Centre for Research in Agricultural Genomics (CRAG) CSIC-IRTA-UAB-UB, Edifici CRAG, Campus UAB, Cerdanyola del Vallès, Barcelona, Spain.
Roche Pharma Research and Early Development, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd., Basel, Switzerland.
Methods Mol Biol. 2023;2686:403-428. doi: 10.1007/978-1-0716-3299-4_20.
Real-time, or quantitative, reverse transcription polymerase chain reaction (qRT-PCR) is a powerful method for rapid and reliable quantification of mRNA abundance. Although it has not featured prominently in flower development research in the past, the availability of novel techniques for the synchronized induction of flower development, or for the isolation of cell-specific mRNA populations, suggests that detailed quantitative analyses of gene expression over time and in specific tissues and cell types by qRT-PCR will become more widely used. In this chapter, we discuss specific considerations for studying gene expression by using qRT-PCR, such as the identification of suitable reference genes for the experimental set-up used. In addition, we provide protocols for performing qRT-PCR experiments in a multiwell plate format (with the LightCycler 480 system, Roche) and with nanofluidic arrays (BioMark™ system, Fluidigm), which allow the automatic combination of sets of samples with sets of assays, and significantly reduce reaction volume and the number of liquid-handling steps performed during the experiment.
实时或定量逆转录聚合酶链反应(qRT-PCR)是一种快速可靠地定量 mRNA 丰度的强大方法。尽管过去在花发育研究中它并没有占据重要地位,但新型技术的出现使得花发育的同步诱导或特定细胞类型的 mRNA 群体的分离成为可能,这表明通过 qRT-PCR 对基因表达进行详细的时间和特定组织及细胞类型的定量分析将变得更加广泛地应用。在本章中,我们将讨论通过 qRT-PCR 研究基因表达的具体考虑因素,例如确定实验设置中合适的参考基因。此外,我们还提供了在多微孔板格式(使用罗氏 LightCycler 480 系统)和纳流控芯片(Fluidigm BioMark™系统)中进行 qRT-PCR 实验的方案,这些方案允许将样品组与检测组自动组合,并显著减少实验过程中的反应体积和液体处理步骤数。