Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, NY 14642, USA.
Department of Biostatistics and Computational Biology, University of Rochester Medical Center, Rochester, NY 14642, USA.
Viruses. 2022 Feb 19;14(2):430. doi: 10.3390/v14020430.
The female reproductive tract (FRT) microbiome plays a vital role in maintaining vaginal health. Viruses are key regulators of other microbial ecosystems, but little is known about how the FRT viruses (virome), particularly bacteriophages that comprise the phageome, impact FRT health and dysbiosis. We hypothesize that bacterial vaginosis (BV) is associated with altered FRT phageome diversity, transkingdom interplay, and bacteriophage discriminate taxa. Here, we conducted a retrospective, longitudinal analysis of vaginal swabs collected from 54 BV-positive and 46 BV-negative South African women. Bacteriome analysis revealed samples clustered into five distinct bacterial community groups (CGs), and further, bacterial alpha diversity was significantly associated with BV. Virome analysis on a subset of baseline samples showed FRT bacteriophages clustering into novel viral state types (VSTs), a viral community clustering system based on virome composition and abundance. Distinct BV bacteriophage signatures included increased alpha diversity along with discriminant , and bacteriophages. Bacteriophage-bacteria transkingdom associations were also identified between and viruses and BV-associated bacteria, providing key insights for future studies elucidating the transkingdom interactions driving BV-associated microbiome perturbations. In this cohort, bacteriophage-bacterial associations suggest complex interactions, which may play a role in the establishment and maintenance of BV.
女性生殖道(FRT)微生物组在维持阴道健康方面起着至关重要的作用。病毒是其他微生物生态系统的关键调节剂,但人们对 FRT 病毒(病毒组),特别是构成噬菌体组的噬菌体如何影响 FRT 健康和失调知之甚少。我们假设细菌性阴道病(BV)与改变的 FRT 噬菌体多样性、跨生物界相互作用和噬菌体鉴别分类群有关。在这里,我们对 54 名 BV 阳性和 46 名 BV 阴性南非女性的阴道拭子进行了回顾性、纵向分析。细菌组分析显示,样本聚类为五个不同的细菌群落组(CG),此外,细菌α多样性与 BV 显著相关。在一组基线样本的病毒组分析中,FRT 噬菌体聚类为新的病毒状态类型(VST),这是一种基于病毒组组成和丰度的病毒群落聚类系统。独特的 BV 噬菌体特征包括α多样性增加以及鉴别性和噬菌体。还确定了噬菌体-细菌跨生物界的关联,这些关联存在于和病毒与 BV 相关细菌之间,为未来阐明驱动 BV 相关微生物组扰动的跨生物界相互作用的研究提供了关键见解。在该队列中,噬菌体-细菌的关联表明存在复杂的相互作用,这可能在 BV 的建立和维持中发挥作用。