Guo Ping, Wu Yao, Li Jia, Fang Rongxiang, Jia Yantao
Sheng Wu Gong Cheng Xue Bao. 2014 Nov;30(11):1751-62.
Compared with the transgenic approach, transient assays provide a convenient alternative to analyze gene expression. To analyze the relationship between miRNAs and their target genes, a rice protoplast system to detect target gene activity was established. The MIRNA and GFP-fused target sequence (or GFP-fused mutated sequence as a non-target control) were constructed into the same plasmid, and then delivered into rice protoplasts. The GFP expression level decreased significantly when the protoplasts were transfected with the plasmid containing GFP-fused target compared to that of the plasmid with non-target sequence either by fluorescence microscopy or qRT-PCR method. Two microRNA genes, osaMIR156 and osaMIR397, and their target sequences were used to prove the feasibility of the rice protoplast transient assay system. This method will facilitate large-scale screening of rice miRNA target in vivo, and may be suitable for functional analysis of miRNAs of other monocot plants that might share the evolutionarily conserved small RNA processing system with rice.
与转基因方法相比,瞬时分析为基因表达分析提供了一种便捷的替代方法。为了分析微小RNA(miRNA)与其靶基因之间的关系,建立了一种用于检测靶基因活性的水稻原生质体系统。将MIRNA和绿色荧光蛋白(GFP)融合的靶序列(或GFP融合的突变序列作为非靶对照)构建到同一质粒中,然后导入水稻原生质体。通过荧光显微镜或定量逆转录聚合酶链反应(qRT-PCR)方法检测,与转染含有非靶序列质粒的原生质体相比,转染含有GFP融合靶序列质粒的原生质体中GFP表达水平显著降低。利用两个微小RNA基因osaMIR156和osaMIR397及其靶序列验证了水稻原生质体瞬时分析系统的可行性。该方法将有助于在体内大规模筛选水稻miRNA靶标,并且可能适用于与水稻具有进化上保守的小RNA加工系统的其他单子叶植物miRNA的功能分析。