Instituto de Fisiología Vegetal, INFIVE, Universidad Nacional de La Plata, CONICET, La Plata, Buenos Aires, Argentina.
Boyce Thompson Institute for Plant Research, 533 Tower Road, Ithaca, NY, 14853, USA.
Sci Rep. 2019 Feb 7;9(1):1632. doi: 10.1038/s41598-018-38247-2.
RT-qPCR is a widely used technique for the analysis of gene expression. Accurate estimation of transcript abundance relies strongly on a normalization that requires the use of reference genes that are stably expressed in the conditions analyzed. Initially, they were adopted from those used in Northern blot experiments, but an increasing number of publications highlight the need to find and validate alternative reference genes for the particular system under study. The development of high-throughput sequencing techniques has facilitated the identification of such stably expressed genes. Nicotiana benthamiana has been extensively used as a model in the plant research field. In spite of this, there is scarce information regarding suitable RT-qPCR reference genes for this species. Employing RNA-seq data previously generated from tomato plants, combined with newly generated data from N. benthamiana leaves infiltrated with Pseudomonas fluorescens, we identified and tested a set of 9 candidate reference genes. Using three different algorithms, we found that NbUbe35, NbNQO and NbErpA exhibit less variable gene expression in our pathosystem than previously used genes. Furthermore, the combined use of the first two is sufficient for robust gene expression analysis. We encourage employing these novel reference genes in future RT-qPCR experiments involving N. benthamiana and Pseudomonas spp.
实时荧光定量 PCR(RT-qPCR)是分析基因表达的一种广泛应用的技术。准确估计转录本丰度强烈依赖于需要使用在分析条件下稳定表达的参考基因进行标准化。最初,它们是从那些用于 Northern blot 实验的基因中采用的,但越来越多的出版物强调需要为所研究的特定系统找到和验证替代的参考基因。高通量测序技术的发展促进了这些稳定表达基因的鉴定。本氏烟被广泛用作植物研究领域的模型。尽管如此,关于该物种适合的 RT-qPCR 参考基因的信息却很少。我们利用先前从番茄植物中生成的 RNA-seq 数据,结合从用荧光假单胞菌浸润的本氏烟叶片中生成的新数据,鉴定并测试了一组 9 个候选参考基因。使用三种不同的算法,我们发现 NbUbe35、NbNQO 和 NbErpA 在我们的病理系统中的基因表达变化比以前使用的基因更小。此外,前两个基因的组合使用足以进行稳健的基因表达分析。我们鼓励在涉及本氏烟和假单胞菌属的未来 RT-qPCR 实验中使用这些新的参考基因。