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Testing the Role of Multicopy Plasmids in the Evolution of Antibiotic Resistance
Published on: May 2, 2018
Intensive care unit sinks are persistently colonized with multidrug resistant bacteria and mobilizable,
Luke Diorio-Toth1, Meghan A Wallace2, Christopher W Farnsworth2
1The Edison Family Center for Genome Sciences and Systems Biology, Washington University School of Medicine , St. Louis, Missouri, USA.
Abstract:
Contamination of hospital sinks with microbial pathogens presents a serious potential threat to patients, but our understanding of sink colonization dynamics is largely based on infection outbreaks. Here, we investigate the colonization patterns of multidrug-resistant organisms (MDROs) in intensive care unit sinks and water from two hospitals in the USA and Pakistan collected over 27 months of prospective sampling. Using culture-based methods, we recovered 822 bacterial isolates representing 104 unique species and genomospecies. Genomic analyses revealed long-term colonization by Pseudomonas spp. and Serratia marcescens strains across multiple rooms. Nanopore sequencing uncovered examples of long-term persistence of resistance-conferring plasmids in unrelated hosts. These data indicate that antibiotic resistance (AR) in Pseudomonas spp. is maintained both by strain colonization and horizontal gene transfer (HGT), while HGT maintains AR within Acinetobacter spp. and Enterobacterales, independent of colonization. These results emphasize the importance of proactive, genomic-focused surveillance of built environments to mitigate MDRO spread. IMPORTANCE Hospital sinks are frequently linked to outbreaks of antibiotic-resistant bacteria. Here, we used whole-genome sequencing to track the long-term colonization patterns in intensive care unit (ICU) sinks and water from two hospitals in the USA and Pakistan collected over 27 months of prospective sampling. We analyzed 822 bacterial genomes, representing over 100 different species. We identified long-term contamination by opportunistic pathogens, as well as transient appearance of other common pathogens. We found that bacteria recovered from the ICU had more antibiotic resistance genes (ARGs) in their genomes compared to matched community spaces. We also found that many of these ARGs are harbored on mobilizable plasmids, which were found shared in the genomes of unrelated bacteria. Overall, this study provides an in-depth view of contamination patterns for common nosocomial pathogens and identifies specific targets for surveillance.
Insights
Hospital sinks harbor multidrug-resistant organisms (MDROs), with genomic analysis revealing long-term contamination and the spread of antibiotic resistance genes (ARGs) via plasmids. Proactive surveillance of built environments is crucial for mitigating MDRO spread.
Area of Science:
- Microbiology
- Genomics
- Infectious Diseases
Background:
- Hospital sinks are potential reservoirs for microbial pathogens, posing risks to patients.
- Understanding colonization dynamics of multidrug-resistant organisms (MDROs) in sinks is crucial, especially in intensive care units (ICUs).
Purpose of the Study:
- To investigate long-term colonization patterns of MDROs in ICU sinks and water.
- To analyze the mechanisms of antibiotic resistance (AR) maintenance and spread in these environments.
Main Methods:
- Prospective sampling of ICU sinks and water from two hospitals over 27 months.
- Culture-based isolation of bacterial species and whole-genome sequencing (including Nanopore sequencing).
- Genomic analysis of 822 bacterial isolates representing 104 species/genomospecies.
Main Results:
- Identified long-term colonization by *Pseudomonas* spp. and *Serratia marcescens* in ICU sinks.
- Revealed persistence of resistance-conferring plasmids in unrelated bacterial hosts.
- Found higher prevalence of antibiotic resistance genes (ARGs) in ICU-associated bacteria compared to community samples.
- Demonstrated that AR in *Pseudomonas* spp. is maintained by both strain colonization and horizontal gene transfer (HGT), while HGT independently maintains AR in *Acinetobacter* spp. and Enterobacterales.
Conclusions:
- Hospital sinks serve as persistent reservoirs for MDROs.
- Horizontal gene transfer, particularly via plasmids, plays a significant role in the spread of antibiotic resistance.
- Genomic-focused surveillance of built environments is essential for effective MDRO control in healthcare settings.
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