Department of Agricultural Biotechnology, National Institute of Agricultural Sciences (NAS), RDA, Jeonju 54874, Korea.
Division of Horticultural Biotechnology, Hankyung National University, Anseong 17579, Korea.
Int J Mol Sci. 2021 Jun 23;22(13):6731. doi: 10.3390/ijms22136731.
Plant abiotic stress responses are tightly regulated by different players at multiple levels. At transcriptional or post-transcriptional levels, several RNA binding proteins (RBPs) regulate stress response genes through RNA metabolism. They are increasingly recognized as critical modulators of a myriad of biological processes, including stress responses. Plant RBPs are heterogeneous with one or more conservative RNA motifs that constitute canonical/novel RNA binding domains (RBDs), which can bind to target RNAs to determine their regulation as per the plant requirements at given environmental conditions. Given its biological significance and possible consideration as a potential tool in genetic manipulation programs to improve key agronomic traits amidst frequent episodes of climate anomalies, studies concerning the identification and functional characterization of RBP candidate genes are steadily mounting. This paper presents a comprehensive overview of canonical and novel RBPs and their functions in major abiotic stresses including drought, heat, salt, and cold stress conditions. To some extent, we also briefly describe the basic motif structure of RBPs that would be useful in forthcoming studies. Additionally, we also collected RBP genes that were modulated by stress, but that lacked functional characterization, providing an impetus to conduct further research.
植物非生物胁迫反应是由多个层次的不同因子紧密调控的。在转录或转录后水平上,几种 RNA 结合蛋白(RBPs)通过 RNA 代谢来调节应激反应基因。它们越来越被认为是许多生物学过程的关键调节剂,包括应激反应。植物 RBPs 具有异质性,具有一个或多个保守的 RNA 基序,构成了典型/新型 RNA 结合域(RBDs),可以与靶 RNA 结合,根据植物在特定环境条件下的需求来决定其调控。鉴于其生物学意义以及在遗传操纵计划中作为潜在工具的可能考虑,以改善频繁出现的气候异常情况下的关键农艺性状,有关 RBP 候选基因的鉴定和功能特征的研究正在稳步增加。本文全面概述了典型和新型 RBPs 及其在主要非生物胁迫中的功能,包括干旱、热、盐和冷胁迫条件。在某种程度上,我们还简要描述了 RBPs 的基本基序结构,这将有助于未来的研究。此外,我们还收集了受胁迫调节但缺乏功能特征描述的 RBP 基因,为进一步研究提供了动力。