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基于 PCR 的种间间隔区-毛细管凝胶电泳分型方法,用于鉴定和细分诺卡氏菌属。

A PCR-based intergenic spacer region-capillary gel electrophoresis typing method for identification and subtyping of Nocardia species.

机构信息

Centre for Infectious Diseases and Microbiology Laboratory Services, Institute of Clinical Pathology and Medical Research, Westmead Hospital, NSW, Australia.

出版信息

J Clin Microbiol. 2012 Nov;50(11):3478-84. doi: 10.1128/JCM.01311-12. Epub 2012 Aug 8.

Abstract

While 16S rRNA sequence-based identification of Nocardia species has become the gold standard, it is not without its limitations. We evaluated a novel approach encompassing the amplification of the Nocardia 16S-23S rRNA intergenic spacer (IGS) region followed by fragment analysis by capillary gel electrophoresis (CGE) of the amplified product for species identification of Nocardia. One hundred forty-five Nocardia isolates (19 species) and four non-Nocardia aerobic actinomycetes were studied. Reproducibility testing was performed in a subset (21%) of isolates. Ninety-five different electropherograms were identified, with heterogeneity within species being a general observation. Among common Nocardia species (e.g., Nocardia cyriacigeorgica, N. nova, N. farcinica), 2 or 3 dominant electropherogram subgroups were typical. While only a minority (8/19; 42%) of the different Nocardia species contained isolates displaying unique fragment sizes that were predictive of a particular species, virtually all isolates (142/145; 98%) could be assigned to the correct species using IGS-CGE typing based on the number and size of amplified fragments. The median number of fragments for each isolate was 2 (range, 1 to 5) with only a minority (17%) having a single fragment detected. The majority (93%) of amplified fragments were between 408 and 461 bp. The technique was also non-operator dependent, highly reproducible, and quicker and less expensive than 16S sequencing. In summary, PCR-based IGS-CGE typing is relatively simple, accurate, reproducible, and cost-effective and offers a potential alternative to 16S rRNA sequencing for identifying and subtyping Nocardia isolates.

摘要

虽然基于 16S rRNA 序列的诺卡氏菌种鉴定已成为金标准,但它并非没有局限性。我们评估了一种新方法,包括扩增诺卡氏菌 16S-23S rRNA 基因间隔区(IGS),然后对扩增产物进行毛细管凝胶电泳(CGE)片段分析,以鉴定诺卡氏菌的种。我们研究了 145 株诺卡氏菌分离株(19 个种)和 4 株非诺卡氏需氧放线菌。在分离株的一个亚组(21%)中进行了重复性测试。鉴定出了 95 种不同的电泳图谱,种内存在异质性是普遍现象。在常见的诺卡氏菌(如 Nocardia cyriacigeorgica、Nocardia nova 和 Nocardia farcinica)中,通常存在 2 或 3 个主要的电泳图谱亚群。虽然只有少数(8/19;42%)不同的诺卡氏菌种包含显示特定种预测性独特片段大小的分离株,但实际上,几乎所有的分离株(142/145;98%)都可以通过 IGS-CGE 分型根据扩增片段的数量和大小分配到正确的种。每个分离株的片段中位数为 2(范围为 1 至 5),只有少数(17%)检测到单个片段。大多数扩增片段(93%)在 408 至 461 bp 之间。该技术也不依赖于操作人员,具有高度可重复性,比 16S 测序更快、更便宜。总之,基于 PCR 的 IGS-CGE 分型相对简单、准确、可重复、经济有效,为鉴定和亚分型诺卡氏菌分离株提供了一种替代 16S rRNA 测序的潜在方法。

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