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February 1, 2019Nature Communications159 citationsOpen Access

Trait-based community assembly and succession of the infant gut microbiome

JGJohn GuittarASAshley ShadeELElena Litchman

Key Points

  • To identify the trait-based mechanisms and ecological patterns driving microbial community assembly and succession in the gut during the first three years of life.
  • Analyzed curated longitudinal microbiome data from literature and public repositories for 56 infants followed over their first 3 years of life.
  • Developed and applied a novel phylogeny-based inference framework to quantify microbial functional traits across taxa.
  • Gut succession begins with a functionally variable group of taxa specialized in rapid host colonization, which later shifts toward a uniform group adapted to anoxic survival and oxygen-tolerant spore dispersal.
  • Microbial functional trait composition stabilizes after the first year of life despite ongoing taxonomic turnover, demonstrating substantial functional redundancy.

Abstract

The human gut microbiome develops over early childhood and aids in food digestion and immunomodulation, but the mechanisms driving its development remain elusive. Here we use data curated from literature and online repositories to examine trait-based patterns of gut microbiome succession in 56 infants over their first three years of life. We also develop a new phylogeny-based approach of inferring trait values that can extend readily to other microbial systems and questions. Trait-based patterns suggest that infant gut succession begins with a functionally variable cohort of taxa, adept at proliferating rapidly within hosts, which gradually matures into a more functionally uniform cohort of taxa adapted to thrive in the anoxic gut and disperse between anoxic patches as oxygen-tolerant spores. Trait-based composition stabilizes after the first year, while taxonomic turnover continues unabated, suggesting functional redundancy in the traits examined. Trait-based approaches powerfully complement taxonomy-based approaches to understanding the mechanisms of microbial community assembly and succession.

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Cite This Study

Guittar et al. (2019) studied this question.

synapsesocial.com/papers/69f5f7527108db7a61afc1d6https://doi.org/10.1038/s41467-019-08377-w
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