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首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Robust demarcation of fourteen different species groups within the genus Streptococcus based on genome-based phylogenies and molecular signatures
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Robust demarcation of fourteen different species groups within the genus Streptococcus based on genome-based phylogenies and molecular signatures

机译:基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于组织的系统和分子特征的强大分界

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摘要

The genus Streptococcus comprises many important pathogens that impact human and animal health. Despite their widespread relevance, accurate classification and methods to reliably distinguish its members remain in-adequate. Hence, we conducted comprehensive phylogenomics and comparative genomic analyses on 70 genome-sequenced members of this genus to delineate their interrelationships. Comprehensive phylogenetic trees were constructed based on multiple datasets of proteins, including 737 core proteins for the genus Streptococcus, 87 proteins conserved within the phylum Firmicutes, GyrA-GyrB, and RpoB-RpoC sequences. Based on the core proteins for Streptococcus species, genetic relatedness based on average amino acid identity was also determined. In parallel, comparative genomic analyses on protein sequences from this genus have identified 134 highly specific molecular markers in the form of conserved signature indels (CSIs) that are specifically shared by either the entire genus or its distinct clades/subclades. Based on the results from these multiple lines of investigations, a reliable picture of the overall evolutionary relationships within the genus Streptococcus has emerged. At the highest level, members of this genus form 2 main clades termed the "Mitis-Suis" and "Pyogenes-Equinus-Mutans" clades. Among these 2 major clades, 14 distinct subclades have been identified which include 4 previously identified species groups (viz. Pyogenes, Mutans, Salivarius and Equinus (or Bovis)); the Mitis clade, which is comprised of the Anginosus subclade and three novel subclades (viz. Pneumoniae, Gordonii and Parasanguinis), and six novel subclades termed the Suis, Sobrinus, Halotolerans, Porci, Entericus and Orisratti subclades. Members of the aforementioned subclades are reliably distinguished on the basis of their distinct branching in phylogenetic trees and multiple identified CSIs that are specifically shared by them. The molecular markers described here serve to dermarcate and clarify the interrelationships among different species groups of streptococci, and provide important means for developing novel diagnostic tests and functional studies on these bacteria which should enhance our understanding of them.
机译:链球菌属包括许多影响人类和动物健康的重要病原体。尽管他们广泛的相关性,准确的分类和方法可靠地区分其成员仍然适合。因此,我们对该属的70个基因组测定成员进行了综合的系统核糖学和比较基因组分析,以描绘其相互关系。基于蛋白质的多个数据集构建综合系统发育树,包括737个核心蛋白,用于链球菌属,87个蛋白质在门静脉内部,Gyra-Gyrb和RPOB-RPOC序列中保守。基于用于链球菌物种的核心蛋白,还确定了基于平均氨基酸同一性的遗传相关性。同时,来自该属蛋白序列的比较基因组分析鉴定了由整个属或其不同的枝条/亚洲特异性分享的保守签名诱导(CSIS)形式的134个高度特异性分子标记。基于这些多种调查的结果,出现了链球菌属中整体进化关系的可靠图。在最高级别,这种属的成员2型主要碎片称为“脑炎 - suis”和“pyogenes-equinus-mutans”的植物。在这两种主要的曲折中,已经鉴定了14个不同的亚基,包括4种以前鉴定的物种组(viz。生物酶,mutans,唾液和等分精(或bovis));含有Anginosus Subclade和三个新亚洲亚洲的胃肠杆菌(肺炎,Gordonii和帕累拉语)组成,以及六个新的亚洲亚克士,塞米什,嗜毒藻,黑兰芹,猪,肠道和奥里斯拉蒂亚克拉德。上述亚洲的成员是根据其在系统发育树中的不同分支和由它们特异性分支的多种鉴定的CSI的分支来可靠地区分。这里描述的分子标记用于Dermaryate和阐明不同物种中的链球菌类别中的相互关系,并为在这些细菌中制定新的诊断测试和功能研究,为这些细菌的功能研究提供重要的方法。

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