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Genetic Relationships between Clinical Isolates of Streptococcus pneumoniae Streptococcus oralis and Streptococcus mitis: Characterization of Atypical Pneumococci and Organisms Allied to S. mitis Harboring S. pneumoniae Virulence Factor-Encoding Genes

机译:肺炎链球菌口腔链球菌和微生物链球菌的临床分离株之间的遗传关系:非典型肺炎球菌和与携带肺炎链球菌毒力因子编码基因的微生物链球菌相关的生物体的表征

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摘要

The oral streptococcal group (mitis phylogenetic group) currently consists of nine recognized species, although the group has been traditionally difficult to classify, with frequent changes in nomenclature over the years. The pneumococcus (Streptococcus pneumoniae), an important human pathogen, is traditionally distinguished from the most closely related oral streptococcal species Streptococcus mitis and Streptococcus oralis on the basis of three differentiating characteristics: optochin susceptibility, bile solubility, and agglutination with antipneumococcal polysaccharide capsule antibodies. However, there are many reports in the literature of pneumococci lacking one or more of these defining characteristics. Sometimes called “atypical” pneumococci, these isolates can be the source of considerable confusion in the clinical laboratory. Little is known to date about the genetic relationships of such organisms with classical S. pneumoniae isolates. Here we describe these relationships based on sequence analysis of housekeeping genes in comparison with previously characterized isolates of S. pneumoniae, S. mitis, and S. oralis. While most pneumococci were found to represent a closely related group these studies identified a subgroup of atypical pneumococcal isolates (bile insoluble and/or “acapsular”) distinct from, though most closely related to, the “typical” pneumococcal isolates. However, a large proportion of isolates, found to be atypical on the basis of capsule reaction alone, did group with typical pneumococci, suggesting that they have either lost capsule production or represent as-yet-unrecognized capsular types. In contrast to typical S. pneumoniae, isolates phenotypically identified as S. mitis and S. oralis, which included isolates previously characterized in taxonomic studies, were genetically diverse. While most of the S. oralis isolates did fall into a well-separated group, S. mitis isolates did not cluster into a well-separated group. During the course of these studies we also identified a number of potentially important pathogenic isolates, which were frequently associated with respiratory disease, that phenotypically and genetically are most closely related to S. mitis but which harbor genes encoding the virulence determinants pneumolysin and autolysin classically associated with S. pneumoniae.
机译:口腔链球菌组(微生物系统发育组)目前由9个公认的物种组成,尽管该组传统上难以分类,且多年来命名频繁变化。肺炎球菌(肺炎链球菌)是一种重要的人类病原体,传统上根据三种区分特征与最密切相关的口服链球菌属微生物链球菌和口腔链球菌相区别:视光蛋白易感性,胆汁溶解性和抗肺炎球菌多糖胶囊抗体的凝集作用。然而,在肺炎球菌的文献中有许多报告缺乏这些定义特征中的一个或多个。这些分离株有时被称为“非典型”肺炎球菌,在临床实验室中可能引起相当大的混乱。迄今为止,关于这种生物与经典肺炎链球菌分离株的遗传关系知之甚少。在这里,我们根据管家基因的序列分析与肺炎链球菌,链球菌和口头链球菌的先前特征分离株进行比较,描述了这些关系。虽然发现大多数肺炎球菌代表一个密切相关的人群,但这些研究确定了一个非典型肺炎球菌分离物(胆汁不溶性和/或“荚膜化”)亚组,尽管与“典型”肺炎球菌分离物有最密切的联系。但是,仅根据胶囊反应发现的很大一部分分离物确实与典型的肺炎球菌并列,表明它们要么失去了胶囊的产量,要么代表了尚未被认识的荚膜类型。与典型的肺炎链球菌相反,在表型上被鉴定为微生物链球菌和口头链球菌的分离株,包括先前在分类学研究中表征的分离株,在遗传上是多样的。虽然大多数口头链球菌分离物确实属于分离良好的组,但是,链霉菌分离物并未聚类为分离良好的组。在这些研究过程中,我们还鉴定了许多可能与呼吸系统疾病相关的潜在重要病原体,这些分离物在表型和遗传上与链球菌有最密切的联系,但它们携带编码毒力决定因子肺炎球菌溶血素和自溶素的基因与肺炎链球菌。

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