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"Pseudo-Beijing" : evidence for convergent evolution in the direct repeat region of Mycobacterium tuberculosis
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 1012491
Author(s) Fenner, Lukas; Malla, Bijaya; Ninet, Béatrice; Dubuis, Olivier; Stucki, David; Borrell, Sonia; Huna, Thembela; Bodmer, Thomas; Egger, Matthias; Gagneux, Sebastien
Author(s) at UniBasel Gagneux, Sebastien
Borrell Farnov, Sonia
Year 2011
Title "Pseudo-Beijing" : evidence for convergent evolution in the direct repeat region of Mycobacterium tuberculosis
Journal PLoS ONE
Volume 6
Number 9
Pages / Article-Number e24737
Mesh terms Biological Evolution; Genotype; Mycobacterium tuberculosis, genetics; Phylogeny; Repetitive Sequences, Nucleic Acid, genetics
Abstract Mycobacterium tuberculosis has a global population structure consisting of six main phylogenetic lineages associated with specific geographic regions and human populations. One particular M. tuberculosis genotype known as "Beijing" has repeatedly been associated with drug resistance and has been emerging in some parts of the world. "Beijing" strains are traditionally defined based on a characteristic spoligotyping pattern. We used three alternative genotyping techniques to revisit the phylogenetic classification of M. tuberculosis complex (MTBC) strains exhibiting the typical "Beijing" spoligotyping pattern.; MTBC strains were obtained from an ongoing molecular epidemiological study in Switzerland and Nepal. MTBC genotyping was performed based on SNPs, genomic deletions, and 24-loci MIRU-VNTR. We identified three MTBC strains from patients originating from Tibet, Portugal and Nepal which exhibited a spoligotyping patterns identical to the classical Beijing signature. However, based on three alternative molecular markers, these strains were assigned to Lineage 3 (also known as Delhi/CAS) rather than to Lineage 2 (also known as East-Asian lineage). Sequencing of the RD207 in one of these strains showed that the deletion responsible for this "Pseudo-Beijing" spoligotype was about 1,000 base pairs smaller than the usual deletion of RD207 in classical "Beijing" strains, which is consistent with an evolutionarily independent deletion event in the direct repeat (DR) region of MTBC.; We provide an example of convergent evolution in the DR locus of MTBC, and highlight the limitation of using spoligotypes for strain classification. Our results indicate that a proportion of "Beijing" strains may have been misclassified in the past. Markers that are more phylogenetically robust should be used when exploring strain-specific differences in experimental or clinical phenotypes.
Publisher Public Library of Science
ISSN/ISBN 1932-6203
edoc-URL http://edoc.unibas.ch/dok/A6001992
Full Text on edoc No
Digital Object Identifier DOI 10.1371/journal.pone.0024737
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/21935448
ISI-Number WOS:000295321800057
Document type (ISI) Journal Article
 
   

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