首页> 美国卫生研究院文献>International Journal of Systematic and Evolutionary Microbiology >Proposal for the reclassification of obligately purine-fermenting bacteria Clostridium acidurici (Barker 1938) and Clostridium purinilyticum (Dürre et al. 1981) as Gottschalkia acidurici gen. nov. comb. nov. and Gottschalkiapurinilytica comb. nov. and of Eubacterium angustum (Beuscher and Andreesen 1985) as Andreesenia angusta gen. nov. comb. nov. in the family Gottschalkiaceae fam. nov.
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Proposal for the reclassification of obligately purine-fermenting bacteria Clostridium acidurici (Barker 1938) and Clostridium purinilyticum (Dürre et al. 1981) as Gottschalkia acidurici gen. nov. comb. nov. and Gottschalkiapurinilytica comb. nov. and of Eubacterium angustum (Beuscher and Andreesen 1985) as Andreesenia angusta gen. nov. comb. nov. in the family Gottschalkiaceae fam. nov.

机译:提议将专性嘌呤发酵细菌酸尿梭菌(Barker1938年)和嘌呤梭菌(Dürre等1981年)重新分类为酸尿杆菌。十一月梳子。十一月和圣沙克亚purinilytica梳子。十一月和安氏真细菌(Beuscher and Andreesen 1985)作为安氏安第斯氏菌。十一月梳子。十一月在家庭Gottschalkiaceae家族中。十一月

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摘要

Several strictly anaerobic bacteria that are Gram-stain-positive have the ability to use uric acid as the sole source of carbon and energy. The phylogeny of three such species, , , and , members of the cluster XII that ferment purines, but not most amino acids or carbohydrates, has been re-examined, taking advantage of their recently sequenced genomes. Phylogenetic analyses, based on 16S rRNA gene sequences, protein sequences of RpoB and GyrB, and on a concatenated alignment of 50 ribosomal proteins, revealed tight clustering of and . showed consistent association with and , but differed from these two in terms of the genome size, G+C content of its chromosomal DNA and its inability to form spores. We propose reassigning and to the novel genus Gottschalkia as Gottschalkia acidurici gen. nov. comb. nov. (the type species of the genus) and Gottschalkia purinilytica comb. nov., respectively. is proposed to be reclassified as Andreesenia angusta gen. nov. comb. nov. Furthermore, based on the phylogenetic data and similar metabolic properties, we propose assigning genera Gottschalkia and Andreesenia to the novel family Gottschalkiaceae. Metagenomic sequencing data indicate the widespread distibution of organisms falling within the radiation of the proposed family Gottschalkiaceae in terrestrial and aquatic habitats from upstate New York to Antarctica, most likely due to their ability to metabolize avian-produced uric acid.
机译:几种革兰氏染色阳性的严格厌氧细菌具有利用尿酸作为碳和能量的唯一来源的能力。利用它们最近测序的基因组,已经重新检查了发酵嘌呤但不是大多数氨基酸或碳水化合物的XII簇中三个物种的系统发育。根据16S rRNA基因序列,RpoB和GyrB的蛋白质序列以及50种核糖体蛋白质的串联比对,系统发生分析表明,和紧密结合。表现出与 一致的关联,但是在基因组大小,染色体DNA的G + C含量以及无法形成孢子方面与这两个方面有所不同。我们建议将 重新分配给新颖的 Gottschalkia属作为 Gottschalkia acidurici gen。十一月梳子。十一月(该属的种类)和 Gottschalkia purinilytica 梳。分别。建议将 重新分类为 Andreesenia angusta gen。十一月梳子。十一月此外,基于系统发育数据和相似的代谢特性,我们建议将 Gottschalkia Andreesenia 属分配给新的家族 Gottschalkiaceae。元基因组测序数据表明属于拟议中的科特奇科的辐射范围内的生物在纽约北部至南极洲的陆地和水生生境中广泛分布,这很可能是由于它们具有代谢禽类尿酸的能力。

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