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  1. Home
  2. Gut Prevotella Stercorea Associates With Protection Against Infection In Rural African Children.
  1. Home
  2. Gut Prevotella Stercorea Associates With Protection Against Infection In Rural African Children.

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Gut Prevotella stercorea associates with protection against infection in rural African children.

Ogochukwu Ofordile1, Dora I A Pereira2, Andrew M Prentice3

  • 1Medical Research Council Unit The Gambia at the London School of Hygiene & Tropical Medicine, Banjul, The Gambia. ofordile@gmail.com.

Nature Communications
|December 12, 2025

View abstract on PubMed

Summary
This summary is machine-generated.

A specific gut bacteria, Prevotella stercorea, was linked to fewer infections in Gambian children. This Prevotella-dominated gut microbiome may offer crucial immune protection in early life.

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Area of Science:

  • Microbiome research
  • Pediatric infectious diseases
  • Global child health

Background:

  • Understanding early-life gut microbiome's role in immune protection is crucial, especially in high-infection-burden populations.
  • Iron deficiency anemia is a significant health concern in young children globally.

Purpose of the Study:

  • To investigate the relationship between gut microbiome composition and infection incidence in young Gambian children.
  • To analyze the impact of iron supplementation on gut microbiome and illness outcomes.

Main Methods:

  • Longitudinal analysis of stool microbiome (16S rRNA sequencing) and illness data from 633 children (7-37 months).
  • Data collected at three timepoints during a randomized iron supplementation trial.

Main Results:

  • Children infection-free had higher relative abundance of Prevotella stercorea.
  • Escherichia coli and opportunistic pathogens were enriched in infected children.
  • Higher P. stercorea abundance inversely correlated with infection frequency and duration, particularly in 1-2 year olds.

Conclusions:

  • A Prevotella-dominated enterotype is associated with reduced infection risk in young children.
  • Findings suggest potential for microbiota-targeted interventions to improve child health and vaccine responsiveness.