Diet and gut microbiome enterotype are associated at the population level in African buffalo

Диета и энтеротип кишечного микробиома ассоциированы на популяционном уровне у африканских буйволов
Thomas J. Sharpton, Keaton Stagaman, Anna E. Jolles, Brianna R. Beechler, Claire E. Couch, Robert S. Spaan, Henri J. Combrink
2021-04-15

African buffaloRuminococcaceae-UCG-005Solibacillusdiet-driven enterotype plasticitygut microbiome enterotypes
Studies in humans and laboratory animals link stable gut microbiome "enterotypes" with long-term diet and host health. Understanding how this paradigm manifests in wild herbivores could provide a mechanistic explanation of the relationships between microbiome dynamics, changes in dietary resources, and outcomes for host health. We identify two putative enterotypes in the African buffalo gut microbiome. The enterotype prevalent under resource-abundant dietary regimes, regardless of environmental conditions, has high richness, low between- and within-host beta diversity, and enrichment of genus Ruminococcaceae-UCG-005. The second enterotype, prevalent under restricted dietary conditions, has reduced richness, elevated beta diversity, and enrichment of genus Solibacillus. Population-level gamma diversity is maintained during resource restriction by increased beta diversity between individuals, suggesting a mechanism for population-level microbiome resilience. We identify three pathogens associated with microbiome variation depending on host diet, indicating that nutritional background may impact microbiome-pathogen dynamics. Overall, this study reveals diet-driven enterotype plasticity, illustrates ecological processes that maintain microbiome diversity, and identifies potential associations between diet, enterotype, and disease.
1
Population-level (gamma) diversity is maintained during resource restriction by increased between-individual (beta) diversity, suggesting a mechanism for microbiome resilience.
2
The enterotype prevalent under resource-abundant diets has high richness, low within- and between-host beta diversity, and enrichment of genus Ruminococcaceae-UCG-005.
3
The enterotype prevalent under resource-restricted diets has reduced richness, elevated beta diversity, and enrichment of genus Solibacillus.
4
The study demonstrates diet-driven enterotype plasticity and links ecological processes to maintenance of microbiome diversity and potential disease associations.
5
Three pathogens were found to be associated with microbiome variation in a diet-dependent manner, indicating nutritional background can modulate microbiome–pathogen dynamics.
6
Two putative gut microbiome enterotypes were identified in African buffalo at the population level.

Gut microbiome enterotypes in African buffalo (Syncerus caffer) population

Associations between diet/resource regime and enterotype composition, diversity patterns (alpha/beta/gamma), enterotype-specific taxa enrichment, and linked microbiome–pathogen relationships at the population level

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2021-04-15
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Authors
Thomas J. Sharpton
Keaton Stagaman
Anna E. Jolles
Brianna R. Beechler
Claire E. Couch
Robert S. Spaan
Henri J. Combrink
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