首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Bias in the Cq value observed with hydrolysis probe based quantitative PCR can be corrected with the estimated PCR efficiency value.
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Bias in the Cq value observed with hydrolysis probe based quantitative PCR can be corrected with the estimated PCR efficiency value.

机译:使用基于水解探针的定量PCR观察到的Cq值偏差可以通过估算的PCR效率值进行校正。

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摘要

For real-time monitoring of PCR amplification of DNA, quantitative PCR (qPCR) assays use various fluorescent reporters. DNA binding molecules and hybridization reporters (primers and probes) only fluoresce when bound to DNA and result in the non-cumulative increase in observed fluorescence. Hydrolysis reporters (TaqMan probes and QZyme primers) become fluorescent during DNA elongation and the released fluorophore remains fluorescent during further cycles; this results in a cumulative increase in observed fluorescence. Although the quantification threshold is reached at a lower number of cycles when fluorescence accumulates, in qPCR analysis no distinction is made between the two types of data sets. Mathematical modeling shows that ignoring the cumulative nature of the data leaves the estimated PCR efficiency practically unaffected but will lead to at least one cycle underestimation of the quantification cycle (C(q) value), corresponding to a 2-fold overestimation of target quantity. The effect on the target-reference ratio depends on the PCR efficiency of the target and reference amplicons. The leftward shift of the C(q) value is dependent on the PCR efficiency and with sufficiently large C(q) values, this shift is constant. This allows the C(q) to be corrected and unbiased target quantities to be obtained.
机译:为了实时监测DNA的PCR扩增,定量PCR(qPCR)分析使用了各种荧光报告基因。 DNA结合分子和杂交报告分子(引物和探针)仅在与DNA结合时发出荧光,导致观察到的荧光非累积增加。水解报道分子(TaqMan探针和QZyme引物)在DNA延伸过程中发荧光,释放的荧光团在以后的循环中仍保持荧光。这导致观察到的荧光的累积增加。尽管当荧光累积时以较低的循环次数达到了定量阈值,但在qPCR分析中,没有对两种类型的数据集进行区分。数学模型表明,忽略数据的累积性质实际上不会影响估计的PCR效率,但会导致量化周期(C(q)值)至少低估一个周期,相当于目标数量高估了2倍。对靶标-参考比例的影响取决于靶标和参考扩增子的PCR效率。 C(q)值的向左移动取决于PCR效率,如果C(q)值足够大,则该移动是恒定的。这允许校正C(q),并获得无偏目标量。

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