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Characterization of two tetracycline resistance determinants in Streptococcus faecalis JH1

Insights

Streptococcus faecalis strain JH1 possesses two tetracycline resistance mechanisms. One is plasmid-linked and constitutive, while the other is inducible and potentially chromosomal or plasmid-borne.

Area of Science:

  • Microbiology
  • Genetics
  • Molecular Biology

Background:

  • Streptococcus faecalis strain JH1 contains two conjugative plasmids, pJH1 (R plasmid) and pJH2 (hemolysin-bacteriocin plasmid).
  • Plasmid pJH1 confers resistance to multiple antibiotics, including tetracycline.

Purpose of the Study:

  • To investigate the mechanisms of tetracycline resistance in Streptococcus faecalis strain JH1.
  • To characterize the genetic elements responsible for tetracycline resistance.

Main Methods:

  • Plasmid curing experiments were performed on strain JH1.
  • Transconjugation assays were conducted using strain JH1 and a plasmid-free derivative.
  • Characterization of resulting transconjugants and their plasmids was performed.

Main Results:

  • Two distinct tetracycline resistance determinants were identified in strain JH1.
  • One determinant, associated with pJH1, provided constitutive resistance.
  • A second, inducible determinant, located on the chromosome or an undetectable plasmid, conferred higher resistance.
  • A novel plasmid, pDL172, was identified in a transconjugant, containing pJH2 and a tetracycline resistance DNA segment.

Conclusions:

  • Streptococcus faecalis strain JH1 exhibits dual tetracycline resistance mechanisms.
  • The inducible resistance likely involves a novel genetic element conferring enhanced tetracycline resistance.
  • Further research is needed to determine if this element is a transposon or integrated via classical recombination.

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