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从人类皮肤感染凝固酶阴性葡萄球菌的噬菌体:多样性、新颖性和宿主抗性。

Bacteriophages from human skin infecting coagulase-negative Staphylococcus: diversity, novelty and host resistance.

机构信息

Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool, Liverpool, UK.

出版信息

Sci Rep. 2024 Apr 8;14(1):8245. doi: 10.1038/s41598-024-59065-9.

Abstract

The human skin microbiome comprises diverse populations that differ temporally between body sites and individuals. The virome is a less studied component of the skin microbiome and the study of bacteriophages is required to increase knowledge of the modulation and stability of bacterial communities. Staphylococcus species are among the most abundant colonisers of skin and are associated with both health and disease yet the bacteriophages infecting the most abundant species on skin are less well studied. Here, we report the isolation and genome sequencing of 40 bacteriophages from human skin swabs that infect coagulase-negative Staphylococcus (CoNS) species, which extends our knowledge of phage diversity. Six genetic clusters of phages were identified with two clusters representing novel phages, one of which we characterise and name Alsa phage. We identified that Alsa phages have a greater ability to infect the species S. hominis that was otherwise infected less than other CoNS species by the isolated phages, indicating an undescribed barrier to phage infection that could be in part due to numerous restriction-modification systems. The extended diversity of Staphylococcus phages here enables further research to define their contribution to skin microbiome research and the mechanisms that limit phage infection.

摘要

人类皮肤微生物组由多种不同的种群组成,这些种群在不同的时间和个体之间存在差异。病毒组是皮肤微生物组中研究较少的一个组成部分,需要研究噬菌体以增加对细菌群落的调节和稳定性的了解。葡萄球菌属是皮肤最丰富的定植菌之一,与健康和疾病都有关,但感染皮肤最丰富物种的噬菌体研究较少。在这里,我们报告了从人体皮肤拭子中分离和测序的 40 种噬菌体,这些噬菌体感染凝固酶阴性葡萄球菌(CoNS)物种,扩展了我们对噬菌体多样性的认识。鉴定出六个噬菌体的遗传簇,其中两个簇代表新型噬菌体,我们对其中一个进行了表征并命名为 Alsa 噬菌体。我们发现 Alsa 噬菌体能够感染 S. hominis 的能力更强,而其他 CoNS 物种则不然,这表明存在未被描述的噬菌体感染障碍,这在一定程度上可能是由于大量的限制修饰系统。这里扩展的葡萄球菌噬菌体多样性使进一步的研究能够确定它们对皮肤微生物组研究的贡献,以及限制噬菌体感染的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feb5/11001980/86aab2c9d86d/41598_2024_59065_Fig1_HTML.jpg

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