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Associations of physical activity with gut microbiota in pre-adolescent children
Sara Santarossa1, Alexandra R Sitarik1, Christine Cole Johnson1
1Department of Public Health Sciences, Henry Ford Health System, Michigan, USA.
Insights
Meeting physical activity (PA) recommendations in children is linked to distinct gut bacterial compositions, though not necessarily changes in diversity. Further research is needed to understand the health implications of these altered gut microbiomes.
Area of Science:
- Microbiome research
- Pediatric health
- Exercise science
Background:
- Gut microbiota plays a crucial role in overall health.
- Physical activity (PA) is essential for child development.
- Understanding the link between PA and the gut microbiome in children is important for public health.
Purpose of the Study:
- To investigate the association between meeting physical activity (PA) recommendations and gut bacterial microbiota composition in 10-year-old children.
- To determine if 60 minutes of moderate-to-vigorous PA influences gut microbial diversity and abundance.
Main Methods:
- Utilized the Block Physical Activity Screener to assess PA levels in 321 children.
- Performed 16S rRNA sequencing on stool samples to profile gut bacterial microbiota.
- Analyzed alpha and beta diversity metrics and relative abundance of taxa using statistical models.
Main Results:
- No significant association was found between meeting PA recommendations and gut microbial richness, evenness, or diversity.
- Meeting PA recommendations was significantly associated with distinct gut bacterial composition (weighted UniFrac, p=0.001).
- Higher PA was linked to increased abundance of specific bacteria, including Megamonas and Anaerovorax.
Conclusions:
- Children meeting PA recommendations exhibit altered gut microbiota composition.
- The clinical significance of these compositional changes regarding obesity and metabolic diseases remains to be determined.
Purpose:
To determine whether physical activity (PA), primarily the recommended 60 minutes of moderate-to-vigorous PA, is associated with gut bacterial microbiota in 10-year-old children.
Methods:
The Block Physical Activity Screener, which provides minutes/day PA variables, was used to determine whether the child met the PA recommendations. 16S rRNA sequencing was performed on stool samples from the children to profile the composition of their gut bacterial microbiota. Differences in alpha diversity metrics (richness, Pielou's evenness, and Faith's phylogenetic diversity) by PA were determined using linear regression, whereas beta diversity (unweighted and weighted UniFrac) relationships were assessed using PERMANOVA. Taxon relative abundance differentials were determined using DESeq2.
Results:
The analytic sample included 321 children with both PA and 16S rRNA sequencing data (mean age [SD] =10.2 [0.8] years; 54.2% male; 62.9% African American), where 189 (58.9%) met the PA recommendations. After adjusting for covariates, meeting the PA recommendations as well as minutes/day PA variables were not significantly associated with gut richness, evenness, or diversity (p ≥ 0.19). However, meeting the PA recommendations (weighted UniFrac R2 = 0.014, p = 0.001) was significantly associated with distinct gut bacterial composition. These compositional differences were partly characterized by increased abundance of Megamonas and Anaerovorax as well as specific Christensenellaceae_R-7_group taxa in children with higher PA.
Conclusion:
Children who met the recommendations of PA had altered gut microbiota compositions. Whether this translates to a reduced risk of obesity or associated metabolic diseases is still unclear.
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