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Selection of internal control genes for quantitative real-time RT-PCR studies during tomato development process

机译:在番茄发育过程中选择用于实时定量RT-PCR研究的内部控制基因

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Background The elucidation of gene expression patterns leads to a better understanding of biological processes. Real-time quantitative RT-PCR has become the standard method for in-depth studies of gene expression. A biologically meaningful reporting of target mRNA quantities requires accurate and reliable normalization in order to identify real gene-specific variation. The purpose of normalization is to control several variables such as different amounts and quality of starting material, variable enzymatic efficiencies of retrotranscription from RNA to cDNA, or differences between tissues or cells in overall transcriptional activity. The validity of a housekeeping gene as endogenous control relies on the stability of its expression level across the sample panel being analysed. In the present report we describe the first systematic evaluation of potential internal controls during tomato development process to identify which are the most reliable for transcript quantification by real-time RT-PCR. Results In this study, we assess the expression stability of 7 traditional and 4 novel housekeeping genes in a set of 27 samples representing different tissues and organs of tomato plants at different developmental stages. First, we designed, tested and optimized amplification primers for real-time RT-PCR. Then, expression data from each candidate gene were evaluated with three complementary approaches based on different statistical procedures. Our analysis suggests that SGN-U314153 ( CAC ), SGN-U321250 ( TIP41 ), SGN-U346908 (" Expressed ") and SGN-U316474 ( SAND ) genes provide superior transcript normalization in tomato development studies. We recommend different combinations of these exceptionally stable housekeeping genes for suited normalization of different developmental series, including the complete tomato development process. Conclusion This work constitutes the first effort for the selection of optimal endogenous controls for quantitative real-time RT-PCR studies of gene expression during tomato development process. From our study a tool-kit of control genes emerges that outperform the traditional genes in terms of expression stability.
机译:背景技术对基因表达模式的阐明使人们对生物学过程有了更好的了解。实时定量RT-PCR已成为深入研究基因表达的标准方法。对靶mRNA量的生物学意义的报告需要准确可靠的归一化才能鉴定真正的基因特异性变异。标准化的目的是控制几个变量,例如起始材料的数量和质量不同,从RNA到cDNA的逆转录的可变酶促效率,或组织或细胞之间在总体转录活性方面的差异。管家基因作为内源性对照的有效性取决于其在整个分析样本中的表达水平的稳定性。在本报告中,我们描述了对番茄发育过程中潜在内部控制的第一个系统评价,以确定哪个是实时RT-PCR转录定量最可靠的。结果在这项研究中,我们评估了7个传统和4个新持家基因在一组27个样品中的表达稳定性,这些样品代表番茄植物在不同发育阶段的不同组织和器官。首先,我们设计,测试和优化了用于实时RT-PCR的扩增引物。然后,根据不同的统计程序,使用三种互补方法评估每个候选基因的表达数据。我们的分析表明,SGN-U314153(CAC),SGN-U321250(TIP41),SGN-U346908(“表达”)和SGN-U316474(SAND)基因在番茄发育研究中提供了优异的转录本标准化。我们建议使用这些异常稳定的管家基因的不同组合,以适合不同发育系列的正常化,包括完整的番茄发育过程。结论这项工作是为番茄发育过程中基因表达的定量实时RT-PCR研究选择最佳内源性对照的第一步。通过我们的研究,出现了一套控制基因工具,其表达稳定性优于传统基因。

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