首页> 外文期刊>Journal of bacteriology >Phage 3396 from a Streptococcus dysgalactiae subsp. equisimilis Pathovar May Have Its Origins in Streptococcus pyogenes
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Phage 3396 from a Streptococcus dysgalactiae subsp. equisimilis Pathovar May Have Its Origins in Streptococcus pyogenes

机译:来自链球菌乳腺小球菌亚种的噬菌体3396。 equisimilis Pathovar可能起源于化脓性链球菌

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Streptococcus dysgalactiae subsp. equisimilis strains (group G streptococcus [GGS]) are largely defined as commensal organisms, which are closely related to the well-defined human pathogen, the group A streptococcus (GAS). While lateral gene transfers are emerging as a common theme in these species, little is known about the mechanisms and role of these transfers and their effect on the population structure of streptococci in nature. It is now becoming evident that bacteriophages are major contributors to the genotypic diversity of GAS and, consequently, are pivotal to the GAS strain structure. Furthermore, bacteriophages are strongly associated with altering the pathogenic potential of GAS. In contrast, little is know about phages from GGS and their role in the population dynamics of GGS. In this study we report the first complete genome sequence of a GGS phage, Φ3396. Exhibiting high homology to the GAS phage Φ315.1, the chimeric nature of Φ3396 is unraveled to reveal evidence of extensive ongoing genetic diversity and dissemination of streptococcal phages in nature. Furthermore, we expand on our recent findings to identify inducible Φ3396 homologues in GAS from a region of endemicity for GAS and GGS infection. Together, these findings provide new insights into not only the population structure of GGS but also the overall population structure of the streptococcal genus and the emergence of pathogenic variants.
机译: dysgalactiae 链球菌亚种。 equisimilis 菌株(G链球菌[GGS])在很大程度上被定义为共生生物,与确定的人类病原体A链球菌(GAS)密切相关。尽管侧向基因转移已成为这些物种的共同主题,但人们对这些转移的机制和作用及其对自然链球菌种群结构的影响知之甚少。现在越来越明显的是,噬菌体是GAS基因型多样性的主要贡献者,因此对GAS菌株结构至关重要。此外,噬菌体与改变GAS的致病潜力密切相关。相反,对GGS的噬菌体及其在GGS种群动态中的作用了解甚少。在这项研究中,我们报告了GGS噬菌体的第一个完整基因组序列Φ3396。与GAS噬菌体Φ315.1具有高度同源性,Φ3396的嵌合性质未作揭示,以揭示广泛的正在进行的遗传多样性和链球菌噬菌体在自然界中传播的证据。此外,我们扩展了我们的最新发现,以从GAS和GGS感染的流行地区中识别出GAS中可诱导的Φ3396同源物。总之,这些发现不仅为GGS的种群结构提供了新的见解,而且为链球菌属的总体种群结构和病原体的出现提供了新的见解。

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