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Global Phylogenomic Analysis of Nonencapsulated Streptococcus pneumoniae Reveals a Deep-Branching Classic Lineage That Is Distinct from Multiple Sporadic Lineages

机译:未包封的肺炎链球菌的全球系统生物学分析揭示了一个深分支的经典谱系,该谱系与多个散发谱系不同

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The surrounding capsule of Streptococcus pneumoniae has been identified as a major virulence factor and is targeted by pneumococcal conjugate vaccines (PCV). However, nonencapsulated S. pneumoniae (non-Ec-Sp) have also been isolated globally, mainly in carriage studies. It is unknown if non-Ec-Sp evolve sporadically, if they have high antibiotic nonsusceptiblity rates and a unique, specific gene content. Here, whole-genome sequencing of 131 non-Ec-Sp isolates sourced from 17 different locations around the world was performed. Results revealed a deep-branching classic lineage that is distinct from multiple sporadic lineages. The sporadic lineages clustered with a previously sequenced, global collection of encapsulated S. pneumoniae (Ec-Sp) isolates while the classic lineage is comprised mainly of the frequently identified multilocus sequences types (STs) ST344 (n = 39) and ST448 (n = 40). All ST344 and nine ST448 isolates had high nonsusceptiblity rates to β-lactams and other antimicrobials. Analysis of the accessory genome reveals that the classic non-Ec-Sp contained an increased number of mobile elements, than Ec-Sp and sporadic non-Ec-Sp. Performing adherence assays to human epithelial cells for selected classic and sporadic non-Ec-Sp revealed that the presence of a integrative conjugative element (ICE) results in increased adherence to human epithelial cells (P = 0.005). In contrast, sporadic non-Ec-Sp lacking the ICE had greater growth in vitro possibly resulting in improved fitness. In conclusion, non-Ec-Sp isolates from the classic lineage have evolved separately. They have spread globally, are well adapted to nasopharyngeal carriage and are able to coexist with Ec-Sp. Due to continued use of PCV, non-Ec-Sp may become more prevalent.
机译:肺炎链球菌的周围囊已被鉴定为主要毒力因子,并被肺炎球菌结合疫苗(PCV)靶向。但是,非包囊性肺炎链球菌(non-Ec-Sp)也已在全球范围内分离出来,主要是在运输研究中。未知的是,非Ec-Sp是否偶尔散发,是否具有较高的抗生素非敏感性率和独特的特定基因含量。在这里,对来自全球17个不同地点的131个非Ec-Sp分离株进行了全基因组测序。结果显示,与多个零星的血统不同的是,该血统是经典的血统。散发性谱系与先前测序的全球封装的肺炎链球菌(Ec-Sp)分离物聚集在一起,而经典谱系主要由经常识别的多位点序列类型(ST)ST344(n = 39)和ST448(n = 40)。所有ST344和9个ST448分离株对β-内酰胺类和其他抗微生物剂的不敏感率都很高。对辅助基因组的分析表明,与Ec-Sp和零星的非Ec-Sp相比,经典的非Ec-Sp含有更多的移动元素。对选定的经典和偶发性非Ec-Sp进行人上皮细胞粘附测定表明,整合性共轭元件(ICE)的存在导致对人上皮细胞的粘附增加(P = 0.005)。相反,散发的缺乏ICE的non-Ec-Sp在体外具有更大的生长,可能导致适应性提高。总之,来自经典谱系的非Ec-Sp分离株已分别进化。它们已经遍布全球,非常适合鼻咽运输,并能够与Ec-Sp共存。由于继续使用PCV,非Ec-Sp可能会变得更加普遍。

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