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Gene encoding the CTP synthetase as an appropriate molecular tool for identification and phylogenetic study of the family Bifidobacteriaceae

机译:编码CTP合成酶的基因,作为鉴定和系统研究双歧杆菌科的合适分子工具

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摘要

An alternative molecular marker with respect to the 16S rRNA gene demonstrating better identification and phylogenetic parameters has not been designed for the whole Bifidobacteriaceae family, which includes the genus Bifidobacterium and scardovial genera. Therefore, the aim of the study was to find such a gene in available genomic sequences, suggest appropriate means and conditions for asmplification and sequencing of the desired region of the selected gene in various strains of the bacterial family and verify the importance in classification and phylogeny. Specific primers flanking the variable region (~800?pb) within the pyrG gene encoding the CTP synthetase were designed by means of gene sequences retrieved from the genomes of strains belonging to the family Bifidobacteriaceae . The functionality and specificity of the primers were subsequently tested on the wild (7) and type strains of bifidobacteria (36) and scardovia (7). Comparative and phylogenetic studies based on obtained sequences revealed actual significance in classification and phylogeny of the Bifidobacteriaceae family. Gene statistics (percentages of mean sequence similarities and identical sites, mean number of nucleotide differences, P ‐ and K ‐distances) and phylogenetic analyses (congruence between tree topologies, percentages of bootstrap values 50 and 70%) indicate that the pyrG gene represents an alternative identification and phylogenetic marker exhibiting higher discriminatory power among strains, (sub)species, and genera than the 16S rRNA gene. Sequences of the particular gene fragment, simply achieved through specific primers, enable more precisely to classify and evaluate phylogeny of the family Bifidobacteriaceae including, with some exceptions, health‐promoting probiotic bacteria.
机译:尚未针对整个双歧杆菌科(包括双歧杆菌属和Scardovial属)设计与16S rRNA基因有关的另一种分子标记,以证明其具有更好的鉴定和系统发育参数。因此,该研究的目的是在可用的基因组序列中找到这样的基因,为在各种细菌家族菌株中选择的基因的所需区域进行扩增和测序提供适当的手段和条件,并验证其在分类和系统发育上的重要性。 。利用从双歧杆菌科的菌株基因组中检索到的基因序列,设计了在编码CTP合成酶的pyrG基因内可变区(〜800?pb)侧翼的特异性引物。随后在野生双歧杆菌(36)和双歧杆菌(36)和斯多维亚(7)的野生株和典型菌株中测试了引物的功能和特异性。基于获得的序列的比较和系统发育研究表明,在双歧杆菌科的分类和系统发育中具有实际意义。基因统计(平均序列相似性和相同位点的百分比,核苷酸差异的平均数,P和K距离的百分比)和系统发育分析(树形拓扑之间的一致性,自举值的百分比> 50和70%)表明,pyrG基因代表一种替代的鉴定和系统发生标记,与16S rRNA基因相比,在菌株,(亚)种和属中表现出更高的区分能力。只需通过特定引物即可简单地获得特定基因片段的序列,从而可以更精确地分类和评估双歧杆菌科的系统发育,其中包括(除某些例外)促进健康的益生菌。

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