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Genetic Classification and Distinguishing of Staphylococcus Species Based on Different Partial gap 16S rRNA hsp60 rpoB sodA and tuf Gene Sequences

机译:基于不同的部分缺口16S rRNAhsp60rpoBsodA和tuf基因序列的葡萄球菌种类的遗传分类和区分

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摘要

The analysis of 16S rRNA gene sequences has been the technique generally used to study the evolution and taxonomy of staphylococci. However, the results of this method do not correspond to the results of polyphasic taxonomy, and the related species cannot always be distinguished from each other. Thus, new phylogenetic markers for Staphylococcus spp. are needed. We partially sequenced the gap gene (∼931 bp), which encodes the glyceraldehyde-3-phosphate dehydrogenase, for 27 Staphylococcus species. The partial sequences had 24.3 to 96% interspecies homology and were useful in the identification of staphylococcal species (F. Layer, B. Ghebremedhin, W. König, and B. König, J. Microbiol. Methods 70:542-549, 2007). The DNA sequence similarities of the partial staphylococcal gap sequences were found to be lower than those of 16S rRNA (∼97%), rpoB (∼86%), hsp60 (∼82%), and sodA (∼78%). Phylogenetically derived trees revealed four statistically supported groups: S. hyicus/S. intermedius, S. sciuri, S. haemolyticus/S. simulans, and S. aureus/epidermidis. The branching of S. auricularis, S. cohnii subsp. cohnii, and the heterogeneous S. saprophyticus group, comprising S. saprophyticus subsp. saprophyticus and S. equorum subsp. equorum, was not reliable. Thus, the phylogenetic analysis based on the gap gene sequences revealed similarities between the dendrograms based on other gene sequences (e.g., the S. hyicus/S. intermedius and S. sciuri groups) as well as differences, e.g., the grouping of S. arlettae and S. kloosii in the gap-based tree. From our results, we propose the partial sequencing of the gap gene as an alternative molecular tool for the taxonomical analysis of Staphylococcus species and for decreasing the possibility of misidentification.
机译:16S rRNA基因序列的分析已成为普遍用于研究葡萄球菌的进化和分类学的技术。但是,此方法的结果与多相分类法的结果不符,并且相关物种不一定总是可以相互区分。因此,葡萄球菌属的新的系统发育标记。是必需的。我们对27种葡萄球菌物种的间隙基因(〜931 bp)进行了部分测序,该基因编码3-磷酸甘油醛脱氢酶。部分序列具有24.3%至96%的种间同源性,可用于鉴定葡萄球菌物种(F.Layer,B.Ghebremedhin,W.König和B.König,J.Microbiol.Methods 70:542-549,2007) 。发现部分葡萄球菌间隙序列的DNA序列相似性低于16S rRNA(〜97%),rpoB(〜86%),hsp60(〜82%)和sodA(〜78%)。系统发育学上的树木揭示了四个统计上支持的群体:S。hyicus / S。 intermedius,S. sciuri,S. haemolyticus / S。 simulans和金黄色葡萄球菌/表皮。 S. auricularis,S。cohnii亚种的分支。 cohnii 和异构的 S。腐生菌组,包含 S。腐生亚种 saprophyticus S。 equorum 子空间 equorum ,并不可靠。因此,基于 gap 基因序列的系统发育分析表明,基于其他基因序列(例如, S。hyicus / S。intermedius < / em>和 s。sciuri 组)以及区别,例如 S的分组。 arlettae S。基于 gap 的树中的kloosii 。根据我们的研究结果,我们建议对 gap 基因进行部分测序,作为对葡萄球菌物种进行分类学分析并减少错误识别可能性的替代分子工具。

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