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新型与传统定量实时PCR数据分析方法的实验验证

Experimental validation of novel and conventional approaches to quantitative real-time PCR data analysis.

作者信息

Peirson Stuart N, Butler Jason N, Foster Russell G

机构信息

Department of Integrative and Molecular Neuroscience, Division of Neuroscience and Psychological Medicine, Faculty of Medicine, Imperial College London, Charing Cross Hospital, Fulham Palace Road, London W6 8RF, UK.

出版信息

Nucleic Acids Res. 2003 Jul 15;31(14):e73. doi: 10.1093/nar/gng073.

Abstract

Real-time PCR is being used increasingly as the method of choice for mRNA quantification, allowing rapid analysis of gene expression from low quantities of starting template. Despite a wide range of approaches, the same principles underlie all data analysis, with standard approaches broadly classified as either absolute or relative. In this study we use a variety of absolute and relative approaches of data analysis to investigate nocturnal c-fos expression in wild-type and retinally degenerate mice. In addition, we apply a simple algorithm to calculate the amplification efficiency of every sample from its amplification profile. We confirm that nocturnal c-fos expression in the rodent eye originates from the photoreceptor layer, with around a 5-fold reduction in nocturnal c-fos expression in mice lacking rods and cones. Furthermore, we illustrate that differences in the results obtained from absolute and relative approaches are underpinned by differences in the calculated PCR efficiency. By calculating the amplification efficiency from the samples under analysis, comparable results may be obtained without the need for standard curves. We have automated this method to provide a means of streamlining the real-time PCR process, enabling analysis of experimental samples based upon their own reaction kinetics rather than those of artificial standards.

摘要

实时定量聚合酶链反应(Real-time PCR)正越来越多地被用作mRNA定量的首选方法,它能够对少量起始模板的基因表达进行快速分析。尽管有多种方法,但所有数据分析都基于相同的原理,标准方法大致可分为绝对定量法和相对定量法。在本研究中,我们使用了多种绝对定量和相对定量的数据分析方法,来研究野生型和视网膜退化小鼠的夜间c-fos表达情况。此外,我们应用一种简单的算法,根据每个样本的扩增曲线来计算其扩增效率。我们证实,啮齿动物眼中的夜间c-fos表达源自光感受器层,在缺乏视杆细胞和视锥细胞的小鼠中,夜间c-fos表达大约降低了5倍。此外,我们还表明,绝对定量法和相对定量法所得结果的差异,是由计算出的PCR效率差异所导致的。通过分析样本的扩增效率,可以获得可比的结果,而无需标准曲线。我们已经将此方法自动化,以提供一种简化实时PCR过程的手段,从而能够根据实验样本自身的反应动力学而非人工标准的反应动力学来进行分析。

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