Liu Jing, Wang Qun, Sun Minying, Zhu Linlin, Yang Michael, Zhao Yu
Traditional Chinese Medicine and Biotechnology Research and Development Center, Changchun University of Traditional Chinese Medicine, Changchun, Jilin, People's Republic of China.
College of Dental Medicine, Columbia University, New York, United States of America.
PLoS One. 2014 Nov 13;9(11):e112177. doi: 10.1371/journal.pone.0112177. eCollection 2014.
Quantitative real-time reverse transcription PCR (qRT-PCR) has become a widely used method for gene expression analysis; however, its data interpretation largely depends on the stability of reference genes. The transcriptomics of Panax ginseng, one of the most popular and traditional ingredients used in Chinese medicines, is increasingly being studied. Furthermore, it is vital to establish a series of reliable reference genes when qRT-PCR is used to assess the gene expression profile of ginseng. In this study, we screened out candidate reference genes for ginseng using gene expression data generated by a high-throughput sequencing platform. Based on the statistical tests, 20 reference genes (10 traditional housekeeping genes and 10 novel genes) were selected. These genes were tested for the normalization of expression levels in five growth stages and three distinct plant organs of ginseng by qPCR. These genes were subsequently ranked and compared according to the stability of their expressions using geNorm, NormFinder, and BestKeeper computational programs. Although the best reference genes were found to vary across different samples, CYP and EF-1α were the most stable genes amongst all samples. GAPDH/30S RPS20, CYP/60S RPL13 and CYP/QCR were the optimum pair of reference genes in the roots, stems, and leaves. CYP/60S RPL13, CYP/eIF-5A, aTUB/V-ATP, eIF-5A/SAR1, and aTUB/pol IIa were the most stably expressed combinations in each of the five developmental stages. Our study serves as a foundation for developing an accurate method of qRT-PCR and will benefit future studies on gene expression profiles of Panax Ginseng.
定量实时逆转录PCR(qRT-PCR)已成为一种广泛用于基因表达分析的方法;然而,其数据解读在很大程度上取决于内参基因的稳定性。人参是中药中最常用且传统的成分之一,对其转录组学的研究越来越多。此外,当使用qRT-PCR评估人参的基因表达谱时,建立一系列可靠的内参基因至关重要。在本研究中,我们利用高通量测序平台生成的基因表达数据筛选出人参的候选内参基因。基于统计检验,选择了20个内参基因(10个传统管家基因和10个新基因)。通过qPCR检测这些基因在人参五个生长阶段和三个不同植物器官中表达水平的标准化情况。随后,使用geNorm、NormFinder和BestKeeper计算程序根据这些基因表达的稳定性进行排名和比较。尽管发现最佳内参基因因不同样本而异,但CYP和EF-1α在所有样本中是最稳定的基因。GAPDH/30S RPS20、CYP/60S RPL13和CYP/QCR是根、茎和叶中最佳的内参基因对。CYP/60S RPL13、CYP/eIF-5A、aTUB/V-ATP、eIF-5A/SAR1和aTUB/pol IIa是五个发育阶段中每个阶段最稳定表达的组合。我们的研究为人参qRT-PCR准确方法的开发奠定了基础,并将有益于未来人参基因表达谱的研究。