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巴氏梭菌新种,从人类粪便中分离得到。

Clostridium bartlettii sp. nov., isolated from human faeces.

作者信息

Song Y L, Liu C X, McTeague M, Summanen P, Finegold S M

机构信息

Research Service, VA Medical Center West Los Angeles, Bldg. 304, Room E3-227, 11301 Wilshire Blvd., Los Angeles, CA 90073, USA.

出版信息

Anaerobe. 2004 Jun;10(3):179-84. doi: 10.1016/j.anaerobe.2004.04.004.

Abstract

Seven obligately anaerobic, Gram-positive, rod-shaped, spore-forming organisms isolated from human faecal specimens were characterized using phenotypic and molecular taxonomic methods. Strains of the unidentified bacterium used carbohydrates as fermentable substrates, producing acetic acid, isovaleric acid and phenylacetic acid (PAA) as the major products of glucose metabolism, and possessed a G +C content of approximately 29.8 mol%. Comparative 16S rRNA gene sequencing showed that the 7 strains were genetically highly related to each other (displaying >99.5% sequence similarity) and represent a previously unknown sub-line within the Clostridium Cluster XI. The closest described species to the novel bacterium is Clostridium glycolicum, although a 16S rRNA sequence divergence of 4% demonstrates that they represent different species. Genomic DNA-DNA pairing studies confirmed the separateness of the unknown species and C. glycolicum (30.6% similarity between the proposed type strain of the novel species, WAL 16138, and C. glycolicum ATCC 14880(T)). Based on morphologic, phenotypic and phylogenetic evidence, it is therefore proposed that the unknown bacterium be classified as C. bartlettii sp. nov. The type strain of C. bartlettii is WAL 16138(T) (= ATCCBAA-827(T)=CCUG48940(T)).

摘要

从人类粪便标本中分离出7株专性厌氧、革兰氏阳性、杆状、产芽孢的微生物,采用表型和分子分类学方法对其进行了鉴定。未鉴定细菌的菌株利用碳水化合物作为可发酵底物,产生乙酸、异戊酸和苯乙酸(PAA)作为葡萄糖代谢的主要产物,其G+C含量约为29.8 mol%。比较16S rRNA基因测序表明,这7株菌株在遗传上彼此高度相关(序列相似性>99.5%),代表梭菌属XI群内一个以前未知的亚系。与该新细菌最接近的已描述物种是乙醇梭菌,尽管16S rRNA序列差异为4%表明它们代表不同的物种。基因组DNA-DNA配对研究证实了未知物种与乙醇梭菌的分离(新物种的模式菌株WAL 16138与乙醇梭菌ATCC 14880(T)之间的相似性为30.6%)。因此,基于形态、表型和系统发育证据,建议将该未知细菌分类为巴氏梭菌新种。巴氏梭菌的模式菌株是WAL 16138(T)(=ATCCBAA-827(T)=CCUG48940(T))。

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