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与蝙蝠相关的微生物:机遇与风险,概述

Bat-associated microbes: Opportunities and perils, an overview.

作者信息

Dhivahar J, Parthasarathy Anutthaman, Krishnan Kathiravan, Kovi Basavaraj S, Pandian Ganesh N

机构信息

Research Department of Zoology, St. Johns College, Palayamkottai, 627002, India.

Department of Plant Biology and Biotechnology, Laboratory of Microbial Ecology, Loyola College, Chennai, 600034, India.

出版信息

Heliyon. 2023 Nov 18;9(12):e22351. doi: 10.1016/j.heliyon.2023.e22351. eCollection 2023 Dec.

Abstract

The potential biotechnological uses of bat-associated bacteria are discussed briefly, indicating avenues for biotechnological applications of bat-associated microbes. The uniqueness of bats in terms of their lifestyle, genomes and molecular immunology may predispose bats to act as disease reservoirs. Molecular phylogenetic analysis has shown several instances of bats harbouring the ancestral lineages of bacterial (), protozoal (, ) and viral (SARS-CoV2) pathogens infecting humans. Along with the transmission of viruses from bats, we also discuss the potential roles of bat-associated bacteria, fungi, and protozoan parasites in emerging diseases. Current evidence suggests that environmental changes and interactions between wildlife, livestock, and humans contribute to the spill-over of infectious agents from bats to other hosts. Domestic animals including livestock may act as intermediate amplifying hosts for bat-origin pathogens to transmit to humans. An increasing number of studies investigating bat pathogen diversity and infection dynamics have been published. However, whether or how these infectious agents are transmitted both within bat populations and to other hosts, including humans, often remains unknown. Metagenomic approaches are uncovering the dynamics and distribution of potential pathogens in bat microbiomes, which might improve the understanding of disease emergence and transmission. Here, we summarize the current knowledge on bat zoonoses of public health concern and flag the gaps in the knowledge to enable further research and allocation of resources for tackling future outbreaks.

摘要

本文简要讨论了与蝙蝠相关细菌的潜在生物技术用途,指出了与蝙蝠相关微生物的生物技术应用途径。蝙蝠在生活方式、基因组和分子免疫学方面的独特性可能使它们易于成为疾病宿主。分子系统发育分析表明,有几个例子显示蝙蝠携带着感染人类的细菌()、原生动物(, )和病毒(SARS-CoV2)病原体的祖先谱系。除了蝙蝠传播病毒外,我们还讨论了与蝙蝠相关的细菌、真菌和原生动物寄生虫在新出现疾病中的潜在作用。目前的证据表明,环境变化以及野生动物、家畜和人类之间的相互作用导致了传染病原体从蝙蝠传播到其他宿主。包括家畜在内的家养动物可能作为蝙蝠源病原体传播给人类的中间扩增宿主。越来越多关于蝙蝠病原体多样性和感染动态的研究已经发表。然而,这些传染源在蝙蝠种群内部以及向包括人类在内的其他宿主传播的方式和途径往往仍不明确。宏基因组学方法正在揭示蝙蝠微生物群中潜在病原体的动态和分布,这可能有助于增进对疾病出现和传播的理解。在这里,我们总结了目前关于具有公共卫生意义的蝙蝠人畜共患病的知识,并指出了知识空白,以便能够进一步开展研究并分配资源来应对未来的疫情爆发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/286c/10730444/a61476f5e504/gr1.jpg

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