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Complete Genome Sequence of Streptococcus dysgalactiae subsp. equisimilis 167 Carrying Lancefield Group C Antigen and Comparative Genomics of S. dysgalactiae subsp. equisimilis Strains

机译:dysgalactiae链球菌亚种的完整基因组序列。 equisimilis 167携带Lancefield C组抗原和痢疾志贺菌亚种的比较基因组学。等值菌株

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摘要

Streptococcus dysgalactiae subsp. equisimilis (SDSE) is an emerging human pathogen that causes life-threatening invasive infections such as streptococcal toxic shock syndrome. Recent epidemiological studies reveal that invasive SDSE infections have been increasing in Asia, Europe, and the United States. Almost all SDSE carry Lancefield group G or C antigen. We have determined the complete genome sequence of a human group C SDSE 167 strain. A comparison of its sequence with that of four SDSE strains, three in Lancefield group G and one in Lancefield group A, showed approximately 90% coverage. Most regions showing little or no homology were located in the prophages. There was no evidence of massive rearrangement in the genome of SDSE 167. Bayesian phylogeny using entire genome sequences showed that the most recent common ancestor of the five SDSE strains appeared 446 years ago. Interestingly, we found that SDSE 167 harbors sugar metabolizing enzymes in a unique region and streptodornase in the phage region, which presumably contribute to the degradation of host tissues and the prompted covRS mutation, respectively. A comparison of these five SDSE strains, which differ in Lancefield group antigens, revealed a gene cluster presumably responsible for the synthesis of the antigenic determinant. These results may provide the basis for molecular epidemiological research of SDSE.
机译:链球菌性乳腺炎亚种。 equisimilis(SDSE)是一种新兴的人类病原体,可导致威胁生命的侵入性感染,如链球菌中毒性休克综合症。最近的流行病学研究表明,在亚洲,欧洲和美国,侵袭性SDSE感染一直在增加。几乎所有SDSE都带有Lancefield组G或C抗原。我们已经确定了人类C SDSE 167菌株的完整基因组序列。将其序列与四种SDSE菌株的序列进行比较,其中Lancefield组G为三株,Lancefield组A为一株,覆盖率约为90%。多数显示很少或没有同源性的区域位于原噬菌体中。没有证据表明SDSE 167的基因组发生大规模重排。使用整个基因组序列的贝叶斯系统发育表明,这5个SDSE菌株的最新共同祖先是446年前。有趣的是,我们发现SDSE 167的糖代谢酶位于一个独特的区域,而链霉菌糖酶位于噬菌体区域,这可能分别导致宿主组织的降解和提示的covRS突变。比较这五个SDSE菌株,它们在Lancefield组抗原上有所不同,发现一个基因簇可能负责抗原决定簇的合成。这些结果可为SDSE的分子流行病学研究提供依据。

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