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一种新型水疱病毒在地中海地区蝙蝠中的广泛地理传播。

Broad geographical circulation of a novel vesiculovirus in bats in the Mediterranean region.

作者信息

Luo Dong-Sheng, Harazim Markéta, Maufrais Corinne, Bonas Simon, Martinkova Natalia, Lalis Aude, Nakouné Emmanuel, Adjogoua Edgard Valéry, Douno Mory, Kadjo Blaise, López-Roig Marc, Pikula Jiri, Shi Zheng-Li, Bourhy Hervé, Serra-Cobo Jordi, Dacheux Laurent

机构信息

Institut Pasteur, Université Paris Cité, Unit Lyssavirus Epidemiology and Neuropathology, Paris, France.

Department of Infection Biology, London School of Hygiene & Tropical Medicine, London, United Kingdom.

出版信息

PLoS Negl Trop Dis. 2025 Jun 12;19(6):e0013172. doi: 10.1371/journal.pntd.0013172. eCollection 2025 Jun.

Abstract

Bats are the natural reservoirs for a variety of emerging and re-emerging viruses. Among them, rabies virus (genus Lyssavirus, family Rhabdoviridae) is one of the first and most emblematic described in these animals. Since its first description, several new bat lyssaviruses have been regularly identified. In addition to lyssaviruses, other bat rhabdoviruses have also been discovered, including members of the genera Vesiculovirus, Ledantevirus and, more recently, Alphanemrhavirus and Tupavirus. However, the family Rhabdoviridae is one of the most abundant and diverse viral families, with 434 officially recognized species, divided into 5 subfamilies and 56 different genera. The number of rhabdoviruses associated with bats is therefore probably higher than that currently available. In this study, we first developed and validated a combined nested RT-qPCR technique (pan-rhabdo RT-nqPCR) dedicated to the broad detection of animal rhabdoviruses. After validation, this technique was used for a large retrospective screening of archival bat samples (n = 1962), including blood (n = 816), brain (n = 723) and oral swab (n = 423). These samples were collected from various bat species over a 12-year period (2007-2019) in 9 different countries in Europe and Africa. A total of 23 samples (1.2%) from bat species Miniopterus schreibersii, Rhinolophus euryale and Rhinolophus ferrumequinum tested positive for rhabdovirus infection, including 17 (2.1%) blood and 6 (1.4%) oral swab samples, all collected from bats originating from the Mediterranean region. Complete virus genome sequences were obtained by next-generation sequencing for most of the positive samples. Molecular and phylogenetic analysis of these sequences demonstrated that the virus isolates, named Mediterranean bat virus (MBV), were closely related and represented a new species, Mediterranean vesiculovirus, within the genus Vesiculovirus. MBV was more specifically related to other bat vesiculoviruses previously described from China and North America, together clustering into a distinct group of bat viruses within this genus. Interestingly, our results suggest that MBV is widespread, at least in the western part of the Mediterranean region, where it circulates in the blood of several bat species. These results expand the host range and viral diversity of bat vesiculoviruses, and pave the way for further studies to determine the transmission route and dissemination dynamics of these viruses in bat colonies, as well as to assess their potential threat to public health.

摘要

蝙蝠是多种新出现和再次出现的病毒的天然宿主。其中,狂犬病病毒(狂犬病毒属,弹状病毒科)是最早在这些动物中被描述且最具代表性的病毒之一。自首次描述以来,几种新的蝙蝠狂犬病毒不断被发现。除了狂犬病毒,其他蝙蝠弹状病毒也被发现,包括水疱性口炎病毒属、莱丹特病毒属的成员,以及最近发现的α-内马尔哈病毒属和图帕病毒属的成员。然而,弹状病毒科是最丰富和多样的病毒科之一,有434个官方认可的物种,分为5个亚科和56个不同的属。因此,与蝙蝠相关的弹状病毒数量可能高于目前已知的数量。在本研究中,我们首先开发并验证了一种用于广泛检测动物弹状病毒的组合巢式RT-qPCR技术(泛弹状病毒RT-nqPCR)。验证后,该技术用于对存档蝙蝠样本(n = 1962)进行大规模回顾性筛查,包括血液样本(n = 816)、脑样本(n = 723)和口腔拭子样本(n = 423)。这些样本是在12年期间(2007 - 2019年)从欧洲和非洲9个不同国家的各种蝙蝠物种中采集的。共有来自皱唇蝠、大耳菊头蝠和马铁菊头蝠的23个样本(1.2%)检测出弹状病毒感染呈阳性,其中包括17个血液样本(2.1%)和6个口腔拭子样本(1.4%),所有样本均采集自来自地中海地区的蝙蝠。通过下一代测序获得了大多数阳性样本的完整病毒基因组序列。对这些序列的分子和系统发育分析表明,分离出的病毒被命名为地中海蝙蝠病毒(MBV),它们密切相关,代表水疱性口炎病毒属内的一个新物种——地中海水疱性口炎病毒。MBV与先前在中国和北美描述的其他蝙蝠水疱性口炎病毒关系更为密切,共同聚集成该属内一个独特的蝙蝠病毒组。有趣的是,我们的结果表明MBV广泛存在,至少在地中海地区西部,它在几种蝙蝠物种的血液中传播。这些结果扩展了蝙蝠水疱性口炎病毒的宿主范围和病毒多样性,为进一步研究确定这些病毒在蝙蝠群体中的传播途径和传播动态,以及评估它们对公共卫生的潜在威胁铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d27/12193708/5ef5df150415/pntd.0013172.g001.jpg

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