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从蝙蝠到肝炎 E 病毒的多样性与进化研究

from Bats: Insights into Hepatitis E Virus Diversity and Evolution.

机构信息

Department of Biomedical Sciences and Pathobiology, Virginia Polytechnic Institute and State University, Blacksburg, VA 24060, USA.

Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming 650023, China.

出版信息

Viruses. 2022 Apr 27;14(5):905. doi: 10.3390/v14050905.

Abstract

Homologs of the human hepatitis E virus (HEV) have been identified in more than a dozen animal species. Some of them have been evidenced to cross species barriers and infect humans. Zoonotic HEV infections cause chronic liver diseases as well as a broad range of extrahepatic manifestations, which increasingly become significant clinical problems. Bats comprise approximately one-fifth of all named mammal species and are unique in their distinct immune response to viral infection. Most importantly, they are natural reservoirs of several highly pathogenic viruses, which have induced severe human diseases. Since the first discovery of HEV-related viruses in bats in 2012, multiple genetically divergent HEV variants have been reported in a total of 12 bat species over the last decade, which markedly expanded the host range of the HEV family and shed light on the evolutionary origin of human HEV. Meanwhile, bat-borne HEV also raised critical public health concerns about its zoonotic potential. Bat HEV strains resemble genomic features but exhibit considerable heterogeneity. Due to the close evolutionary relationships, bat HEV altogether has been recently assigned to an independent genus, . This review focuses on the current state of bat HEV and provides novel insights into HEV genetic diversity and molecular evolution.

摘要

已在十多种动物物种中鉴定出人甲型肝炎病毒 (HEV) 的同源物。其中一些已被证明能够跨越物种屏障并感染人类。人畜共患的 HEV 感染会导致慢性肝病以及广泛的肝外表现,这越来越成为重要的临床问题。蝙蝠约占所有已命名哺乳动物物种的五分之一,其对病毒感染的独特免疫反应是独一无二的。最重要的是,它们是多种高致病性病毒的天然宿主,这些病毒已导致人类严重疾病。自 2012 年首次在蝙蝠中发现与 HEV 相关的病毒以来,在过去十年中,总共在 12 种蝙蝠物种中报告了多种遗传上不同的 HEV 变体,这显著扩大了 HEV 家族的宿主范围,并阐明了人类 HEV 的进化起源。同时,蝙蝠携带的 HEV 也引起了人们对其人畜共患潜力的严重公共卫生关注。蝙蝠 HEV 株类似于基因组特征,但表现出相当大的异质性。由于密切的进化关系,蝙蝠 HEV 最近被整体归为一个独立的属,. 本综述重点介绍了蝙蝠 HEV 的现状,并为 HEV 遗传多样性和分子进化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd58/9146828/74390189f802/viruses-14-00905-g002.jpg

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