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May 13, 2026Water0 citationsOpen Access

Prevalence of Antibiotic-Resistant Enterococci in an Anthropogenic-Affected River Section

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ZTZvesdimira TsvetanovaRBRosen BoshnakovTKTanya Chan Kim

Key Points

  • The study examines the prevalence of antibiotic-resistant enterococci in a river section influenced by human activity.
  • Tested susceptibility of 426 enterococci strains to 13 antibiotics using the disk diffusion method.
  • Analyzed resistance genes via PCR.
  • Evaluated spatial variations of antibiotic resistance in different river locations.
  • 39% of isolates were antibiotic-resistant, with 9% being multidrug-resistant.
  • Most resistance observed to erythromycin (19%), tetracycline (18%), and ampicillin (14%).
  • Resistance levels varied spatially, with higher rates in urban areas compared to upstream locations.

Abstract

Antibiotic resistance (ABR) is a significant threat to human and animal health, as well as to the environment. Antibiotic residues, antibiotic-resistant bacteria and antibiotic resistance genes are emerging contaminants of water resources. The present study aimed to assess the prevalence of ABR among waterborne enterococci in an anthropogenic-affected section of the Yantra River (Bulgaria). The susceptibility of 426 strains to 13 antibiotics (ABs) was tested by the disk diffusion method, and the genes encoding resistance by PCR analyses. A total of 39% of isolates were found to be antibiotic-resistant, with 9% mainly being multidrug-resistant to three AB classes. The most common resistance was to erythromycin (19%), tetracycline (18%) and ampicillin (14%), encoded by the ermB, tetM and blaTEM genes. A total of 3% of isolates were ciprofloxacin-resistant and only 1% was resistant to vancomycin or high-level gentamicin. All isolates were susceptible to teicoplanin and linezolid. Spatial variations in ABR levels were found, with the lowest abundance of antibiotic-resistant enterococci occurring in upstream river waters, away from urban areas, and the highest in urban areas. The spread of waterborne antibiotic-resistant enterococci highlights the need for water pollution management, monitoring and control to limit anthropogenic pressures through wastewater discharges and diffuse fecal pollution, and to ensure the ecological well-being of receiving waters.

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Cite This Study

Tsvetanova et al. (2026) studied this question.

synapsesocial.com/papers/6a04147679e20c90b444473ehttps://doi.org/10.3390/w18101149
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