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Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Benzalkonium tolerance genes and outcome in Listeria monocytogenes meningitis
P H C Kremer1, J A Lees2, M M Koopmans1
1Department of Neurology, Centre for Infection and Immunity Amsterdam (CINIMA), Academic Medical Centre, University of Amsterdam, Amsterdam, The Netherlands.
Objectives:
Listeria monocytogenes is a food-borne pathogen that can cause meningitis. The listerial genotype ST6 has been linked to increasing rates of unfavourable outcome over time. We investigated listerial genetic variation and the relation with clinical outcome in meningitis.
Methods:
We sequenced 96 isolates from adults with listerial meningitis included in two prospective nationwide cohort studies by whole genome sequencing, and evaluated associations between bacterial genetic variation and clinical outcome. We validated these results by screening listerial genotypes of 445 cerebrospinal fluid and blood isolates from patients over a 30-year period from the Dutch national surveillance cohort.
Results:
We identified a bacteriophage, phiLMST6 co-occurring with a novel plasmid, pLMST6, in ST6 isolates to be associated with unfavourable outcome in patients (p 2.83e-05). The plasmid carries a benzalkonium chloride tolerance gene, emrC, conferring decreased susceptibility to disinfectants used in the food-processing industry. Isolates harbouring emrC were growth inhibited at higher levels of benzalkonium chloride (median 60 mg/L versus 15 mg/L; p <0.001), and had higher MICs for amoxicillin and gentamicin compared with isolates without emrC (both p <0.001). Transformation of pLMST6 into naive strains led to benzalkonium chloride tolerance and higher MICs for gentamicin.
Conclusions:
These results show that a novel plasmid, carrying the efflux transporter emrC, is associated with increased incidence of ST6 listerial meningitis in the Netherlands. Suggesting increased disease severity, our findings warrant consideration of disinfectants used in the food-processing industry that select for resistance mechanisms and may, inadvertently, lead to increased risk of poor disease outcome.
Insights
A novel plasmid in Listeria monocytogenes ST6 strains is linked to severe meningitis and disinfectant resistance. This finding highlights how food industry disinfectants may inadvertently increase disease severity and patient risk.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Listeria monocytogenes is a foodborne pathogen causing meningitis.
- The ST6 genotype of Listeria monocytogenes is associated with increased unfavorable outcomes.
- Understanding genetic variations in Listeria monocytogenes is crucial for predicting clinical outcomes.
Purpose of the Study:
- To investigate the genetic variations in Listeria monocytogenes.
- To determine the relationship between bacterial genetic variation and clinical outcomes in meningitis patients.
- To identify specific genetic factors contributing to increased disease severity.
Main Methods:
- Whole genome sequencing of 96 Listeria monocytogenes isolates from adult meningitis patients.
- Evaluation of associations between bacterial genetic variation and clinical outcomes.
- Validation using 445 isolates from a 30-year Dutch national surveillance cohort.
Main Results:
- A novel plasmid, pLMST6, co-occurring with bacteriophage phiLMST6 in ST6 isolates, was associated with unfavorable outcomes (p=2.83e-05).
- The pLMST6 plasmid carries the emrC gene, conferring tolerance to benzalkonium chloride and decreased susceptibility to disinfectants.
- Isolates with emrC showed higher tolerance to benzalkonium chloride and increased Minimum Inhibitory Concentrations (MICs) for amoxicillin and gentamicin.
Conclusions:
- A novel plasmid carrying the emrC efflux transporter is linked to the increased incidence of ST6 Listeria monocytogenes meningitis in the Netherlands.
- The emrC gene may contribute to increased disease severity and poorer patient outcomes.
- Food industry disinfectant use may inadvertently select for resistance mechanisms, increasing the risk of severe Listeria infections.
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