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Adaptive Evolution within Gut Microbiomes of Healthy People

  • Shijie Zhao
  • , Tami D. Lieberman
  • , Mathilde Poyet
  • , Kathryn M. Kauffman
  • , Sean M. Gibbons
  • , Mathieu Groussin
  • , Ramnik J. Xavier
  • , Eric J. Alm
  • Massachusetts Institute of Technology
  • The Broad Institute of MIT and Harvard
  • Institute for Systems Biology
  • University of Washington
  • Massachusetts General Hospital

Research output: Contribution to journalArticlepeer-review

303 Scopus citations

Abstract

Natural selection shapes bacterial evolution in all environments. However, the extent to which commensal bacteria diversify and adapt within the human gut remains unclear. Here, we combine culture-based population genomics and metagenomics to investigate the within-microbiome evolution of Bacteroides fragilis. We find that intra-individual B. fragilis populations contain substantial de novo nucleotide and mobile element diversity, preserving years of within-person history. This history reveals multiple signatures of within-person adaptation, including parallel evolution in sixteen genes. Many of these genes are implicated in cell-envelope biosynthesis and polysaccharide utilization. Tracking evolutionary trajectories using near-daily metagenomic sampling, we find evidence for years-long coexistence in one subject despite adaptive dynamics. We used public metagenomes to investigate one adaptive mutation common in our cohort and found that it emerges frequently in Western, but not Chinese, microbiomes. Collectively, these results demonstrate that B. fragilis adapts within individual microbiomes, pointing to factors that promote long-term gut colonization. Bacteria acquire adaptive mutations during infections, but the role of mutations in the gut microbiome is unknown. Zhao and Lieberman et al. report that Bacteroides fragilis adapts via mutation within healthy people. They discover genes important to survival in humans and detail dynamics within individuals and across populations.

Original languageEnglish
Pages (from-to)656-667.e8
JournalCell Host and Microbe
Volume25
Issue number5
DOIs
StatePublished - May 8 2019

Keywords

  • Bacteroides
  • adaptive evolution
  • de novo mutation
  • horizontal gene transfer
  • human microbiome
  • metagenomics
  • microbial evolution
  • microbial genomics
  • whole-genome sequencing

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