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Novel antibiotic resistance transfer in Bacteroides

Insights

Antibiotic resistance genes for tetracycline and lincosamide were transferred between Bacteroides strains. This resistance transfer was mediated by cell contact and involved DNA sequences homologous to a known Bacteroides R plasmid.

Area of Science:

  • Microbiology
  • Genetics
  • Molecular Biology

Background:

  • Antibiotic resistance is a growing public health concern.
  • Bacteroides species are important human gut commensals and opportunistic pathogens.
  • Understanding the mechanisms of antibiotic resistance transfer in Bacteroides is crucial.

Purpose of the Study:

  • To investigate the transfer of tetracycline and lincosamide resistance between Bacteroides strains.
  • To determine the genetic basis of this resistance transfer.

Main Methods:

  • In vitro filter matings between Bacteroides fragilis (V503) and Bacteroides uniformis (V528).
  • Detection of drug-resistant progeny.
  • Plasmid analysis and DNA hybridization (Southern method).
  • Plasmid curing experiments.

Main Results:

  • Resistance to tetracycline and lincosamide was transferred en bloc from B. fragilis V503 to B. uniformis V528 at high frequencies.
  • Transfer was dependent on cell-to-cell contact and not mediated by extracellular DNA.
  • A plasmid (pVA503) was often transferred with resistance, but plasmid-free progeny also exhibited resistance.
  • DNA hybridization revealed sequences homologous to the R plasmid pBF4 in the donor and recipient strains.

Conclusions:

  • Antibiotic resistance in B. fragilis V503 can be transferred via conjugation.
  • The resistance determinants appear to be associated with mobile genetic elements, potentially integrated or extrachromosomal DNA.
  • The findings suggest a mechanism for the spread of antibiotic resistance within Bacteroides populations.

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