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PMID: 21937822 已发表 · ppublish 英语

Intron sequences from the CCT7 gene exhibit diverse evolutionary histories among the four lineages within the Babesia microti-group, a genetically related species complex that includes human pathogens.

Japanese journal of infectious diseases ·第 64 卷 ·第 5 期 ·2012-01-19

Fujisawa Kohei, Nakajima Rui, Jinnai Michio, Hirata Haruyuki, Zamoto-Niikura Aya, Kawabuchi-Kurata Takako, Arai Satoru, Ishihara Chiaki

摘要

Babesia microti, the primary causal agent of human babesiosis in North America, was thought to distribute in Europe in association with ixodid ticks and rodents. Recent analyses of β-tubulin and the eta subunit of the chaperonin-containing t-complex protein 1 (CCT7) genes revealed discrete clusters (a species-complex comprised of at least 4 taxa for the U.S., Kobe, Munich, and Hobetsu). To further assess the micro-evolutionary history and genetic variability within the taxon, we combined a set of 6 introns from the CCT7 gene to use as a rapidly evolving DNA marker. Phylogenetic and comparative sequence analyses subdivided the U.S. taxon into 3 geographic subclades--North America, western to central Eurasia, and northeastern Eurasia (≥ 98% bootstrap supports for each node). The Kobe taxon, which occurs only in a few geographic foci of Japan, could further be subdivided into 2 subgroups (100% support). The Munich and Hobetsu taxa, common to Europe and Japan, respectively, exhibited little or no pairwise sequence divergence among geographically diverse samples, suggesting an extreme population bottleneck during recent history. Despite the small sample size, this study provides a better understanding of the micro-evolutionary relationships and the genetic variability present within each lineage of the B. microti-group.

文献信息
期刊
Japanese journal of infectious diseases
期刊简称
Jpn J Infect Dis
发表日期
2012-01-19
收录日期
2011-09-22
更新日期
2012-06-18
语言
英语
国家/地区
Japan
NLM ID
100893704
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