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Method for Rapid Identification and Differentiation of the Species of the Mycobacterium chelonae Complex Based on 16S-23S rRNA Gene Internal Transcribed Spacer PCR-Restriction Analysis

机译:16S-23S rRNA基因内部转录间隔区PCR限制性内切酶快速鉴定和鉴别分枝杆菌复合物种类的方法

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摘要

Members of the Mycobacterium chelonae complex (MCC), including M. immunogenum, M. chelonae, and M. abscessus, have been associated with nosocomial infections and occupational hypersensitivity pneumonitis due to metalworking fluid (MWF) exposures. In order to minimize these health hazards, an effective and rapid assay for detection of MCC species and differentiation of MCC species from other species of rapidly growing mycobacteria (RGM) and from one another is warranted. Here we report such a method, based on the variable 16S-23S rRNA gene internal transcribed spacer (ITS) region. Mycobacterium genus-specific primers derived from highly conserved sequences in the ITS region and the flanking 16S rRNA gene were used. Specificity of the primers was verified using the MCC member species, 11 non-MCC RGM species, 3 slow-growing mycobacterial (SGM) species (two strains each), and 19 field isolates, including 18 MCC isolates (from in-use MWF) and one non-MCC isolate (from reverse osmosis water). The ITS amplicon size of M. immunogenum varied from those of M. chelonae and M. abscessus. Sequencing of the ∼250-bp-long ITS amplicons of the three MCC member species showed differences in 24 to 34 bases, thereby yielding variable deduced restriction maps. ITS PCR-restriction analysis using the in silico-selected restriction enzyme MaeII or HphI differentiated the three MCC members from one another and from other RGM and SGM species without sequencing. The enzyme MaeII discriminated all three member species; however, HphI could only differentiate M. immunogenum from M. chelonae and M. abscessus. Use of an optimized rapid DNA template preparation step based on direct cell lysis in the PCR tube added to the simplicity and adaptability of the developed assay.
机译:由于暴露于金属加工液(MWF),包括M.immungenum,M.chelonae和脓肿M.abscessus在内的chelonae分支杆菌复合体(MCC)成员与医院感染和职业性超敏性肺炎相关。为了将这些健康危害降到最低,需要一种有效,快速的检测MCC物种并将MCC物种与其他快速增长的分枝杆菌(RGM)物种以及彼此区分的方法。在这里,我们基于可变的16S-23S rRNA基因内部转录间隔区(ITS)区报告这种方法。使用了分枝杆菌属特异性引物,该引物来源于ITS区的高度保守序列和侧翼的16S rRNA基因。使用MCC成员物种,11个非MCC RGM物种,3个缓慢生长的分枝杆菌(SGM)物种(每个2个菌株)和19个现场分离株(包括18个MCC分离株(来自使用中的MWF))验证了引物的特异性和一种非MCC隔离株(来自反渗透水)。免疫分枝杆菌的ITS扩增子大小不同于切氏支原体和脓肿分枝杆菌。三个MCC成员物种的〜250 bp长的ITS扩增子的测序显示24至34个碱基之间存在差异,从而产生了可变的推导限制性图谱。使用计算机选择的限制性酶MaeII或HphI进行的ITS PCR限制性分析,无需测序即可将三个MCC成员与其他RGM和SGM物种区分开。 MaeII酶可区分所有三种成员。然而,HphI只能区分M. chelgene和脓肿M.免疫原。在PCR管中基于直接细胞裂解的优化快速DNA模板制备步骤的使用增加了所开发测定的简单性和适应性。

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