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Contribution of neutral processes to the assembly of gut microbial communities in the zebrafish over host development

The ISME Journal · 2015 · Vol. 10(3) · pp. 655–664
Adam R. BurnsW. Zac StephensKeaton StagamanSandi WongJohn F. RawlsKaren GuilleminBrendan J. M. Bohannan

Abstract

Despite their importance to host health and development, the communities of microorganisms associated with humans and other animals are characterized by a large degree of unexplained variation across individual hosts. The processes that drive such inter-individual variation are not well understood. To address this, we surveyed the microbial communities associated with the intestine of the zebrafish, Danio rerio, over developmental time. We compared our observations of community composition and distribution across hosts with that predicted by a neutral assembly model, which assumes that community assembly is driven solely by chance and dispersal. We found that as hosts develop from larvae to adults, the fit of the model to observed microbial distributions decreases, suggesting that the relative importance of non-neutral processes, such as microbe-microbe interactions, active dispersal, or selection by the host, increases as hosts mature. We also observed that taxa which depart in their distributions from the neutral prediction form ecologically distinct sub-groups, which are phylogenetically clustered with respect to the full metacommunity. These results demonstrate that neutral processes are sufficient to generate substantial variation in microbiota composition across individual hosts, and suggest that potentially unique or important taxa may be identified by their divergence from neutral distributions.

Gut microbiota and healthBiologyMetacommunityBiological dispersalDanioHost (biology)Neutral theory of molecular evolutionEcologyZebrafishBeta diversityTaxon

MeSH terms

Gastrointestinal MicrobiomeAnimalsBacteriaHumansIntestinesLarvaPhylogenyZebrafishModels, Animal

Funding

  • National Institutes of Health
  • University of Illinois at Urbana-Champaign
  • National Institute of General Medical Sciences
Citations
948
FWCI
14.76
field-weighted impact
References
65
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99%
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References
The gut microbiota — masters of host development and physiology
Nature Reviews Microbiology · 2013 · 3,630 citations
Development of the Human Infant Intestinal Microbiota
PLoS Biology · 2007 · 2,829 citations
Evidence for a core gut microbiota in the zebrafish
The ISME Journal · 2011 · 1,154 citations
Disentangling the importance of ecological niches from stochastic processes across scales
Philosophical Transactions of the Royal Society B Biological Sciences · 2011 · 1,625 citations
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