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Real-Time PCR Detection of Brucella abortus: a Comparative Study of SYBR Green I, 5′-Exonuclease, and Hybridization Probe Assays

机译:实时PCR检测布鲁氏菌流产:SYBR Green I,5'-核酸外切酶和杂交探针分析的比较研究

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摘要

Real-time PCR provides a means of detecting and quantifying DNA targets by monitoring PCR product accumulation during cycling as indicated by increased fluorescence. A number of different approaches can be used to generate the fluorescence signal. Three approaches—SYBR Green I (a double-stranded DNA intercalating dye), 5′-exonuclease (enzymatically released fluors), and hybridization probes (fluorescence resonance energy transfer)—were evaluated for use in a real-time PCR assay to detect Brucella abortus. The three assays utilized the same amplification primers to produce an identical amplicon. This amplicon spans a region of the B. abortus genome that includes portions of the alkB gene and the IS711 insertion element. All three assays were of comparable sensitivity, providing a linear assay over 7 orders of magnitude (from 7.5 ng down to 7.5 fg). However, the greatest specificity was achieved with the hybridization probe assay.
机译:实时PCR通过监测循环过程中PCR产物的积累(提供荧光指示)来提供检测和定量DNA靶标的手段。许多不同的方法可用于产生荧光信号。评价了三种方法-SYBR Green I(双链DNA嵌入染料),5'-核酸外切酶(酶释放的荧光)和杂交探针(荧光共振能量转移),用于实时PCR分析以检测布鲁氏菌病流产。三种测定法利用相同的扩增引物产生相同的扩增子。该扩增子跨越流产芽孢杆菌基因组的区域,该区域包括alkB基因和IS711插入元件的一部分。所有这三种测定的灵敏度均相当,可提供超过7个数量级的线性测定(从7.5 ng降至7.5 fg)。然而,通过杂交探针测定实现了最大的特异性。

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