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首页> 外文期刊>Journal of Clinical Microbiology >Multiple Copies of the 16S rRNA Gene in Nocardia nova Isolates and Implications for Sequence-Based Identification Procedures
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Multiple Copies of the 16S rRNA Gene in Nocardia nova Isolates and Implications for Sequence-Based Identification Procedures

机译:诺卡氏菌新星分离物中16S rRNA基因的多个拷贝及其对基于序列的鉴定程序的启示

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摘要

Molecular investigation of two Nocardia patient isolates showed unusual restriction fragment length polymorphism patterns with restriction endonuclease assays (REA) using an amplified portion of the 16S rRNA gene. Patterns typical of Nocardia nova were obtained with REA of an amplified portion of the 65-kDa heat shock protein gene. Subsequent sequence analysis of the 16S rRNA gene regions of these isolates showed the presence of ambiguous bases within an expected restriction endonuclease recognition site which were not able to be resolved on repeat testing. Cloning of amplified regions of the 16S rRNA genes and subsequent sequencing of the resulting clones from the two patient isolates showed three different 16S rRNA gene sequences which corresponded to sequences found in N. nova, a molecular variant of N. nova, and a previously undescribed sequence. Hybridization studies using a DNA probe corresponding to an 89-bp conserved region of the 16S rRNA gene confirmed the presence of at least two copies of the 16S rRNA gene in the N. nova type strain, in a patient isolate identical to the molecular variant of N. nova, and in the two other patient isolates. All isolates were found to belong to the species N. nova as determined by DNA-DNA hybridization. Because minimal variation has been found in the 16S rRNA gene sequences of different species of Nocardia, those laboratories employing molecular methods for identification of these species must be aware of the potential identification complications that may be caused by the presence of differing 16S rRNA genes in the same isolate.
机译:对两个 Nocardia 患者分离物的分子研究显示,使用16S rRNA基因的扩增部分进行限制性内切核酸酶分析(REA),具有异常的限制性片段长度多态性模式。用65kDa热休克蛋白基因的扩增部分的REA获得了典型的 Nocardia nova 模式。这些分离物的16S rRNA基因区域的后续序列分析表明,预期的限制性核酸内切酶识别位点内存在歧义碱基,这些碱基无法通过重复测试解决。克隆16S rRNA基因的扩增区域,然后对来自两个患者分离株的所得克隆进行测序,结果显示了三个不同的16S rRNA基因序列,它们对应于 N中发现的序列。 nova ,是 N的分子变体。 nova ,以及之前未描述的序列。使用与16S rRNA基因的89 bp保守区相对应的DNA探针进行的杂交研究证实了 N中存在至少两个拷贝的16S rRNA基因。病人中分离出的新星型菌株,该菌株与 N的分子变体相同。 nova ,以及另外两个患者分离株。发现所有分离物均属于物种 N。 DNA-DNA杂交测定的新星。由于在诺卡氏菌的不同物种的16S rRNA基因序列中发现的变异很小,因此那些采用分子生物学方法鉴定这些物种的实验室必须意识到可能存在的鉴定并发症。同一分离物中不同16S rRNA基因的差异

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