Yang Xiaofei, Yang Minglei, Deng Hongjing, Ding Yiliang
Department of Cell and Developmental Biology, John Innes Centre, Norwich, United Kingdom.
State Key Laboratory of Plant Genomics and National Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.
Front Plant Sci. 2018 May 22;9:671. doi: 10.3389/fpls.2018.00671. eCollection 2018.
The dynamic structure of RNA plays a central role in post-transcriptional regulation of gene expression such as RNA maturation, degradation, and translation. With the rise of next-generation sequencing, the study of RNA structure has been transformed from low-throughput RNA structure probing methods to high-throughput RNA structure profiling. The development of these methods enables incremental studies on the function of RNA structure to be performed, revealing new insights of novel regulatory mechanisms of RNA structure in plants. Genome-wide scale RNA structure profiling allows us to investigate general RNA structural features over 10s of 1000s of mRNAs and to compare RNA structuromes between plant species. Here, we provide a comprehensive and up-to-date overview of: (i) RNA structure probing methods; (ii) the biological functions of RNA structure; (iii) genome-wide RNA structural features corresponding to their regulatory mechanisms; and (iv) RNA structurome evolution in plants.
RNA的动态结构在基因表达的转录后调控中起着核心作用,如RNA成熟、降解和翻译。随着下一代测序技术的兴起,RNA结构研究已从低通量RNA结构探测方法转变为高通量RNA结构分析。这些方法的发展使得对RNA结构功能进行逐步研究成为可能,揭示了植物中RNA结构新型调控机制的新见解。全基因组规模的RNA结构分析使我们能够研究数万个mRNA上的一般RNA结构特征,并比较不同植物物种之间的RNA结构组。在这里,我们提供了一个全面且最新的概述,内容包括:(i)RNA结构探测方法;(ii)RNA结构的生物学功能;(iii)与其调控机制相对应的全基因组RNA结构特征;以及(iv)植物中的RNA结构组进化。