Occurrence and stability of insertion sequences in Mycobacterium tuberculosis complex strains: evaluation of an insertion sequence-dependent DNA polymorphism as a tool in the epidemiology of tuberculosis
Journal of Clinical Microbiology · 1991 · 994 citations · 15 references
Medical MicrobiologyDna SequencingPulmonary TuberculosisGeneticsPathogenesisTuberculosis PreventionMycobacterium TuberculosisTuberculosisDna PolymorphismIs TranspositionForensic IdentificationMicrobiologyGenomicsTuberculosis DiagnosticsMedicineClinical MicrobiologyAntimicrobial ResistanceInsertion Sequences
Microepidemics in tuberculosis are identified by distinct fingerprint types. The study aimed to evaluate the usefulness of IS986‑based DNA fingerprinting for tuberculosis epidemiology. DNA fingerprinting was performed by analyzing polymorphisms generated by the insertion sequence IS986. IS986 transposition is extremely rare in M.
In this study we established the usefulness of DNA fingerprinting for the epidemiology of tuberculosis on the basis of the DNA polymorphism generated by the insertion sequence (IS) IS986. Although clinical isolates of Mycobacterium tuberculosis displayed a remarkably high degree of restriction fragment length polymorphism, we showed that transposition of this IS element is an extremely rare event in M. tuberculosis complex strains grown either in vitro or in vivo for long periods of time. The M. tuberculosis and Mycobacterium africanum strains tested in this study contained 6 to 17 IS copies. In the Mycobacterium bovis strains, the copy numbers ranged between 1 and 5, and all 27 M. bovis BCG strains investigated invariably contained a single IS copy. This copy was located at a unique chromosomal position, reinforcing the idea that the frequency of IS transposition is very low in M. tuberculosis complex strains. Various microepidemics are described in which each microepidemic corresponds to a particular fingerprint type. The extent of similarity between Dutch and African strains was quantitatively assessed by computer-assisted analysis of DNA fingerprints. The results indicate that M. tuberculosis strains from regions in central Africa, where tuberculosis is highly prevalent, are generally more related to each other than isolates from the Netherlands, where the transmission rate is low and where the majority of the tuberculosis cases are presumed to be the result of reactivation of previously contracted M. tuberculosis infections.
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Kathleen D. Eisenach, M. Donald Cave, Joseph H. Bates et al. · The Journal of Infectious Diseases · 1990
757 citations
Characterization of a Mycobacterium tuberculosis insertion sequence, IS6110, and its application in diagnosis
Dominique Thierry, A Brisson-Noël, V. Vincent-Levy-Frebault et al. · Journal of Clinical Microbiology · 1990
Insertion SequencePulmonary TuberculosisInsertion Sequence-like Element+14
480 citations
Insertion element IS986 from Mycobacterium tuberculosis: a useful tool for diagnosis and epidemiology of tuberculosis
Peter W. M. Hermans, Dick van Soolingen, Jeremy W. Dale et al. · Journal of Clinical Microbiology · 1990
410 citations
Insertion element IS987 from Mycobacterium bovis BCG is located in a hot-spot integration region for insertion elements in Mycobacterium tuberculosis complex strains
Peter W. M. Hermans, Dick van Soolingen, Elisabeth M. Bik et al. · Infection and Immunity · 1991
395 citations
A Candida albicans dispersed, repeated gene family and its epidemiologic applications.
Stephen W. Scherer, David A. Stevens · Proceedings of the National Academy of Sciences · 1988
267 citations