Chen Yu, Tan Zhiqun, Hu Baoyun, Yang Zhimin, Xu Bin, Zhuang Lili, Huang Bingru
College of Ago-grassland Science, Nanjing Agricultural University, Nanjing 210095, China.
Department of Plant Biology and Pathology, Rutgers University, New Brunswick, NJ 08901, USA.
Physiol Plant. 2015 Oct;155(2):138-148. doi: 10.1111/ppl.12302. Epub 2014 Nov 24.
Quantitative real-time reverse transcriptase polymerase chain reaction (qRT-PCR) is an effective method for quantifying expression levels of target genes. The accuracy of qRT-PCR results is largely dependent on the selection of stable reference genes. The stability of reference gene expression may vary with plant species and environmental conditions. The objective of this study was to select stable reference genes for qRT-PCR analysis of target genes in different organs under different abiotic stresses for a perennial grass species, bermudagrass (Cynodon dactylon). The stability of eight potential reference genes (TUB, ACT, GAPDH, EF1α, TIP41, PP2A, CACS and UPL7) was evaluated under four different abiotic stresses (salt, drought, cold and heat) and in leaves and roots of bermudagrass. Four programs (geNorm, NormFinder, BestKeeper and RefFinder) were employed to evaluate the stability of reference gene expression and to identify the most stable reference genes for bermudagrass. Eight potential reference genes exhibited differential expression stability in leaves and roots under salt, drought, cold and heat stress. The expression levels of PP2A and CACS were stable in roots and leaves under salt stress, in leaves under drought stress and in roots exposed to cold and heat stress. EF1α and TIP41 expression was stable in roots of drought-stressed plants. UPL7, TUB and GAPDH were stably expressed in leaves under cold stress. Expression levels of PP2A and TIP41 were stable in leaves under heat stress. The use of the reference genes identified as internal controls for examination of gene expression patterns and quantification of expression levels of target genes will enable accurate qRT-PCR analysis in bermudagrass.
定量实时逆转录聚合酶链反应(qRT-PCR)是一种定量目标基因表达水平的有效方法。qRT-PCR结果的准确性在很大程度上取决于稳定参考基因的选择。参考基因表达的稳定性可能因植物物种和环境条件而异。本研究的目的是为多年生草本植物狗牙根(Cynodon dactylon)在不同非生物胁迫下不同器官中目标基因的qRT-PCR分析选择稳定的参考基因。在四种不同的非生物胁迫(盐、干旱、寒冷和高温)下以及狗牙根的叶片和根中评估了八个潜在参考基因(TUB、ACT、GAPDH、EF1α、TIP41、PP2A、CACS和UPL7)的稳定性。采用四个程序(geNorm、NormFinder、BestKeeper和RefFinder)来评估参考基因表达的稳定性,并确定狗牙根最稳定的参考基因。八个潜在参考基因在盐、干旱、寒冷和高温胁迫下的叶片和根中表现出不同的表达稳定性。PP2A和CACS的表达水平在盐胁迫下的根和叶中、干旱胁迫下的叶中以及暴露于寒冷和高温胁迫的根中是稳定的。EF1α和TIP41的表达在干旱胁迫植物的根中是稳定的。UPL7、TUB和GAPDH在寒冷胁迫下的叶片中稳定表达。PP2A和TIP41的表达水平在高温胁迫下的叶片中是稳定的。将鉴定出的参考基因用作内部对照来检查基因表达模式和定量目标基因的表达水平,将能够在狗牙根中进行准确的qRT-PCR分析。