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首页> 外文期刊>Journal of Clinical Microbiology >Real-Time Quantitative Broad-Range PCR Assay for Detection of the 16S rRNA Gene Followed by Sequencing for Species Identification
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Real-Time Quantitative Broad-Range PCR Assay for Detection of the 16S rRNA Gene Followed by Sequencing for Species Identification

机译:实时定量广域PCR检测16S rRNA基因,随后进行序列鉴定

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Here we determined the analytical sensitivities of broad-range real-time PCR-based assays employing one of three different genomic DNA extraction protocols in combination with one of three different primer pairs targeting the 16S rRNA gene to detect a panel of 22 bacterial species. DNA extraction protocol III, using lysozyme, lysostaphin, and proteinase K, followed by PCR with the primer pair Bak11W/Bak2, giving amplicons of 796 bp in length, showed the best overall sensitivity, detecting DNA of 82% of the strains investigated at concentrations of ≤102 CFU in water per reaction. DNA extraction protocols I and II, using less enzyme treatment, combined with other primer pairs giving shorter amplicons of 466 bp and 342 or 346 bp, respectively, were slightly more sensitive for the detection of gram-negative but less sensitive for the detection of gram-positive bacteria. The obstacle of detecting background DNA in blood samples spiked with bacteria was circumvented by introducing a broad-range hybridization probe, and this preserved the minimal detection limits observed in samples devoid of blood. Finally, sequencing of the amplicons generated using the primer pair Bak11W/Bak2 allowed species identification of the detected bacterial DNA. Thus, broad-spectrum PCR targeting the 16S rRNA gene in the quantitative real-time format can achieve an analytical sensitivity of 1 to 10 CFU per reaction in water, avoid detection of background DNA with the introduction of a broad-range probe, and generate amplicons that allow species identification of the detected bacterial DNA by sequencing. These prerequisites are important for its application to blood-containing patient samples.
机译:在这里,我们确定了使用三种不同基因组DNA提取方案之一和靶向16S rRNA基因的三种不同引物对之一来检测一组22种细菌的基于实时PCR的广泛测定的分析灵敏度。使用溶菌酶,溶葡萄球菌素和蛋白酶K的DNA提取方案III,然后用引物对Bak11W / Bak2进行PCR,产生长度为796 bp的扩增子,显示出最佳的整体灵敏度,检测了82%浓度的菌株的DNA每个反应中的≤10 2 CFU。 DNA提取方案I和II使用较少的酶处理,与其他引物对组合,分别产生较短的466 bp和342或346 bp的扩增子,对革兰氏阴性检测灵敏度稍高,但对革兰氏阴性检测灵敏度较低阳性细菌。通过引入大范围杂交探针可以避免检测掺入细菌的血液样本中背景DNA的障碍,从而保留了在无血样本中观察到的最低检测限。最后,对使用引物对Bak11W / Bak2生成的扩增子进行测序,可以对检测到的细菌DNA进行种类鉴定。因此,以定量实时格式靶向16S rRNA基因的广谱PCR可以实现水中每个反应1至10 CFU的分析灵敏度,避免通过引入大范围探针来检测背景DNA并产生允许通过测序鉴定所检测细菌DNA的扩增子。这些先决条件对于将其应用于含血患者样品很重要。

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