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Updated: Apr 8, 2026

Applying Advanced In Vitro Culturing Technology to Study the Human Gut Microbiota
Published on: February 15, 2019
Linear growth faltering in infants is associated with Acidaminococcus sp. and community-level changes in the gut
Ethan K Gough1, David A Stephens2, Erica E M Moodie1
1Department of Epidemiology, Biostatistics and Occupational Health, McGill University, Montreal, H3A 1A2, QC Canada.
Insights
Childhood stunting is linked to gut microbiota changes. Reduced diversity and increased Acidaminococcus sp. abundance are associated with poor linear growth in children, highlighting the gut microbiome
Area of Science:
- Microbiome research
- Pediatric nutrition
- Global child health
Background:
- Chronic malnutrition (stunting) affects one-third of children in developing nations, leading to severe health and developmental issues.
- Current interventions for stunting have limited efficacy, and its underlying causes remain largely unknown.
- The gut microbiota's influence on weight is recognized, but its specific role in childhood stunting is unexplored.
Purpose of the Study:
- To investigate the association between gut microbiota composition and linear growth in children.
- To identify specific bacterial genera linked to stunting severity and future growth deficits.
Main Methods:
- Secondary analysis of twin cohort data from Malawi and Bangladesh.
- Utilized graphical lasso for microbial covariance network modeling and network analysis to identify stunting-associated genera.
- Employed between-within twin regression models for longitudinal analysis of microbial associations with linear growth.
Main Results:
- Stunting severity correlated with reduced gut microbiota diversity and increased network density.
- A higher relative abundance of Acidaminococcus sp. was significantly associated with future linear growth deficits.
- Community-wide alterations in the gut microbiota are linked to length growth in children.
Conclusions:
- Childhood linear growth is associated with specific changes in the gut microbiota, including the abundance of Acidaminococcus sp.
- These findings suggest a potential role for the gut microbiome in the etiology of childhood stunting.
- Further research with larger cohorts is necessary to validate these results and elucidate the underlying mechanisms.
Background:
Chronic malnutrition, termed stunting, is defined as suboptimal linear growth, affects one third of children in developing countries, and leads to increased mortality and poor developmental outcomes. The causes of childhood stunting are unknown, and strategies to improve growth and related outcomes in children have only had modest impacts. Recent studies have shown that the ecosystem of microbes in the human gut, termed the microbiota, can induce changes in weight. However, the specific changes in the gut microbiota that contribute to growth remain unknown, and no studies have investigated the gut microbiota as a determinant of chronic malnutrition.
Results:
We performed secondary analyses of data from two well-characterized twin cohorts of children from Malawi and Bangladesh to identify bacterial genera associated with linear growth. In a case-control analysis, we used the graphical lasso to estimate covariance network models of gut microbial interactions from relative genus abundances and used network analysis methods to select genera associated with stunting severity. In longitudinal analyses, we determined associations between these selected microbes and linear growth using between-within twin regression models to adjust for confounding and introduce temporality. Reduced microbiota diversity and increased covariance network density were associated with stunting severity, while increased relative abundance of Acidaminococcus sp. was associated with future linear growth deficits.
Conclusions:
We show that length growth in children is associated with community-wide changes in the gut microbiota and with the abundance of the bacterial genus, Acidaminococcus. Larger cohorts are needed to confirm these findings and to clarify the mechanisms involved.
Related Concept Videos
Development of Human Microbiota
Development of the Oral Microbiota
Microbiota of the Stomach and Small Intestine
Microbiota of the Large Intestine
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Introduction to the Human Microbiota

