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Transkingdom Analysis of the Female Reproductive Tract Reveals Bacteriophages Form Communities

Overview
Journal Viruses
Publisher MDPI
Specialty Microbiology
Date 2022 Feb 26
PMID 35216023
Authors
Affiliations
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Abstract

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.

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References
1.
White D, Keppel C, Schneider S, Reese T, Coder J, Payton J . Latent herpesvirus infection arms NK cells. Blood. 2010; 115(22):4377-83. PMC: 2881492. DOI: 10.1182/blood-2009-09-245464. View

2.
Kilic A, Pavlova S, Alpay S, Kilic S, Tao L . Comparative study of vaginal Lactobacillus phages isolated from women in the United States and Turkey: prevalence, morphology, host range, and DNA homology. Clin Diagn Lab Immunol. 2001; 8(1):31-9. PMC: 96007. DOI: 10.1128/CDLI.8.1.31-39.2001. View

3.
Brotman R, Ravel J, Cone R, Zenilman J . Rapid fluctuation of the vaginal microbiota measured by Gram stain analysis. Sex Transm Infect. 2010; 86(4):297-302. PMC: 3534767. DOI: 10.1136/sti.2009.040592. View

4.
Anahtar M, Byrne E, Doherty K, Bowman B, Yamamoto H, Soumillon M . Cervicovaginal bacteria are a major modulator of host inflammatory responses in the female genital tract. Immunity. 2015; 42(5):965-76. PMC: 4461369. DOI: 10.1016/j.immuni.2015.04.019. View

5.
Brooks J, Buck G, Chen G, Diao L, Edwards D, Fettweis J . Changes in vaginal community state types reflect major shifts in the microbiome. Microb Ecol Health Dis. 2017; 28(1):1303265. PMC: 5443090. DOI: 10.1080/16512235.2017.1303265. View