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Updated: Mar 18, 2026

Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Genomic Microbial Epidemiology Is Needed to Comprehend the Global Problem of Antibiotic Resistance and to Improve
Ethan R Wyrsch1, Piklu Roy Chowdhury2, Toni A Chapman3
1The ithree Institute, University of Technology Sydney, Sydney NSW, Australia.
Abstract:
Contamination of waste effluent from hospitals and intensive food animal production with antimicrobial residues is an immense global problem. Antimicrobial residues exert selection pressures that influence the acquisition of antimicrobial resistance and virulence genes in diverse microbial populations. Despite these concerns there is only a limited understanding of how antimicrobial residues contribute to the global problem of antimicrobial resistance. Furthermore, rapid detection of emerging bacterial pathogens and strains with resistance to more than one antibiotic class remains a challenge. A comprehensive, sequence-based genomic epidemiological surveillance model that captures essential microbial metadata is needed, both to improve surveillance for antimicrobial resistance and to monitor pathogen evolution. Escherichia coli is an important pathogen causing both intestinal [intestinal pathogenic E. coli (IPEC)] and extraintestinal [extraintestinal pathogenic E. coli (ExPEC)] disease in humans and food animals. ExPEC are the most frequently isolated Gram negative pathogen affecting human health, linked to food production practices and are often resistant to multiple antibiotics. Cattle are a known reservoir of IPEC but they are not recognized as a source of ExPEC that impact human or animal health. In contrast, poultry are a recognized source of multiple antibiotic resistant ExPEC, while swine have received comparatively less attention in this regard. Here, we review what is known about ExPEC in swine and how pig production contributes to the problem of antibiotic resistance.
Insights
Antimicrobial residues in waste effluent from farms contribute to antibiotic resistance. This review focuses on extraintestinal pathogenic Escherichia coli (ExPEC) in swine, a significant but understudied reservoir.
Area of Science:
- Environmental microbiology
- Genomic epidemiology
- Antimicrobial resistance
Background:
- Hospital and agricultural waste effluent contaminates environments with antimicrobial residues.
- Antimicrobial residues drive the selection and acquisition of antimicrobial resistance and virulence genes in microbial populations.
- Limited understanding exists on the contribution of antimicrobial residues to the global antimicrobial resistance crisis.
Purpose of the Study:
- To review the current knowledge on extraintestinal pathogenic Escherichia coli (ExPEC) in swine.
- To investigate the role of swine production in the development and spread of antibiotic resistance.
- To highlight the need for genomic epidemiological surveillance models for monitoring pathogen evolution and antimicrobial resistance.
Main Methods:
- Literature review of existing studies on ExPEC in swine.
- Analysis of the contribution of swine production to antimicrobial resistance.
- Discussion of genomic epidemiological surveillance strategies.
Main Results:
- Swine are a reservoir for intestinal pathogenic E. coli (IPEC).
- Swine are increasingly recognized as a potential source of multi-antibiotic resistant ExPEC impacting human health.
- Poultry are a known source of multi-drug resistant ExPEC, while swine require further investigation.
Conclusions:
- Swine production practices may contribute significantly to the burden of antibiotic resistance.
- Enhanced surveillance of ExPEC in swine is crucial for public health.
- Sequence-based genomic epidemiology is essential for effective antimicrobial resistance monitoring and pathogen evolution studies.
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