作者
Gabriele Margos, Anne G Gatewood, David M Aanensen, Klára Hanincová, Darya Terekhova, Stephanie A Vollmer, Muriel Cornet, Joseph Piesman, Michael Donaghy, Antra Bormane, Merrilee A Hurn, Edward J Feil, Durland Fish, Sherwood Casjens, Gary P Wormser, Ira Schwartz, Klaus Kurtenbach
发表日期
2008/6/24
期刊
Proceedings of the National Academy of Sciences
卷号
105
期号
25
页码范围
8730-8735
出版商
National Academy of Sciences
简介
Lyme borreliosis, caused by the tick-borne bacterium Borrelia burgdorferi, has become the most common vector-borne disease in North America over the last three decades. To understand the dynamics of the epizootic spread and to predict the evolutionary trajectories of B. burgdorferi, accurate information on the population structure and the evolutionary relationships of the pathogen is crucial. We, therefore, developed a multilocus sequence typing (MLST) scheme for B. burgdorferi based on eight chromosomal housekeeping genes. We validated the MLST scheme on B. burgdorferi specimens from North America and Europe, comprising both cultured isolates and infected ticks. These data were compared with sequences for the commonly used genetic markers rrs-rrlA intergenic spacer (IGS) and the gene encoding the outer surface protein C (ospC). The study demonstrates that the concatenated sequences of the …
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