State Key Laboratory of Agro-Biotechnology and Ministry of Agriculture Key Laboratory of Soil Microbiology, College of Biological Sciences, China Agricultural University, Beijing 100193, PR China.
J Biotechnol. 2013 Oct 10;168(1):7-14. doi: 10.1016/j.jbiotec.2013.08.008. Epub 2013 Aug 14.
Both genome-wide transcriptomic surveys of the mRNA expression profiles and virus-induced gene silencing-based molecular studies of target gene during virus-plant interaction involve the precise estimation of the transcript abundance. Quantitative real-time PCR (qPCR) is the most widely adopted technique for mRNA quantification. In order to obtain reliable quantification of transcripts, identification of the best reference genes forms the basis of the preliminary work. Nevertheless, the stability of internal controls in virus-infected monocots needs to be fully explored. In this work, the suitability of ten housekeeping genes (ACT, EF1α, FBOX, GAPDH, GTPB, PP2A, SAND, TUBβ, UBC18 and UK) for potential use as reference genes in qPCR were investigated in five different monocot plants (Brachypodium, barley, sorghum, wheat and maize) under infection with different viruses including Barley stripe mosaic virus (BSMV), Brome mosaic virus (BMV), Rice black-streaked dwarf virus (RBSDV) and Sugarcane mosaic virus (SCMV). By using three different algorithms, the most appropriate reference genes or their combinations were identified for different experimental sets and their effectiveness for the normalisation of expression studies were further validated by quantitative analysis of a well-studied PR-1 gene. These results facilitate the selection of desirable reference genes for more accurate gene expression studies in virus-infected monocots.
在病毒-植物相互作用过程中,对 mRNA 表达谱的全基因组转录组调查和基于病毒诱导基因沉默的靶基因分子研究都涉及转录本丰度的精确估计。定量实时 PCR(qPCR)是用于 mRNA 定量的最广泛采用的技术。为了获得可靠的转录本定量,鉴定最佳参考基因是初步工作的基础。然而,需要充分探索感染病毒的单子叶植物中内参的稳定性。在这项工作中,在感染不同病毒(包括大麦条纹花叶病毒(BSMV)、雀麦花叶病毒(BMV)、水稻黑条矮缩病毒(RBSDV)和甘蔗花叶病毒(SCMV))的五种不同单子叶植物(拟南芥、大麦、高粱、小麦和玉米)中,研究了十种管家基因(ACT、EF1α、FBOX、GAPDH、GTPB、PP2A、SAND、TUBβ、UBC18 和 UK)作为 qPCR 中潜在参考基因的适用性。使用三种不同的算法,确定了不同实验集的最合适的参考基因或其组合,并通过对一个经过充分研究的 PR-1 基因的定量分析进一步验证了其用于表达研究归一化的有效性。这些结果有助于为感染病毒的单子叶植物中更准确的基因表达研究选择理想的参考基因。