J Appl Genet. 2013 Nov;54(4):391-406. doi: 10.1007/s13353-013-0173-x.
This paper aims to discuss various aspects of the use of reference genes in qPCR technique used in the thousands of present studies. Most frequently, these are housekeeping genes and they must meet several criteria so that they can lay claim to the name. Lots of papers report that in different conditions, for different organisms and even tissues the basic assumption—the constant level of the expression is not maintained for many genes that seem to be perfect candidates. Moreover, their transcription can not be affected by experimental factors. Sounds simple and clear but a great number of designed protocols and lack of consistency among them brings confusion on how to perform experiment properly. Since during selection of the most stable normalizing gene we can not use any reference gene, different ways and algorithms for their selection were developed. Such methods, including examples of best normalizing genes in some specific cases and possible mistakes are presented based on available sources. Numerous examples of reference genes applications, which are usually in too few numbers in relevant articles not allowing to make a solid fundament for a reader, will be shown along with instructive compilations to make an evidence for presented statements and an arrangement of future qPCR experiments. To include all the pitfalls and problems associated with the normalization methods there is no way not to begin from sample preparation and its storage going through candidate gene selection, primer design and statistical analysis. This is important because numerous short reviews available cover the topic only in lesser extent at the same time giving the reader false conviction of complete topic recognition.
本文旨在讨论在目前数以千计的 qPCR 技术研究中使用参考基因的各个方面。最常用的是管家基因,它们必须满足几个标准才能名副其实。许多论文报告称,在不同条件下,对于不同的生物体甚至组织,基本假设——许多看似完美候选者的基因的表达水平并不保持不变。此外,它们的转录不能受到实验因素的影响。听起来简单明了,但由于设计方案的数量众多且缺乏一致性,如何正确进行实验会让人感到困惑。由于在选择最稳定的正常化基因时我们不能使用任何参考基因,因此开发了不同的方法和算法来选择它们。这些方法包括在某些特定情况下最佳正常化基因的示例以及可能出现的错误,并基于现有来源进行了介绍。本文将展示大量参考基因应用的例子,这些例子在相关文章中通常数量较少,无法为读者提供坚实的基础,同时还将提供一些指导性的汇编,以证明所提出的观点,并为未来的 qPCR 实验提供安排。为了包括与归一化方法相关的所有陷阱和问题,我们必须从样本制备及其存储开始,一直到候选基因选择、引物设计和统计分析。这很重要,因为目前有许多简短的评论只在较小程度上涵盖了这个主题,同时让读者错误地认为他们已经完全理解了这个主题。