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Social Influences on Prevotella and the Gut Microbiome of Young Monkeys
Wellington Z Amaral1, Gabriele R Lubach, Alexandra Proctor
1From the Harlow Center for Biological Psychology (Amaral, Lubach, Coe), University of Wisconsin, Madison, Wisconsin; and the Department of Veterinary Microbiology and Veterinary Medicine (Proctor, Lyte, Phillips), Iowa State University, Ames, Iowa.
Insights
Weaning young monkeys into social groups altered their gut bacteria, leading to microbial convergence. Prevotella abundance strongly influenced these changes and associated metabolic pathways.
Area of Science:
- Primate Gut Microbiome Research
- Microbial Ecology
- Developmental Biology
Background:
- The gut microbiome is crucial for host health and is influenced by developmental stages.
- Weaning and social integration are key periods impacting the gut microbiome.
- Prevotella is a significant bacterial taxon in both human and nonhuman primate gut ecosystems.
Purpose of the Study:
- To investigate the impact of social grouping during weaning on the gut bacterial profiles of young rhesus monkeys.
- To specifically examine the role of Prevotella in these microbial shifts.
- To understand how these changes might affect metabolic functions.
Main Methods:
- Fecal samples were collected from 63 rhesus monkeys housed in social groups.
- 16S ribosomal RNA gene sequencing was performed using Illumina MiSeq and 454-amplicon pyrosequencing.
- Microbial community structure, diversity, and Prevotella abundance were analyzed.
Main Results:
- Social grouping of weaned infants resulted in significant microbial convergence within 2 weeks.
- Gut microbial community structure became more similar within peer groups than across groups.
- Prevotella was the predominant taxon, and its abundance correlated with microbial richness, profiles, and metabolic pathways.
Conclusions:
- Group formation during weaning significantly alters the rhesus monkey gut microbiota.
- Prevotella abundance is a key factor associated with these microbial shifts and potential metabolic changes.
- Changes in gut microbiome structure may lead to differences in host metabolic and physiological functioning.
Objective:
Our aim was to evaluate the bacterial profiles of young monkeys as they were weaned into peer groups with a particular focus on Prevotella, an important taxon in both human and nonhuman primates. The weaning of infants and increased social contact with peers is a developmental stage that is likely to affect the gut microbiome.
Methods:
Gut bacteria were assessed in 63 rhesus monkeys living in social groups comprised of 4 to 7 individuals. Two groups were assessed prospectively on day 1 and 2 weeks after rehousing away from the mother and group formation. Ten additional groups were assessed at 2 weeks after group establishment. Fecal genomic DNA was extracted and 16S ribosomal RNA sequenced by Illumina MiSeq (5 social groups) and 454-amplicon pyrosequencing (7 social groups).
Results:
Combining weaned infants into small social groups led to a microbial convergence by 2 weeks (p < .001). Diversity analyses indicated more similar community structure within peer groups than across groups (p < .01). Prevotella was the predominant taxon, and its abundance differed markedly across individuals. Indices of richness, microbial profiles, and less abundant taxa were all associated with the Prevotella levels. Functional Kyoto Encyclopedia of Genes and Genomes analyses suggested corresponding shifts in metabolic pathways.
Conclusions:
The formation of small groups of young rhesus monkeys was associated with significant shifts in the gut microbiota. The profiles were closely associated with the abundance of Prevotella, a predominant taxon in the rhesus monkey gut. Changes in the structure of the gut microbiome are likely to induce differences in metabolic and physiologic functioning.
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