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在同域蝙蝠群落中多瘤病毒的广泛遗传多样性:宿主转换与共同进化。

Extensive Genetic Diversity of Polyomaviruses in Sympatric Bat Communities: Host Switching versus Coevolution.

机构信息

Key Laboratory of Jilin Province for Zoonosis Prevention and Control, Institute of Military Veterinary Medicine, Academy of Military Medical Sciences, Changchun, Jilin Province, China.

National Advanced Computing Collaboratory, National Center for High Technology, San Jose, Costa Rica.

出版信息

J Virol. 2020 Apr 16;94(9). doi: 10.1128/JVI.02101-19.

Abstract

Polyomaviruses (PyVs) are small DNA viruses carried by diverse vertebrates. The evolutionary relationships of viruses and hosts remain largely unclear due to very limited surveillance in sympatric communities. In order to investigate whether PyVs can transmit among different mammalian species and to identify host-switching events in the field, we conducted a systematic study of a large collection of bats ( = 1,083) from 29 sympatric communities across China which contained multiple species with frequent contact. PyVs were detected in 21 bat communities, with 192 PyVs identified in 186 bats from 15 species within 6 families representing at least 28 newly described PyVs. Surveillance results and phylogenetic analyses surprisingly revealed three interfamily PyV host-switching events in these sympatric bat communities: two distinct PyVs were identified in two bat species in restricted geographical locations, while another PyV clustered phylogenetically with PyVs carried by bats from a different host family. Virus-host relationships of all discovered PyVs were also evaluated, and no additional host-switching events were found. PyVs were identified in different horseshoe bat species in sympatric communities without observation of host-switching events, showed high genomic identities, and clustered with each other. This suggested that even for PyVs with high genomic identities in closely related host species, the potential for host switching is low. In summary, our findings revealed that PyV host switching in sympatric bat communities can occur but is limited and that host switching of bat-borne PyVs is relatively rare on the predominantly evolutionary background of codivergence with their hosts. Since the discovery of murine polyomavirus in the 1950s, polyomaviruses (PyVs) have been considered highly host restricted in mammals. Sympatric bat communities commonly contain several different bat species in an ecological niche facilitating viral transmission, and they therefore represent a model to identify host-switching events of PyVs. In this study, we screened PyVs in a large number of bats in sympatric communities from diverse habitats across China. We provide evidence that cross-species bat-borne PyV transmission exists, though is limited, and that host-switching events appear relatively rare during the evolutionary history of these viruses. PyVs with close genomic identities were also identified in different bat species without host-switching events. Based on these findings, we propose an evolutionary scheme for bat-borne PyVs in which limited host-switching events occur on the background of codivergence and lineage duplication, generating the viral genetic diversity in bats.

摘要

多瘤病毒(PyVs)是一种小型 DNA 病毒,由多种脊椎动物携带。由于在同域群落中进行的监测非常有限,病毒和宿主之间的进化关系在很大程度上仍不清楚。为了研究 PyVs 是否可以在不同的哺乳动物物种之间传播,并确定野外的宿主转换事件,我们对来自中国 29 个同域群落的大量蝙蝠(= 1,083)进行了系统研究,这些群落包含了多种经常接触的物种。在 21 个蝙蝠群落中检测到了 PyVs,在 15 个科的 186 只蝙蝠中发现了 192 种 PyVs,代表了至少 28 种新描述的 PyVs。监测结果和系统发育分析令人惊讶地揭示了这些同域蝙蝠群落中三种科间 PyV 宿主转换事件:在两个地理位置受限的蝙蝠物种中鉴定出两种不同的 PyVs,而另一种 PyV 与来自不同宿主科的蝙蝠携带的 PyVs 在系统发育上聚类。还评估了所有发现的 PyVs 的病毒-宿主关系,没有发现其他宿主转换事件。在同域群落中,不同的马蹄蝠物种中发现了 PyVs,但没有观察到宿主转换事件,这些 PyVs 具有很高的基因组同一性,并相互聚类。这表明,即使在密切相关的宿主物种中具有高度基因组同一性的 PyVs 中,宿主转换的潜力也很低。总之,我们的研究结果表明,同域蝙蝠群落中的 PyV 宿主转换虽然有限,但确实会发生,并且蝙蝠携带的 PyV 宿主转换在与宿主共同进化的主要背景下相对罕见。自 20 世纪 50 年代发现鼠多瘤病毒以来,多瘤病毒(PyVs)被认为在哺乳动物中具有高度宿主限制。同域蝙蝠群落通常包含几种不同的蝙蝠物种,它们在生态位中有利于病毒传播,因此它们代表了识别 PyV 宿主转换事件的模型。在这项研究中,我们在中国各地的多种不同栖息地的同域群落中对大量蝙蝠进行了 PyV 筛查。我们提供的证据表明,跨物种蝙蝠携带的 PyV 传播确实存在,尽管是有限的,而且在这些病毒的进化历史中,宿主转换事件似乎相对罕见。在没有宿主转换事件的情况下,我们还在不同的蝙蝠物种中发现了具有密切基因组同一性的 PyVs。基于这些发现,我们提出了一种蝙蝠携带的 PyV 的进化方案,其中有限的宿主转换事件发生在共同进化和谱系复制的背景下,从而产生了蝙蝠中的病毒遗传多样性。

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