Identification of shared bacterial strains in the vaginal microbiota of related and unrelated reproductive-age mothers and daughters using genome-resolved metagenomics

Author:

France Michael T.,Brown Sarah E.,Rompalo Anne M.,Brotman Rebecca M.ORCID,Ravel JacquesORCID

Abstract

It has been suggested that the human microbiome might be vertically transmitted from mother to offspring and that early colonizers may play a critical role in development of the immune system. Studies have shown limited support for the vertical transmission of the intestinal microbiota but the derivation of the vaginal microbiota remains largely unknown. Although the vaginal microbiota of children and reproductive age women differ in composition, the vaginal microbiota could be vertically transmitted. To determine whether there was any support for this hypothesis, we examined the vaginal microbiota of daughter-mother pairs from the Baltimore metropolitan area (ages 14–27, 32–51; n = 39). We assessed whether the daughter’s microbiota was similar in composition to their mother’s using metataxonomics. Permutation tests revealed that while some pairs did have similar vaginal microbiota, the degree of similarity did not exceed that expected by chance. Genome-resolved metagenomics was used to identify shared bacterial strains in a subset of the families (n = 22). We found a small number of bacterial strains that were shared between mother-daughter pairs but identified more shared strains between individuals from different families, indicating that vaginal bacteria may display biogeographic patterns. Earlier-in-life studies are needed to demonstrate vertical transmission of the vaginal microbiota.

Funder

National Institute of Nursing Research

National Institute of Allergy and Infectious Diseases

Eunice Kennedy Shriver National Institute of Child Health and Human Development

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference88 articles.

1. Structure, function and diversity of the healthy human microbiome;Human Microbiome Project C;Nature,2012

2. The human microbiome: at the interface of health and disease;I Cho;Nat Rev Genet,2012

3. Human Microbiome in Health and Disease;KJ Pflughoeft;Annual Review of Pathology: Mechanisms of Disease: Annual Reviews,2012

4. The Human Microbiome and Child Growth—First 1000 Days and Beyond;RC Robertson;Trends Microbiol,2019

5. The human neonatal gut microbiome: a brief review;EC Gritz;Front Pediatr,2015

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