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Reliable reference genes for normalization of gene expression data in tea plants (Camellia sinensis) exposed to metal stresses

机译:暴露于金属胁迫下茶树(茶树)中基因表达数据正常化的可靠参考基因

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摘要

Tea plants [Camellia sinensis (L.) O. Kuntze] are an important leaf-type crop that are widely used for the production of non-alcoholic beverages in the world. Exposure to excessive amounts of heavy metals adversely affects the quality and yield of tea leaves. To analyze the molecular responses of tea plants to heavy metals, a reliable quantification of gene expression is important and of major importance herein is the normalization of the measured expression levels for the target genes. Ideally, stably expressed reference genes should be evaluated in all experimental systems. In this study, 12 candidate reference genes (i.e., 18S rRNA, Actin, CYP, EF-1α, eIF-4α, GAPDH, MON1, PP2AA3, TBP, TIP41, TUA, and UBC) were cloned from tea plants, and the stability of their expression was examined systematically in 60 samples exposed to diverse heavy metals (i.e., manganese, aluminum, copper, iron, and zinc). Three Excel-based algorithms (geNorm, NormFinder, and BestKeeper) were used to evaluate the expression stability of these genes. PP2AA3 and 18S rRNA were the most stably expressed genes, even though their expression profiles exhibited some variability. Moreover, commonly used reference genes (i.e., GAPDH and TBP) were the least appropriate reference genes for most samples. To further validate the suitability of the analyzed reference genes, the expression level of a phytochelatin synthase gene (i.e., CsPCS1) was determined using the putative reference genes for data normalizations. Our results may be beneficial for future studies involving the quantification of relative gene expression levels in tea plants.
机译:茶树[茶树(Camellia sinensis(L.)O. Kuntze)]是一种重要的叶型作物,在世界范围内广泛用于生产非酒精性饮料。暴露于过量的重金属会对茶叶的质量和产量产生不利影响。为了分析茶树对重金属的分子响应,基因表达的可靠定量是重要的,并且在本文中最重要的是目标基因的测量表达水平的标准化。理想情况下,应该在所有实验系统中评估稳定表达的参考基因。在这项研究中,从茶树中克隆了12个候选参考基因(即18S rRNA,肌动蛋白,CYP,EF-1α,eIF-4α,GAPDH,MON1,PP2AA3,TBP,TIP41,TUA和UBC),并获得了稳定性在暴露于多种重金属(即锰,铝,铜,铁和锌)的60个样品中,系统地检查了它们的表达。三种基于Excel的算法(geNorm,NormFinder和BestKeeper)用于评估这些基因的表达稳定性。 PP2AA3和18S rRNA是表达最稳定的基因,即使它们的表达谱表现出一定的变异性。此外,对于大多数样品,最常用的参考基因是GAPDH和 TBP 。为了进一步验证所分析参考基因的适用性,使用推定参考基因进行数据归一化确定了植物螯合素合酶基因(即 CsPCS1 )的表达水平。我们的结果可能对涉及定量茶树中相对基因表达水平的未来研究有益。

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