Evaluation and Strategy for Use of MIRU-VNTRplus, a Multifunctional Database for Online Analysis of Genotyping Data and Phylogenetic Identification ofMycobacterium tuberculosisComplex Isolates
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- 1 August 2008
- journal article
- research article
- Published by American Society for Microbiology in Journal of Clinical Microbiology
- Vol. 46 (8) , 2692-2699
- https://doi.org/10.1128/jcm.00540-08
Abstract
Because of its portable data, discriminatory power, and recently proposed standardization, mycobacterial interspersed repetitive-unit-variable-number tandem-repeat (MIRU-VNTR) typing has become a major method for the epidemiological tracking of Mycobacterium tuberculosis complex (MTBC) clones. However, no public MIRU-VNTR database based on well-characterized reference strains has been available hitherto for easy strain identification. Therefore, a collection of 186 reference strains representing the primary MTBC lineages was used to build a database, which is freely accessible at http://www. MIRU-VNTRplus.org. The geographical origin and the drug susceptibility profile of each strain were stored together with comprehensive genetic lineage information, including the 24-locus MIRU-VNTR profile, the spoligotyping pattern, the single-nucleotide and large-sequence-polymorphism profiles, and the IS6110 restriction fragment length polymorphism fingerprint. Thanks to flexible import functions, a single or multiple user strains can be analyzed, e. g., for lineage identification with or without the use of reference strains, by best-match or tree-based analyses with single or combined marker data sets. The results can easily be exported. In the present study, we evaluated the database consistency and various analysis parameters both by testing the reference collection against itself and by using an external population-based data set comprising 629 different strains. Under the optimal conditions found, lineage predictions based on typing by 24-locus MIRU-VNTR analysis optionally combined with spoligotyping were verified in >99% of the cases. On the basis of this evaluation, a user strategy was defined, which consisted of best-match analysis followed, if necessary, by tree-based analysis. The MIRU-VNTRplus database is a powerful tool for high-resolution clonal identification and has little equivalent in terms of functionalities among the bacterial genotyping databases available so far.This publication has 53 references indexed in Scilit:
- Three-Year Population-Based Evaluation of Standardized Mycobacterial Interspersed Repetitive-Unit-Variable-Number Tandem-Repeat Typing ofMycobacterium tuberculosisJournal of Clinical Microbiology, 2008
- Empirical Tests of the Reliability of Phylogenetic Trees Constructed With Microsatellite DNAGenetics, 2008
- Large Sequence Polymorphisms Classify Mycobacterium tuberculosis Strains with Ancestral Spoligotyping PatternsJournal of Clinical Microbiology, 2007
- Assessment of an Optimized Mycobacterial Interspersed Repetitive- Unit-Variable-Number Tandem-Repeat Typing System Combined with Spoligotyping for Population-Based Molecular Epidemiology Studies of TuberculosisJournal of Clinical Microbiology, 2007
- Proposal for Standardization of Optimized Mycobacterial Interspersed Repetitive Unit-Variable-Number Tandem Repeat Typing ofMycobacterium tuberculosisJournal of Clinical Microbiology, 2006
- Detecting emerging strains of tuberculosis by using spoligotypesProceedings of the National Academy of Sciences, 2006
- Differentiation of Tuberculosis Strains in a Population with Mainly Beijing-family StrainsEmerging Infectious Diseases, 2006
- Evaluation of the Epidemiological Relevance of Variable-Number Tandem-Repeat Genotyping of Mycobacterium bovis and Comparison of the Method with IS 6110 Restriction Fragment Length Polymorphism Analysis and SpoligotypingJournal of Clinical Microbiology, 2006
- Ancient Origin and Gene Mosaicism of the Progenitor of Mycobacterium tuberculosisPLoS Pathogens, 2005
- Ancient horizontal gene transferNature Reviews Genetics, 2003