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Evaluation of Reference Genes for Normalization of Gene Expression Using Quantitative RT-PCR under Aluminum Cadmium and Heat Stresses in Soybean

机译:铝镉和热胁迫下大豆中利用定量RT-PCR对参考基因进行基因表达标准化的评估

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摘要

Quantitative reverse transcription polymerase chain reaction (qRT-PCR) is widely used to analyze the relative gene expression level, however, the accuracy of qRT-PCR is greatly affected by the stability of reference genes, which is tissue- and environment- dependent. Therefore, choosing the most stable reference gene in a specific tissue and environment is critical to interpret gene expression patterns. Aluminum (Al), cadmium (Cd), and heat stresses are three important abiotic factors limiting soybean (Glycine max) production in southern China. To identify the suitable reference genes for normalizing the expression levels of target genes by qRT-PCR in soybean response to Al, Cd and heat stresses, we studied the expression stability of ten commonly used housekeeping genes in soybean roots and leaves under these three abiotic stresses, using five approaches, BestKeeper, Delta Ct, geNorm, NormFinder and RefFinder. We found TUA4 is the most stable reference gene in soybean root tips under Al stress. Under Cd stress, Fbox and UKN2 are the most stable reference genes in roots and leaves, respectively, while 60S is the most suitable reference gene when analyzing both roots and leaves together. For heat stress, TUA4 and UKN2 are the most stable housekeeping genes in roots and leaves, respectively, and UKN2 is the best reference gene for analysis of roots and leaves together. To validate the reference genes, we quantified the relative expression levels of six target genes that were involved in soybean response to Al, Cd or heat stresses, respectively. The expression patterns of these target genes differed between using the most and least stable reference genes, suggesting the selection of a suitable reference gene is critical for gene expression studies.
机译:定量逆转录聚合酶链反应(qRT-PCR)被广泛用于分析相对基因表达水平,但是,qRT-PCR的准确性受参考基因稳定性的影响很大,参考基因的稳定性取决于组织和环境。因此,在特定组织和环境中选择最稳定的参考基因对于解释基因表达模式至关重要。铝(Al),镉(Cd)和热胁迫是限制中国南方大豆(Glycine max)产量的三个重要非生物因素。为了确定合适的参考基因,通过qRT-PCR标准化大豆中铝,镉和热胁迫下靶基因的表达水平,我们研究了三种非生物胁迫下大豆根和叶中十种常用管家基因的表达稳定性。 ,使用BestKeeper,Delta Ct,geNorm,NormFinder和RefFinder五种方法。我们发现在铝胁迫下,TUA4是大豆根尖中最稳定的参考基因。在镉胁迫下,Fbox和UKN2分别是根和叶中最稳定的参考基因,而60S是同时分析根和叶时最适合的参考基因。对于热胁迫,TUA4和UKN2分别是根和叶中最稳定的管家基因,UKN2是同时分析根和叶的最佳参考基因。为了验证参考基因,我们量化了六个靶基因的相对表达水平,这些靶基因分别参与了大豆对铝,镉或热胁迫的反应。这些靶基因的表达模式在使用最稳定和最不稳定的参考基因之间有所不同,这表明选择合适的参考基因对于基因表达研究至关重要。

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