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富含甘氨酸的RNA结合蛋白是作物中至关重要的转录后调节因子。

The Glycine-Rich RNA-Binding Protein Is a Vital Post-Transcriptional Regulator in Crops.

作者信息

Cheng Ke, Zhang Chunjiao, Lu Yao, Li Jinyan, Tang Hui, Ma Liqun, Zhu Hongliang

机构信息

The College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.

Supervision, Inspection & Testing Center of Agricultural Products Quality, Ministry of Agriculture and Rural Affairs, Beijing 100083, China.

出版信息

Plants (Basel). 2023 Oct 9;12(19):3504. doi: 10.3390/plants12193504.

Abstract

Glycine-rich RNA binding proteins (GR-RBPs), a branch of RNA binding proteins (RBPs), play integral roles in regulating various aspects of RNA metabolism regulation, such as RNA processing, transport, localization, translation, and stability, and ultimately regulate gene expression and cell fate. However, our current understanding of GR-RBPs has predominantly been centered on Arabidopsis thaliana, a model plant for investigating plant growth and development. Nonetheless, an increasing body of literature has emerged in recent years, shedding light on the presence and functions of GRPs in diverse crop species. In this review, we not only delineate the distinctive structural domains of plant GR-RBPs but also elucidate several contemporary mechanisms of GR-RBPs in the post-transcriptional regulation of RNA. These mechanisms encompass intricate processes, including RNA alternative splicing, polyadenylation, miRNA biogenesis, phase separation, and RNA translation. Furthermore, we offer an exhaustive synthesis of the diverse roles that GR-RBPs fulfill within crop plants. Our overarching objective is to provide researchers and practitioners in the field of agricultural genetics with valuable insights that may inform and guide the application of plant genetic engineering for enhanced crop development and sustainable agriculture.

摘要

富含甘氨酸的RNA结合蛋白(GR-RBPs)是RNA结合蛋白(RBPs)的一个分支,在调节RNA代谢的各个方面发挥着不可或缺的作用,如RNA加工、运输、定位、翻译和稳定性,并最终调节基因表达和细胞命运。然而,我们目前对GR-RBPs的了解主要集中在拟南芥上,拟南芥是研究植物生长和发育的模式植物。尽管如此,近年来出现了越来越多的文献,揭示了GRPs在多种作物物种中的存在和功能。在这篇综述中,我们不仅描绘了植物GR-RBPs独特的结构域,还阐明了GR-RBPs在RNA转录后调控中的几种当代机制。这些机制包括复杂的过程,如RNA可变剪接、多聚腺苷酸化、miRNA生物发生、相分离和RNA翻译。此外,我们全面综合了GR-RBPs在作物植物中发挥的多种作用。我们的总体目标是为农业遗传学领域的研究人员和从业者提供有价值的见解,这些见解可能为植物基因工程在促进作物发育和可持续农业中的应用提供信息和指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fe5/10575402/b17f503f0775/plants-12-03504-g001.jpg

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