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Utility of internally transcribed 16S-23S rDNA spacer regions for the definition of Pseudomonas stutzeri genomovars and other Pseudomonas species

机译:内部转录的16S-23S rDNA间隔区用于定义斯氏假单胞菌基因型和其他假单胞菌种的用途

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摘要

Bacteria identified and classified as Pseudomonas stutzeri, on the basis of traditional criteria, are recognized to be markedly heterogeneous, such that a systematic phenotypic characterization has not been correlated with genotypic groupings (i.e. genomovars) based upon DNA-DNA similarities. The internally transcribed 16S-23S rDNA spacer (ITS1) regions of P. stutzeri were analysed with respect to the ability of these nucleic acid regions to differentiate and identify the genomic groups (i.e. genomovars) of P. stutzeri. The ITS1s of 34 strains of P. stutzeri were amplified by PCR and the PCR product was subjected to RFLP analysis, which allowed the differentiation and identification of the strains to their respective genomovars. Sequence determination and analysis of ITS1s supported further the results obtained by RFLP, i.e. nucleotide signatures were identified in strains belonging to different genomovars. The ITS1s of all strains of P. stutzeri contained the tandem tRNA(Ile)/tRNA(Ala) genes and did not exhibit distinct sequence heterogeneity between different operons of a strain. Phylogenetically informative variable sites were located, exclusively, in non-coding regions. The results of the RFLP and sequence analysis of ITS1s supported and correlated with the phylogenetic relationships estimated from 16S rRNA gene sequence comparisons and DNA-DNA hybridizations, offering an alternative tool for genomovar and species differentiation.
机译:根据传统标准,被鉴定并归类为斯氏假单胞菌的细菌被认为具有明显的异质性,因此基于DNA-DNA相似性的系统表型特征尚未与基因型分组(即基因型)相关联。就这些核酸区域区分和鉴定斯图氏假单胞菌的基因组(即基因组)的能力进行分析,分析了斯图氏假单胞菌的内部转录的16S-23S rDNA间隔区(ITS1)区域。通过PCR扩增了34株斯图氏假单胞菌的ITS1,并对PCR产物进行了RFLP分析,从而可以区分和鉴定出它们各自的基因型。 ITS1的序列测定和分析进一步支持了RFLP获得的结果,即在属于不同基因型的菌株中鉴定了核苷酸标记。 Stutzeri的所有菌株的ITS1都包含串联的tRNA(Ile)/ tRNA(Ala)基因,并且在菌株的不同操纵子之间没有表现出明显的序列异质性。系统发育信息可变位点专门位于非编码区。 RFLP的结果和ITS1的序列分析支持并与从16S rRNA基因序列比较和DNA-DNA杂交估计的系统发育关系相关,为基因组和物种分化提供了另一种工具。

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