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Updated: Apr 27, 2026

Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Diarrhea in young children from low-income countries leads to large-scale alterations in intestinal microbiota
Insights
Diarrheal diseases in young children are linked to specific gut bacteria, including known and novel pathogens. Understanding these microbial shifts is crucial for developing effective treatments and improving child health outcomes globally.
Area of Science:
- Microbiome research
- Pediatric infectious diseases
- Global health
Background:
- Diarrheal diseases are a major cause of illness and death in young children in developing nations.
- There's a critical need to identify new diarrheal pathogens and understand how gut microbiota changes contribute to severe disease.
Purpose of the Study:
- To compare fecal microbiota composition in children with moderate to severe diarrhea (MSD) versus healthy controls.
- To identify specific bacterial taxa associated with MSD in young children.
Main Methods:
- High-throughput 16S rRNA gene sequencing was used to analyze fecal samples.
- The study involved 992 children under five years old from Africa and Southeast Asia.
Main Results:
- Known pathogens (e.g., Escherichia/Shigella) and previously unrecognized bacteria (e.g., Granulicatella, Streptococcus mitis/pneumoniae) were associated with MSD.
- Distinct correlations were observed between anaerobic and facultative anaerobic bacterial groups.
- Microbiota composition varied by age and location, with shifts in Prevotella and Escherichia/Shigella levels.
Conclusions:
- The study enhances understanding of how gut microbiota contributes to diarrhea pathogenicity in young children.
- Findings highlight the role of specific bacteria in severe diarrhea and necessitate further validation.
Background:
Diarrheal diseases continue to contribute significantly to morbidity and mortality in infants and young children in developing countries. There is an urgent need to better understand the contributions of novel, potentially uncultured, diarrheal pathogens to severe diarrheal disease, as well as distortions in normal gut microbiota composition that might facilitate severe disease.
Results:
We use high throughput 16S rRNA gene sequencing to compare fecal microbiota composition in children under five years of age who have been diagnosed with moderate to severe diarrhea (MSD) with the microbiota from diarrhea-free controls. Our study includes 992 children from four low-income countries in West and East Africa, and Southeast Asia. Known pathogens, as well as bacteria currently not considered as important diarrhea-causing pathogens, are positively associated with MSD, and these include Escherichia/Shigella, and Granulicatella species, and Streptococcus mitis/pneumoniae groups. In both cases and controls, there tend to be distinct negative correlations between facultative anaerobic lineages and obligate anaerobic lineages. Overall genus-level microbiota composition exhibit a shift in controls from low to high levels of Prevotella and in MSD cases from high to low levels of Escherichia/Shigella in younger versus older children; however, there was significant variation among many genera by both site and age.
Conclusions:
Our findings expand the current understanding of microbiota-associated diarrhea pathogenicity in young children from developing countries. Our findings are necessarily based on correlative analyses and must be further validated through epidemiological and molecular techniques.
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