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首页> 外文期刊>Applied and Environmental Microbiology >Analysis, Characterization, and Loci of the tuf Genes in Lactobacillus and Bifidobacterium Species and Their Direct Application for Species Identification
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Analysis, Characterization, and Loci of the tuf Genes in Lactobacillus and Bifidobacterium Species and Their Direct Application for Species Identification

机译:乳酸杆菌和双歧杆菌物种中的tuf基因的分析,表征和基因座,并直接用于物种鉴定

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摘要

We analyzed the tuf gene, encoding elongation factor Tu, from 33 strains representing 17 Lactobacillus species and 8 Bifidobacterium species. The tuf sequences were aligned and used to infer phylogenesis among species of lactobacilli and bifidobacteria. We demonstrated that the synonymous substitution affecting this gene renders elongation factor Tu a reliable molecular clock for investigating evolutionary distances of lactobacilli and bifidobacteria. In fact, the phylogeny generated by these tuf sequences is consistent with that derived from 16S rRNA analysis. The investigation of a multiple alignment of tuf sequences revealed regions conserved among strains belonging to the same species but distinct from those of other species. PCR primers complementary to these regions allowed species-specific identification of closely related species, such as Lactobacillus casei group members. These tuf gene-based assays developed in this study provide an alternative to present methods for the identification for lactic acid bacterial species. Since a variable number of tuf genes have been described for bacteria, the presence of multiple genes was examined. Southern analysis revealed one tuf gene in the genomes of lactobacilli and bifidobacteria, but the tuf gene was arranged differently in the genomes of these two taxa. Our results revealed that the tuf gene in bifidobacteria is flanked by the same gene constellation as the str operon, as originally reported for Escherichia coli. In contrast, bioinformatic and transcriptional analyses of the DNA region flanking the tuf gene in four Lactobacillus species indicated the same four-gene unit and suggested a novel tuf operon specific for the genus Lactobacillus.
机译:我们分析了来自代表17个乳杆菌属物种和8个双歧杆菌属物种的33个菌株的tuf基因,编码延伸因子Tu。将tuf序列进行比对,并用于推断乳杆菌和双歧杆菌物种之间的系统发育。我们证明了影响该基因的同义取代使延伸因子Tu成为研究乳酸杆菌和双歧杆菌进化距离的可靠分子钟。实际上,这些tuf序列产生的系统发育与16S rRNA分析得出的系统发育一致。对tuf序列的多重比对的研究揭示了在属于相同物种但与其他物种不同的菌株之间保守的区域。与这些区域互补的PCR引物可以对密切相关的物种(如干酪乳杆菌成员)进行物种特异性鉴定。在这项研究中开发的这些基于tuf基因的检测方法为当前鉴定乳酸菌种类的方法提供了一种替代方法。由于已经描述了细菌的可变数量的tuf基因,因此检查了多个基因的存在。 Southern分析表明,在乳杆菌和双歧杆菌的基因组中有一个tuf基因,但是在这两个分类群的基因组中tuf基因的排列不同。我们的研究结果表明,双歧杆菌中的tuf基因两侧与str操纵子具有相同的基因构象,就像最初报道的大肠杆菌一样。相比之下,对四种乳酸杆菌物种中的tuf基因侧翼的DNA区域的生物信息学和转录分析表明,这四个基因单元具有相同的四基因单元,并提出了一种新的针对乳杆菌属的tuf操纵子。

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