Department of Biology, School of Arts and Sciences, University of Pennsylvania, Philadelphia, Pennsylvania, USA; email:
Annu Rev Plant Biol. 2023 May 22;74:53-85. doi: 10.1146/annurev-arplant-071122-085813. Epub 2023 Mar 14.
Since the discovery of the first ribonucleic acid (RNA) modifications in transfer RNAs (tRNAs) and ribosomal RNAs (rRNAs), scientists have been on a quest to decipher the identities and functions of RNA modifications in biological systems. The last decade has seen monumental growth in the number of studies that have characterized and assessed the functionalities of RNA modifications in the field of plant biology. Owing to these studies, we now categorize RNA modifications based on their chemical nature and the RNA on which they are found, as well as the array of proteins that are involved in the processes that add, read, and remove them from an RNA molecule. Beyond their identity, another key piece of the puzzle is the functional significance of the various types of RNA modifications. Here, we shed light on recent studies that help establish our current understanding of the diversity of RNA modifications found in plant transcriptomes and the functions they play at both the molecular (e.g., RNA stability, translation, and transport) and organismal (e.g., stress response and development) levels. Finally, we consider the key research questions related to plant gene expression and biology in general and highlight developments in various technologies that are driving our insights forward in this research area.
自从在转移 RNA(tRNA)和核糖体 RNA(rRNA)中发现了第一个核糖核酸(RNA)修饰以来,科学家们一直在探索生物系统中 RNA 修饰的身份和功能。在过去的十年中,大量研究对植物生物学领域中 RNA 修饰的功能特性进行了描述和评估。由于这些研究,我们现在根据 RNA 修饰的化学性质及其所在的 RNA 以及参与添加、读取和从 RNA 分子中去除它们的一系列蛋白质,对 RNA 修饰进行分类。除了它们的身份之外,另一个关键问题是各种类型的 RNA 修饰的功能意义。在这里,我们介绍了一些最新的研究,这些研究有助于我们建立当前对植物转录组中发现的 RNA 修饰多样性的理解,以及它们在分子(例如 RNA 稳定性、翻译和运输)和生物体(例如应激反应和发育)水平上所起的作用。最后,我们考虑了与植物基因表达和生物学一般相关的关键研究问题,并强调了推动我们在这一研究领域取得进展的各种技术的发展。