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Research Tools for the Functional Genomics of Plant miRNAs During Zygotic and Somatic Embryogenesis

机译:植物miRNA在卵根和体细胞胚胎发生过程中的功能基因组学研究工具

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摘要

During early plant embryogenesis, some of the most fundamental decisions on fate and identity are taken making it a fascinating process to study. It is no surprise that higher plant embryogenesis was intensively analysed during the last century, while somatic embryogenesis is probably the most studied regeneration model. Encoded by the , short, single-stranded, non-coding miRNAs, are commonly present in all Eukaryotic genomes and are involved in the regulation of the gene expression during the essential developmental processes such as plant morphogenesis, hormone signaling, and developmental phase transition. During the last few years dedicated to miRNAs, analytical methods and tools have been developed, which have afforded new opportunities in functional analyses of plant miRNAs, including (i) databases for in silico analysis; (ii) miRNAs detection and expression approaches; (iii) reporter and sensor lines for a spatio-temporal analysis of the miRNA-target interactions; (iv) in situ hybridisation protocols; (v) artificial miRNAs; (vi) and lines to inhibit miRNA activity, and (vii) the target genes resistant to miRNA. Here, we attempted to summarise the toolbox for functional analysis of miRNAs during plant embryogenesis. In addition to characterising the described tools/methods, examples of the applications have been presented.
机译:在早期植物胚胎发生期间,采取了一些关于命运和身份的最基本的决策,使其成为一个令人迷人的研究过程。在上个世纪,较高的植物胚胎发生在毫无疑问,较高的植物胚胎发生,而体细胞胚胎发生可能是最多研究的再生模型。由短,单链的非编码MiRNA编码,通常存在于所有真核基因组中,并且参与在植物形态发生,激素信号传导和发育相转变的基本发育过程中的基因表达的调节。在致力于MiRNA的最后几年中,已经开发了分析方法和工具,这为植物MiRNA的功能分析提供了新的机会,包括(i)在硅分析中的数据库; (ii)MiRNA检测和表达方法; (iii)报告和传感器线用于MiRNA-靶互动的时空分析; (iv)原位杂交协议; (v)人工miRNA; (vi)和抑制miRNA活性的线,和(vii)抗miRNA的靶基因。在这里,我们试图总结工厂胚胎发生过程中miRNA的功能分析的工具箱。除了表征所描述的工具/方法之外,还提出了应用的示例。

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