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Updated: Sep 22, 2025

Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Human enterococcal isolates as reservoirs for macrolide-lincosamide-streptogramin and other resistance genes
Milena Mišić1, Branislava Kocić2,3, Aleksandra Arsović4
1Department of Microbiology, Public Health Institute Vranje, Vranje, Serbia.
Abstract:
According to recent studies, the importance of MLS (macrolide-lincosamide-streptogramin) resistance phenotypes and genes in enterococci are reflected in the fact that they represent reservoirs of MLS resistance genes. The aim of this study was to investigate distribution of MLS resistance genes and phenotypes in community- and hospital-acquired enterococcal isolates and to determine their prevalence. The MLS resistance phenotypes (cMLSb, iMLSb, M/MSb, and L/LSa) were determined in 245 enterococcal isolates were characterized using the double-disc diffusion method. Specific primers were chosen from database sequences for detection of the MLS resistance genes (ermA, ermB, ermC, msrA/B, lnuA, lnuB, and lsaA) in 60 isolates of enterococci by end-point PCR. There was no linezolid-resistant enterococcal isolate. Only one vancomycin-resistant (0.6%) isolate was found and it occurred in a community-acquired enterococcal isolate. The most frequent MLS resistance phenotype among enterococcal isolates was cMLSb (79.7% community- and 67.9% hospital-acquired). The most common identified MLS resistance genes among enterococcal isolates were lsaA (52.9% community- and 33.3% hospital-acquired) and ermB (17.6% community- and 33.3% hospital-acquired). The most prevalent MLS gene combination was lnuA + lsaA (five enterococcal isolates). The ermB gene encoded cMLSb phenotype, and it was identified in only one isolate that displayed iMLSb resistance phenotype. Based on the results obtained, we can conclude that the most frequent MLS resistance phenotype among enterococcal isolates was cMLSb. Surprisingly, a vancomycin-resistant enterococcal isolate was identified in a community-acquired enterococcal isolate. This study shows that enterococci may represent a major reservoir of ermB, lsaA, and lnuA genes.
Insights
Enterococci are reservoirs for macrolide-lincosamide-streptogramin (MLS) resistance genes. This study found the cMLSb phenotype and lsaA/ermB genes were most common, with a surprising vancomycin-resistant isolate in the community.
Area of Science:
- Microbiology
- Antimicrobial Resistance
- Molecular Biology
Background:
- Enterococci are significant reservoirs of macrolide-lincosamide-streptogramin (MLS) resistance genes.
- Understanding MLS resistance distribution in enterococci is crucial for infection control.
Purpose of the Study:
- To investigate the distribution and prevalence of MLS resistance genes and phenotypes in community- and hospital-acquired enterococcal isolates.
- To identify specific MLS resistance genes and their association with resistance phenotypes.
Main Methods:
- Phenotypic characterization of MLS resistance (cMLSb, iMLSb, M/MSb, L/LSa) in 245 enterococcal isolates using the double-disc diffusion method.
- Molecular detection of MLS resistance genes (ermA, ermB, ermC, msrA/B, lnuA, lnuB, lsaA) in 60 isolates via end-point PCR.
- Assessment of vancomycin and linezolid resistance.
Main Results:
- The cMLSb phenotype was the most frequent MLS resistance phenotype (79.7% community, 67.9% hospital-acquired).
- The lsaA and ermB genes were the most commonly identified MLS resistance genes.
- A single vancomycin-resistant isolate (0.6%) was found in a community-acquired sample; no linezolid resistance was detected.
Conclusions:
- Enterococci serve as a significant reservoir for MLS resistance genes, particularly ermB, lsaA, and lnuA.
- The cMLSb phenotype is the predominant MLS resistance pattern in enterococci.
- The emergence of vancomycin resistance in community-acquired enterococci warrants further surveillance.
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