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在低温和干旱胁迫下评估大麦(Hordeum vulgare L.)基因表达时的参考基因集选择。

The choice of reference gene set for assessing gene expression in barley (Hordeum vulgare L.) under low temperature and drought stress.

机构信息

Department of Molecular Biology, Crop Research Institute, v.v.i., Drnovská 507, Ruzyne, 161 06, Prague 6, Czech Republic,

出版信息

Mol Genet Genomics. 2013 Nov;288(11):639-49. doi: 10.1007/s00438-013-0774-4. Epub 2013 Aug 27.

Abstract

Drought and low temperature are the two most significant causes of abiotic stress in agricultural crops and, therefore, they pose considerable challenges in plant science. Hence, it is crucial to study response mechanisms and to select genes for identification signaling pathways that lead from stimulus to response. The assessment of gene expression is often attempted using real-time RT-PCR (qRT-PCR), a technique which requires a careful choice of reference gene(s) for normalization purpose. Here, we report a comparison of 13 potential reference genes for studying gene expression in the leaf and crown of barley seedlings subjected to low temperature or drought stress. All three currently available software packages designed to identify reference genes from qRT-PCR data (GeNorm, NormFinder and BestKeeper) were used to identify informative sets of up to three reference genes. Interestingly, the data obtained from the separate treatment of leaf and crown have led to the recommendations that HSP70 and S-AMD (and possibly HSP90) to be used as the reference genes for low-temperature stressed leaves, HSP90 and EF1α for low-temperature stressed crowns, cyclophilin and ADP-RF (and possibly ACT) for drought-stressed leaves, and EF1α and S-AMD for drought-stressed crowns. Our results have demonstrated that the gene expression can be highly tissue- or organ-specific in barley and have confirmed that reference gene choice is essential in qRT-PCR. The findings can also serve as guidelines for the selection of reference genes under different stress conditions and lay foundation for more accurate and widespread use of qRT-PCR in barley gene analysis.

摘要

干旱和低温是农业作物非生物胁迫的两个最重要的原因,因此它们给植物科学带来了相当大的挑战。因此,研究应对机制和选择基因来识别从刺激到反应的信号通路至关重要。基因表达的评估通常使用实时 RT-PCR(qRT-PCR)进行尝试,该技术需要仔细选择参考基因(s)进行归一化。在这里,我们报告了对 13 种潜在的参考基因在研究低温或干旱胁迫下大麦幼苗叶片和冠部基因表达的比较。用于从 qRT-PCR 数据中识别参考基因的三种现有的软件包(GeNorm、NormFinder 和 BestKeeper)都用于识别多达三个信息丰富的参考基因集。有趣的是,从叶片和冠部单独处理获得的数据导致建议将 HSP70 和 S-AMD(可能还有 HSP90)用作低温胁迫叶片的参考基因,HSP90 和 EF1α 用作低温胁迫冠部的参考基因,cyclophilin 和 ADP-RF(可能还有 ACT)用作干旱胁迫叶片的参考基因,EF1α 和 S-AMD 用作干旱胁迫冠部的参考基因。我们的结果表明,基因表达在大麦中高度具有组织或器官特异性,并证实了 qRT-PCR 中参考基因选择的重要性。这些发现还可以作为在不同胁迫条件下选择参考基因的指南,并为更准确和广泛地在大麦基因分析中使用 qRT-PCR 奠定基础。

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