Genetic and molecular studies of a composite chromosomal element (Tn3705) containing a Tn916-modified structure (Tn3704) in Streptococcus anginosus F22.

Plasmid

Laboratoire des Staphylocoques et des Streptocoques, Institut Pasteur, Paris, France.

Published: January 1994

AI Article Synopsis

  • The plasmid-free strain of Streptococcus anginosus F22 carries a conjugative element, Tn3705, which confers resistance to antibiotics like erythromycin and tetracycline-minocycline.
  • Tn3705 is a composite transposon that contains a central part known as Tn3704, which has a modified structure and harbors the resistance markers.
  • The study shows that Tn3705 can insert into the chromosomes of various bacteria without changing its structure, while Tn3704 can also move on its own, affecting sugar fermentation capabilities in certain strains.

Article Abstract

The plasmid-free Streptococcus anginosus F22 contained a conjugative element, Tn3705, encoding resistance to erythromycin (Emr) and tetracycline-minocycline (Tcr-Mnr). We mapped a chromosomal region (> 52 kb) of F22, corresponding to the internal part of Tn3705. Molecular analysis of Tn3705 revealed it to be a composite structure: it included in its central part a transposon designated Tn3704 (20.3 kb +/- 0.5 kb), which had a modified structure in comparison with that of Tn916 and on which the Emr Tcr-Mn4 markers were localized. Tn3705 inserted from F22 into the chromosome of various streptococcal transconjugants as well as that of Enterococcus faecalis transconjugants without changing its structure. In contrast, from the chromosome of an E. faecalis::Tn3705 transconjugant only Tn3704 inserted, at various sites, into another E. faecalis chromosome. Sugar fermentations occurred after the insertion of Tn3704 into the chromosome of an asaccharolytic E. faecalis strain. Transposition of only Tn3704 from the chromosome of E. faecalis::Tn3705 onto pIP964, an E. faecalis hemolysin plasmid, yielded two different pIP964 derivatives. The size of the entire element Tn3705 was estimated to be about 70.0 kb by pulsed-field electrophoresis.

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Source
http://dx.doi.org/10.1006/plas.1994.1005DOI Listing

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