Department of Biology, East Carolina University, Greenville, NC 27858, USA.
Plant Mol Biol. 2012 Sep;80(1):17-36. doi: 10.1007/s11103-011-9817-6. Epub 2011 Aug 27.
microRNAs (miRNAs) are an extensive class of newly identified small RNAs, which regulate gene expression at the post-transcriptional level by mRNA cleavage or translation inhibition. Currently, there are 3,070 miRNAs deposited in the public available miRNA database; these miRNAs were obtained from 43 plant species using both computational (comparative genomics) and experimental (direct cloning and deep sequencing) approaches. Like other signaling molecules, plant miRNAs can also be moved from one tissue to another through the vascular system. These mobile miRNAs may play an important role in plant nutrient homeostasis and response to environmental biotic and abiotic stresses. In addition, miRNAs also control a wide range of biological and metabolic processes, including developmental timing, tissue-specific development, and stem cell maintenance and differentiation. Currently, a majority of plant miRNA-related researches are purely descriptive, and provide no further detailed mechanistic insight into miRNA-mediated gene regulation and other functions. To better understand the function and regulatory mechanisms of plant miRNAs, more strategies need to be employed to investigate the functions of miRNAs and their associated signaling pathways and gene networks. Elucidating the evolutionary mechanism of miRNAs is also important. It is possible to develop a novel miRNA-based biotechnology for improving plant yield, quality and tolerance to environmental biotic and abiotic stresses besides focusing on basic genetic studies.
微小 RNA(miRNAs)是一类新发现的广泛存在的小 RNA,通过 mRNA 切割或翻译抑制,在转录后水平上调控基因表达。目前,公共 miRNA 数据库中已收录 3070 个 miRNA,这些 miRNA 通过计算(比较基因组学)和实验(直接克隆和深度测序)方法从 43 种植物中获得。与其他信号分子一样,植物 miRNA 也可以通过血管系统从一个组织转移到另一个组织。这些可移动的 miRNA 可能在植物养分稳态和对环境生物及非生物胁迫的响应中发挥重要作用。此外,miRNA 还控制着广泛的生物和代谢过程,包括发育时间、组织特异性发育以及干细胞的维持和分化。目前,大多数与植物 miRNA 相关的研究都是纯粹描述性的,没有进一步详细的机制见解来解释 miRNA 介导的基因调控和其他功能。为了更好地理解植物 miRNA 的功能和调控机制,需要采用更多的策略来研究 miRNA 及其相关信号通路和基因网络的功能。阐明 miRNA 的进化机制也很重要。除了关注基础遗传研究外,还有可能开发出一种基于 miRNA 的新型生物技术,用于提高植物的产量、品质和对环境生物及非生物胁迫的耐受性。