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An efficient protocol for functional studies of apple transcription factors using a glucocorticoid receptor fusion system

机译:使用糖皮质激素受体融合系统的苹果转录因子功能研究的高效方案

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Premise:We report a protocol for studying the function of apple (Malus ×domestica) transcription factors based on the glucocorticoid receptor (GR) system, which allows the dexamethasone (DEX)-mediated activation of plant transcription factors to monitor the expression levels of their potential target genes.Methods and Results:Apple leaves are transformed with a vector that allows the expression of the studied transcription factor (i.e., FLOWERING LOCUS C [MdFLC]) fused to GR. Calli derived from the transformed leaves are treated with DEX and cycloheximide, a protein synthesis inhibitor. Compared with other methods, combining the GR system with cycloheximide treatments enables the differentiation between direct and indirect transcription factor target genes. Finally, the expression levels of putative MdFLC target genes are quantified using quantitative reverse transcription PCR.Conclusions:We demonstrate the efficiency of our GR system to study the function of apple transcription factors. This method is accessible to any laboratory familiar with basic molecular cloning procedures and the apple leaf-mediated agro-transformation technique.? 2020 Estevan et al. Applications in Plant Sciences published by Wiley Periodicals LLC on behalf of the Botanical Society of America.
机译:前提:我们报告了一种基于糖皮质激素受体(GR)系统的苹果(Malus×Dibustica)转录因子的功能的协议,其允许地塞米松(DEX)介导的植物转录因子的激活来监测其表达水平潜在的目标基因。方法和结果:用载体转化苹果叶,允许研究的转录因子(即,开花基因座C [MDFLC])融合的载体。衍生自转化叶的Calli被Dex和环己酰亚胺,蛋白质合成抑制剂治疗。与其他方法相比,将GR系统与环己酰亚胺处理结合,使得直接和间接转录因子靶基因之间的分化能够。最后,使用定量逆转录PCR定量推定的MDFLC靶基因的表达水平。链接:我们展示了GR系统研究苹果转录因子功能的效率。任何熟悉基本分子克隆程序和苹果叶介导的农业转化技术的实验室都可以访问该方法。 2020 Estevan等。 Wiley期刊LLC代表美国植物学会出版的植物科学申请。

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