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Phylogeny of the Defined Murine Microbiota: Altered Schaedler Flora

机译:明确的小鼠微生物群的系统发生:改变的舍德勒植物区系

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The “altered Schaedler flora” (ASF) was developed for colonizing germfree rodents with a standardized microbiota. The purpose of this study was to identify each of the eight ASF strains by 16S rRNA sequence analysis. Three strains were previously identified asLactobacillus acidophilus (strain ASF 360),Lactobacillus salivarius (strain ASF 361), andBacteroides distasonis (strain ASF 519) based on phenotypic criteria. 16S rRNA analysis indicated that each of the strains differed from its presumptive identity. The 16S rRNA sequence of strain ASF 361 is essentially identical to the 16S rRNA sequences of the type strains of Lactobacillus murinis and Lactobacillus animalis (both isolated from mice), and all of these strains probably belong to a single species. Strain ASF 360 is a novel lactobacillus that clusters with L. acidophilus andLactobacillus lactis. Strain ASF 519 falls into an unnamed genus containing [Bacteroides] distasonis, [Bacteroides] merdae, [Bacteroides] forsythus, and CDC group DF-3. This unnamed genus is in theCytophaga-Flavobacterium-Bacteroides phylum and is most closely related to the genus Porphyromonas. The spiral-shaped strain, strain ASF 457, is in the Flexistipesphylum and exhibits sequence identity with rodent isolates of Robertson. The remaining four ASF strains, which are extremely oxygen-sensitive fusiform bacteria, group phylogenetically with the low-G+C-content gram-positive bacteria (Firmicutes,Bacillus-Clostridium group). ASF 356, ASF 492, and ASF 502 fall into Clostridium cluster XIV of Collins et al. Morphologically, ASF 492 resembles members of this cluster,Roseburia cecicola, and Eubacterium plexicaudatum. The 16S rRNA sequence of ASF 492 is identical to that of E. plexicaudatum. Since the type strain and other viable original isolates of E. plexicaudatum have been lost, strain ASF 492 is a candidate for a neotype strain. Strain ASF 500 branches deeply in the low-G+C-content gram-positive phylogenetic tree but is not closely related to any organisms whose 16S rRNA sequences are currently in the GenBank database. The 16S rRNA sequence information determined in the present study should allow rapid identification of ASF strains and should permit detailed analysis of the interactions of ASF organisms during development of intestinal disease in mice that are coinfected with a variety of pathogenic microorganisms.
机译:开发了“改变后的舍德勒菌群”(ASF),用于定殖具有标准化微生物群的无菌啮齿动物。这项研究的目的是通过16S rRNA序列分析鉴定八种ASF菌株。根据表型标准,先前已鉴定出三种菌株为嗜酸乳杆菌(菌株ASF 360),唾液乳杆菌(菌株ASF 361)和间断杆菌(Bacteroides distasonis)(菌株ASF 519)。 16S rRNA分析表明每种菌株与其假定的身份不同。 ASF 361菌株的16S rRNA序列与鼠李糖乳杆菌和动物乳杆菌(均从小鼠中分离)类型菌株的16S rRNA序列基本相同,并且所有这些菌株可能都属于同一物种。菌株ASF 360是与嗜酸乳杆菌和乳酸乳球菌成簇的新型乳酸杆菌。 ASF 519菌株属于一个未命名的属,其中包含[Bacteroides] distasonis,[Bacteroides] merdae,[Bacteroides]连翘和CDC组DF-3。该未命名属存在于食盐杆菌-黄杆菌-拟杆菌门中,并且与卟啉单胞菌属关系最密切。螺旋形菌株,ASF 457菌株,在Flexistipesphylum中,与罗伯逊的啮齿动物分离株具有序列同一性。其余四个ASF菌株是对氧非常敏感的梭形细菌,在系统发育上与低G + C含量的革兰氏阳性菌(Firmicutes,芽孢杆菌-梭状芽孢杆菌组)结合。 ASF 356,ASF 492和ASF 502属于Collins等人的梭状芽胞杆菌簇XIV。从形态上讲,ASF 492类似于该簇的成员,即Roseburia cecicola和Eubacterium plexicaudatum。 ASF 492的16S rRNA序列与丛肠杆菌相同。由于失去了丛生的E.plexicaudatum菌株和其他可行的原始分离株,因此菌株ASF 492是新菌株的候选者。 ASF 500菌株在低G + C含量的革兰氏阳性系统发育树中深入分支,但与GenBank数据库中当前具有16S rRNA序列的任何生物都没有密切关系。在本研究中确定的16S rRNA序列信息应允许快速鉴定ASF菌株,并应允许详细分析合并多种病原性微生物的小鼠肠道疾病发生过程中ASF生物的相互作用。

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