Can 15-Locus Mycobacterial Interspersed Repetitive Unit-Variable-Number Tandem Repeat Analysis Provide Insight into the Evolution of Mycobacterium tuberculosis ?
Open Access
- 1 December 2005
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 71 (12), 8207-8213
- https://doi.org/10.1128/aem.71.12.8207-8213.2005
Abstract
The phylogeny and evolution of the bacterium Mycobacterium tuberculosis is still poorly understood despite the application of a variety of molecular techniques. We analyzed 469 M. tuberculosis and 49 Mycobacterium bovis isolates to evaluate if the mycobacterial interspersed repetitive units-variable-number tandem repeats (MIRU-VNTR) commonly used for epidemiological studies can define the phylogeny of the M. tuberculosis complex. This population was characterized by previously identified silent single-nucleotide polymorphisms (sSNPs) or by a macroarray based on these sSNPs that was developed in this study. MIRU-VNTR phylogenetic codes capable of differentiating between phylogenetic lineages were identified. Overall, there was 90.9% concordance between the lineages of isolates as defined by the MIRU-VNTR and sSNP analyses. The MIRU-VNTR phylogenetic code was unique to M. bovis and was not observed in any M. tuberculosis isolates. The codes were able to differentiate between different M. tuberculosis strain families such as Beijing, Delhi, and East African-Indian. Discrepant isolates with similar but not identical MIRU-VNTR codes often displayed a stepwise trend suggestive of bidirectional evolution. A lineage-specific panel of MIRU-VNTR can be used to subdivide each lineage for epidemiological purposes. MIRU-VNTR is a valuable tool for phylogenetic studies and could define an evolutionarily uncharacterized population of M. tuberculosis complex organisms.Keywords
This publication has 38 references indexed in Scilit:
- Utility of Mycobacterial Interspersed Repetitive Unit Typing for Differentiating Multidrug-ResistantMycobacterium tuberculosisIsolates of the Beijing FamilyJournal of Clinical Microbiology, 2005
- Analysis of the Allelic Diversity of the Mycobacterial Interspersed Repetitive Units inMycobacterium tuberculosisStrains of the Beijing Family: Practical Implications and Evolutionary ConsiderationsJournal of Clinical Microbiology, 2004
- Mycobacterial Interspersed Repetitive Unit Typing ofMycobacterium tuberculosisCompared to IS6110-Based Restriction Fragment Length Polymorphism Analysis for Investigation of Apparently Clustered Cases of TuberculosisJournal of Clinical Microbiology, 2003
- Evaluation of the Epidemiologic Utility of Secondary Typing Methods for Differentiation ofMycobacterium tuberculosisIsolatesJournal of Clinical Microbiology, 2003
- Evolutionary Relationships among Strains of Mycobacterium tuberculosis with Few Copies of IS 6110Journal of Bacteriology, 2003
- Automated High-Throughput Genotyping for Study of Global Epidemiology of Mycobacterium tuberculosis Based on Mycobacterial Interspersed Repetitive UnitsJournal of Clinical Microbiology, 2001
- Multilocus Sequence Typing System for Campylobacter jejuniJournal of Clinical Microbiology, 2001
- Prospects for worldwide tuberculosis control under the WHO DOTS strategyThe Lancet, 1998
- A multilocus sequence typing scheme for Streptococcus pneumoniae: identification of clones associated with serious invasive diseaseMicrobiology, 1998
- Adaptive evolution of highly mutable loci in pathogenic bacteriaCurrent Biology, 1994