of the events occurred within the VP1-VP4 coding regions. Analysis of amino acid variation showed high variability in the a positions of VP2, VP1, and VP3. This study updates the phylogenetic and phylogeographic information of Echovirus and indicates that extensive recombination and significant amino acid variation in the capsid proteins drove the emergence of new strains.

Abstract Image

埃可病毒的遗传特征和系统地理动态。
回声病毒属于小核糖核酸病毒科的肠道病毒属,在肠道病毒中形成了一大群肠道病毒B(EV-B)。以前,回声病毒是根据VP1的编码序列进行分类的。在这项研究中,我们根据Echovirus的全长基因组,对1992年至2019年分离的277个序列进行了可靠的系统发育分类。本报告通过系统发育、系统地理学、重组和氨基酸变异景观分析,揭示了Echovirus在世界范围内的进化特征。回声病毒分为9个主要分支,例如G1-G9。系统发育分析表明,G2-G9分支与普通菌株相连,而G1分支仅与G5分支相连。相反,菌株E12、E14和E16分别与它们的G3和G7分支分开聚集,并成为一个单独的分支。此外,我们总共鉴定了93个重组事件,其中大多数事件发生在VP1-VP4编码区内。对氨基酸变异的分析显示,VP2、VP1和VP3的a位置具有高度变异性。这项研究更新了回声病毒的系统发育和系统地理学信息,并表明衣壳蛋白中的广泛重组和显著的氨基酸变异推动了新毒株的出现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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