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Mathematics of quantitative kinetic PCR and the application of standard curves

机译:定量动力学PCR的数学和标准曲线的应用

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摘要

Fluorescent monitoring of DNA amplification is the basis of real-time PCR, from which target DNA concentration can be determined from the fractional cycle at which a threshold amount of amplicon DNA is produced. Absolute quantification can be achieved using a standard curve constructed by amplifying known amounts of target DNA. In this study, the mathematics of quantitative PCR are examined in detail, from which several fundamental aspects of the threshold method and the application of standard curves are illustrated. The construction of five replicate standard curves for two pairs of nested primers was used to examine the reproducibility and degree of quantitative variation using SYBER® Green I fluorescence. Based upon this analysis the application of a single, well- constructed standard curve could provide an estimated precision of ±6–21%, depending on the number of cycles required to reach threshold. A simplified method for absolute quantification is also proposed, in which quantitative scale is determined by DNA mass at threshold.
机译:DNA扩增的荧光监测是实时PCR的基础,从中可以从产生阈值数量的扩增子DNA的分数循环中确定目标DNA浓度。可以使用通过扩增已知量的目标DNA构建的标准曲线来实现绝对定量。在这项研究中,详细研究了定量PCR的数学原理,从中阐明了阈值方法的几个基本方面以及标准曲线的应用。使用两对嵌套引物构建五个重复标准曲线,以使用SYBER Green I荧光检查可重复性和定量变异程度。基于此分析,根据达到阈值所需的循环次数,应用一条结构良好的标准曲线可以提供±6–21%的估计精度。还提出了一种简化的绝对定量方法,其中定量规模由阈值处的DNA质量决定。

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