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不同条件下大豆中用于RT-qPCR基因表达分析的内参基因稳定性评估

Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions.

作者信息

Wan Qiao, Chen Shuilian, Shan Zhihui, Yang Zhonglu, Chen Limiao, Zhang Chanjuan, Yuan Songli, Hao Qinnan, Zhang Xiaojuan, Qiu Dezhen, Chen Haifeng, Zhou Xinan

机构信息

Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences, Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture, Wuhan, China.

出版信息

PLoS One. 2017 Dec 13;12(12):e0189405. doi: 10.1371/journal.pone.0189405. eCollection 2017.

Abstract

Real-time quantitative reverse transcription PCR is a sensitive and widely used technique to quantify gene expression. To achieve a reliable result, appropriate reference genes are highly required for normalization of transcripts in different samples. In this study, 9 previously published reference genes (60S, Fbox, ELF1A, ELF1B, ACT11, TUA5, UBC4, G6PD, CYP2) of soybean [Glycine max (L.) Merr.] were selected. The expression stability of the 9 genes was evaluated under conditions of biotic stress caused by infection with soybean mosaic virus, nitrogen stress, across different cultivars and developmental stages. ΔCt and geNorm algorithms were used to evaluate and rank the expression stability of the 9 reference genes. Results obtained from two algorithms showed high consistency. Moreover, results of pairwise variation showed that two reference genes were sufficient to normalize the expression levels of target genes under each experimental setting. For virus infection, ELF1A and ELF1B were the most stable reference genes for accurate normalization. For different developmental stages, Fbox and G6PD had the highest expression stability between two soybean cultivars (Tanlong No. 1 and Tanlong No. 2). ELF1B and ACT11 were identified as the most stably expressed reference genes both under nitrogen stress and among different cultivars. The results showed that none of the candidate reference genes were uniformly expressed at different conditions, and selecting appropriate reference genes was pivotal for gene expression studies with particular condition and tissue. The most stable combination of genes identified in this study will help to achieve more accurate and reliable results in a wide variety of samples in soybean.

摘要

实时定量逆转录PCR是一种灵敏且广泛应用于基因表达定量的技术。为获得可靠结果,不同样本中转录本标准化非常需要合适的内参基因。本研究选取了大豆[Glycine max (L.) Merr.]先前发表的9个内参基因(60S、Fbox、ELF1A、ELF1B、ACT11、TUA5、UBC4、G6PD、CYP2)。在大豆花叶病毒感染引起的生物胁迫、氮胁迫条件下,以及不同品种和发育阶段,对这9个基因的表达稳定性进行了评估。使用ΔCt和geNorm算法评估并对这9个内参基因的表达稳定性进行排名。两种算法得到的结果具有高度一致性。此外,成对变异结果表明,在每个实验设置下,两个内参基因足以标准化靶基因的表达水平。对于病毒感染,ELF1A和ELF1B是用于准确标准化的最稳定内参基因。对于不同发育阶段,Fbox和G6PD在两个大豆品种(潭龙1号和潭龙2号)之间具有最高的表达稳定性。ELF1B和ACT11被确定为在氮胁迫下和不同品种中表达最稳定的内参基因。结果表明,没有一个候选内参基因在不同条件下均一表达,选择合适的内参基因对于特定条件和组织的基因表达研究至关重要。本研究中确定的最稳定基因组合将有助于在大豆的各种样本中获得更准确可靠的结果。

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