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Phylogeny of the Mycoplasma mycoides cluster as determined by sequence analysis of the 16S rRNA genes from the two rRNA operons.

机译:通过对两个rRNA操纵子的16S rRNA基因进行序列分析确定了支原体支原体簇的系统发育。

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摘要

The so-called Mycoplasma mycoides cluster consists of six species or subspecies of mycoplasmas (Mollicutes). These species are pathogenic for ruminants and some of them are of great concern in veterinary medicine. The members of the M. mycoides cluster have two rRNA operons (rrnA and rrnB). The nucleotide sequences of the 16S rRNA genes of 10 strains, representing all of the known species and subspecies of the M. mycoides cluster, were determined by direct automated solid-phase DNA sequencing. The sequences of both rRNA operons were determined by a novel strategy involving in vitro amplification by PCR with one operon-specific primer pair and one general primer pair. Interestingly, sequence differences (polymorphisms) between the two operons were observed for all strains. Two strains of M. capricolum subsp. capripneumoniae were sequenced, and 15 polymorphisms were found in the type strain (F38) and 17 polymorphisms were found in the other strain (4/2LC). Eight polymorphisms were found in the 16S rRNA genes of the M. mycoides subsp. mycoides small-colony type, and sequence length variations in a poly(A) region were observed in the 16S rRNA genes of the two operons of this species. Secondary-structure analysis showed that polymorphisms were present in both stem and loop regions. The nucleotide substitutions in the polymorphic sites of the stem regions often resulted in a change from a canonical to a noncanonical base pairing or vice versa. A compensatory mutation was never observed in the other nucleotide of the base pair. Phylogenetic analysis based on the 16S rRNA sequences indicated that Mycoplasma sp. strain PG50 should be included in the M. capricolum species group. Furthermore, the 16S rRNA sequences of M. mycoides subsp. capri and the M. mycoides subsp. mycoides large-colony type were 99.9% identical. We therefore suggest that these species be reclassified in a common species group (for instance, "Mycoplasma capri") distinct from the M. mycoides subsp. mycoides small-colony type, which formed an intermediate branch between the M. capricolum species group and the M. capri species group.
机译:所谓的支原体支原体簇由支原体(Mollicutes)的六个种或亚种组成。这些物种对反刍动物具有致病性,其中一些在兽医学中引起极大关注。蕈状支原体簇的成员具有两个rRNA操纵子(rrnA和rrnB)。通过直接自动固相DNA测序,确定了10个菌株的16S rRNA基因的核苷酸序列,它们代表了蕈状支原体簇的所有已知物种和亚种。通过一种新颖的策略确定两个rRNA操纵子的序列,该策略涉及使用一个操纵子特异性引物对和一个通用引物对通过PCR进行体外扩增。有趣的是,所有菌株均观察到两个操纵子之间的序列差异(多态性)。 M. capricolum亚种的两个菌株。测序了对肺炎克雷伯菌的测序,在该菌株(F38)中发现了15个多态性,在另一个菌株(4 / 2LC)中发现了17个多态性。在支原体亚种的16S rRNA基因中发现了八个多态性。在该物种的两个操纵子的16S rRNA基因中观察到了霉菌小菌落类型和poly(A)区域的序列长度变化。二级结构分析表明,茎和环区均存在多态性。茎区多态性位点中的核苷酸取代通常导致从经典碱基配对变为非经典碱基配对,反之亦然。在碱基对的另一个核苷酸中从未观察到代偿性突变。基于16S rRNA序列的系统发育分析表明支原体sp。 PG50菌株应包括在心梗分支杆菌种组中。此外,蕈状支原体亚种的16S rRNA序列。卡普里岛和霉菌分支杆菌亚种菌丝体大菌落类型的同源性为99.9%。因此,我们建议将这些物种重新分类为不同于分支杆菌支原体亚种的常见物种组(例如“ Capco支原体”)。霉菌小菌落型,在小枝蔓菌种组和卡普里菌种组之间形成中间分支。

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