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Updated: Mar 15, 2026

Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Developmental dynamics of the preterm infant gut microbiota and antibiotic resistome
Molly K Gibson1, Bin Wang1,2, Sara Ahmadi1,2
1Center for Genome Sciences and Systems Biology, Washington University School of Medicine, St Louis, Missouri, USA.
Insights
Antibiotic use in preterm infants significantly alters gut microbiota, reducing species richness. Specific antibiotic resistance genes and bacterial species can predict these changes, highlighting the need to understand collateral microbiome impacts.
Area of Science:
- Microbiology
- Neonatal Research
- Genomics
Background:
- Preterm infant gut microbiota development is critical.
- Antibiotic therapy is common in preterm infants, impacting gut microbiota.
- Understanding these impacts is a research priority.
Purpose of the Study:
- To investigate the effects of common antibiotics on preterm infant gut microbiota development.
- To identify predictors of antibiotic-induced changes in microbiota.
- To characterize the development of antibiotic resistance genes (ARGs) in the preterm gut.
Main Methods:
- Analysis of 401 stool samples from 84 preterm infants.
- Deep shotgun sequencing of fecal metagenomes.
- Functional selection of antibiotic resistance from metagenomic libraries.
Main Results:
- Meropenem, cefotaxime, and ticarcillin-clavulanate reduced species richness.
- Vancomycin and gentamicin effects were predictable by specific bacteria and ARGs.
- 79% of 794 identified ARGs were newly classified.
- Multidrug-resistant genera (Escherichia, Klebsiella, Enterobacter) dominated.
- Antibiotic treatments caused collateral enrichment of ARGs.
Conclusions:
- Antibiotic interventions profoundly shape preterm infant gut microbiota and resistome.
- Predictive markers for microbiota changes exist.
- Novel ARGs are prevalent, and collateral microbiome impacts are widespread.
Abstract:
Development of the preterm infant gut microbiota is emerging as a critical research priority(1). Since preterm infants almost universally receive early and often extended antibiotic therapy(2), it is important to understand how these interventions alter gut microbiota development(3-6). Analysis of 401 stools from 84 longitudinally sampled preterm infants demonstrates that meropenem, cefotaxime and ticarcillin-clavulanate are associated with significantly reduced species richness. In contrast, vancomycin and gentamicin, the antibiotics most commonly administered to preterm infants, have non-uniform effects on species richness, but these can be predicted with 85% accuracy based on the relative abundance of only two bacterial species and two antibiotic resistance (AR) genes at treatment initiation. To investigate resistome development, we functionally selected resistance to 16 antibiotics from 21 faecal metagenomic expression libraries. Of the 794 AR genes identified, 79% had not previously been classified as AR genes. Combined with deep shotgun sequencing of all stools, we find that multidrug-resistant members of the genera Escherichia, Klebsiella and Enterobacter, genera commonly associated with nosocomial infections, dominate the preterm infant gut microbiota. AR genes that are enriched following specific antibiotic treatments are generally unique to the specific treatment and are highly correlated with the abundance of a single species. The most notable exceptions include ticarcillin-clavulanate and ampicillin, both of which enrich for a large number of overlapping AR genes, and are correlated with Klebsiella pneumoniae. We find that all antibiotic treatments are associated with widespread collateral microbiome impact by enrichment of AR genes that have no known activity against the specific antibiotic driver.
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