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Complete genome sequence of DSM 30083T, the type strain (U5/41T) of Escherichia coli, and a proposal for delineating subspecies in microbial taxonomy

机译:DSM 30083T的完整基因组序列,大肠杆菌的U5 / 41T型菌株,以及在微生物分类学中划定亚种的建议

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Although Escherichia coli is the most widely studied bacterial model organism and often considered to be the model bacterium per se, its type strain was until now forgotten from microbial genomics. As a part of the G enomic E ncyclopedia of B acteria and A rchaea project, we here describe the features of E. coli DSM 30083supT/sup together with its genome sequence and annotation as well as novel aspects of its phenotype. The 5,038,133 bp containing genome sequence includes 4,762 protein-coding genes and 175 RNA genes as well as a single plasmid. Affiliation of a set of 250 genome-sequenced E. coli strains, Shigella and outgroup strains to the type strain of E. coli was investigated using digital DNA:DNA-hybridization (dDDH) similarities and differences in genomic G+C content. As in the majority of previous studies, results show Shigella spp. embedded within E. coli and in most cases forming a single subgroup of it. Phylogenomic trees also recover the proposed E. coli phylotypes as monophyla with minor exceptions and place DSM 30083supT/sup in phylotype B2 with E. coli S88 as its closest neighbor. The widely used lab strain K-12 is not only genomically but also physiologically strongly different from the type strain. The phylotypes do not express a uniform level of character divergence as measured using dDDH, however, thus an alternative arrangement is proposed and discussed in the context of bacterial subspecies. Analyses of the genome sequences of a large number of E. coli strains and of strains from 100 other bacterial genera indicate a value of 79-80% dDDH as the most promising threshold for delineating subspecies, which in turn suggests the presence of five subspecies within E. coli.
机译:尽管大肠杆菌是研究最广泛的细菌模型生物,并且通常被认为本身就是模型细菌,但迄今为止,其微生物菌株已被微生物基因组学所遗忘。作为B.acteria和A rchaea的人类工程学百科全书的一部分,我们在这里描述大肠杆菌DSM 30083 T 的特征及其基因组序列和注释,以及其新颖之处。表型。包含5,038,133 bp的基因组序列包括4,762个蛋白质编码基因和175个RNA基因以及一个质粒。使用数字DNA:DNA杂交(dDDH)相似性和基因组G + C含量差异研究了250个基因组测序的大肠杆菌菌株,志贺氏菌和外群菌株与大肠杆菌类型菌株的关系。与以前的大多数研究一样,结果显示志贺氏菌属。包埋在大肠杆菌中,并且在大多数情况下形成大肠杆菌的一个亚组。系统发育树还可以将拟议的大肠杆菌系统型恢复为单系统,只有少数例外,并将DSM 30083 T 置于系统B2型中,与大肠杆菌S88最接近。广泛使用的实验室菌株K-12不仅在基因组上而且在生理上与该类型菌株都存在很大差异。系统型不表达使用dDDH测得的均匀的字符差异水平,但是,因此在细菌亚种的背景下提出并讨论了另一种排列方式。大量大肠杆菌菌株和来自其他100多个细菌属的菌株的基因组序列分析表明,dDDH值为79-80%,是描述亚种的最有希望的阈值,这反过来表明存在五个亚种在大肠杆菌中。

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