[Occurrence of gentamicin-resistant coliforms in river water samples]

Zentralblatt Fur Mikrobiologie
|January 1, 1986
PubMed

Insights

Gentamicin-resistant coliforms, primarily Klebsiella, were found in river water. These resistant strains frequently carried a 150 Md plasmid and could transfer resistance to other bacteria.

Area of Science:

  • Environmental microbiology
  • Bacterial genetics
  • Antimicrobial resistance

Background:

  • Coliform bacteria are indicators of water quality.
  • Antimicrobial resistance is a growing public health concern.
  • Gentamicin resistance in environmental bacteria can pose risks.

Purpose of the Study:

  • To investigate the prevalence and characteristics of gentamicin-resistant coliforms in river water.
  • To identify the bacterial species harboring gentamicin resistance.
  • To determine the genetic basis of gentamicin resistance, specifically plasmid involvement.

Main Methods:

  • Analysis of river water samples for total coliforms.
  • Identification and characterization of gentamicin-resistant coliform isolates.
  • Plasmid isolation and molecular analysis (e.g., size determination).
  • Bacterial conjugation experiments to assess resistance transfer.

Main Results:

  • 0.006% to 0.3% of total coliforms in river water samples exhibited gentamicin resistance.
  • Klebsiella species (86.5%) were the predominant gentamicin-resistant coliforms identified.
  • A common gentamicin resistance (Gm) plasmid of approximately 150 Md was frequently isolated from Klebsiella oxytoca, K. pneumoniae, and E. coli.
  • All gentamicin-resistant wild strains successfully transferred resistance to E. coli K-12.
  • Klebsiella strains often harbored multiple plasmids, including R-plasmids.

Conclusions:

  • River water serves as a reservoir for gentamicin-resistant coliforms, particularly Klebsiella.
  • The 150 Md Gm-plasmid is a significant factor in gentamicin resistance among these environmental bacteria.
  • The ability of these strains to transfer resistance highlights the potential for wider dissemination of gentamicin resistance genes in aquatic environments.