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Updated: Oct 23, 2025

Recapitulating Suckling-to-Weaning Transition In Vitro using Fetal Intestinal Organoids
Published on: November 15, 2019
Deterministic transition of enterotypes shapes the infant gut microbiome at an early age
Liwen Xiao1,2, Jinfeng Wang3, Jiayong Zheng4
1Computational Genomics Laboratory, Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing, 100101, China.
Insights
The infant gut microbiota undergoes a predictable transition from early-stage Firmicutes/Bifidobacterium dominance to a more diverse Bacteroides/Prevotella-driven community, impacting health and development.
Area of Science:
- Microbiome research
- Human development
- Ecology
Background:
- The infant gut microbiota is crucial for development.
- Understanding its succession aids in correlating infant health with microbiota maturation.
Purpose of the Study:
- To elucidate infant gut microbiota characteristics and alterations.
- To understand the link between infant health and microbiota development.
Main Methods:
- Analysis of 13,776 fecal samples from 1956 infants (1-3 years) across 17 countries.
- Enterotype and ecological modeling of gut microbiota.
- Integration of clinical data (n=2287) for developmental pattern outcomes.
Main Results:
- Early infant microbiota dominated by Firmicutes and Bifidobacterium show unstable structure and low maturation.
- Later stages feature Bacteroides and Prevotella, with higher diversity and community connections.
- A deterministic, geography-related pattern of gut microbiota transition was observed.
- Specific metabolic pathway shifts accompany microbiota maturation.
Conclusions:
- Large-scale enterotype analysis reveals infant gut microbiota colonization and transition patterns.
- An ecological model predicts enterotype transitions, demonstrating a deterministic and predictable developmental trajectory.
Background:
The succession of the gut microbiota during the first few years plays a vital role in human development. We elucidate the characteristics and alternations of the infant gut microbiota to better understand the correlation between infant health and microbiota maturation.
Results:
We collect 13,776 fecal samples or datasets from 1956 infants between 1 and 3 years of age, based on multi-population cohorts covering 17 countries. The characteristics of the gut microbiota are analyzed based on enterotype and an ecological model. Clinical information (n = 2287) is integrated to understand outcomes of different developmental patterns. Infants whose gut microbiota are dominated by Firmicutes and Bifidobacterium exhibit typical characteristics of early developmental stages, such as unstable community structure and low microbiome maturation, while those driven by Bacteroides and Prevotella are characterized by higher diversity and stronger connections in the gut microbial community. We further reveal a geography-related pattern in global populations. Through ecological modeling and functional analysis, we demonstrate that the transition of the gut microbiota from infants towards adults follows a deterministic pattern; as infants grow up, the dominance of Firmicutes and Bifidobacterium is replaced by that of Bacteroides and Prevotella, along with shifts in specific metabolic pathways.
Conclusions:
By leveraging the extremely large datasets and enterotype-based microbiome analysis, we decipher the colonization and transition of the gut microbiota in infants from a new perspective. We further introduce an ecological model to estimate the tendency of enterotype transitions, and demonstrated that the transition of infant gut microbiota was deterministic and predictable.
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