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Global identification of full-length cassava lncRNAs unveils the role of CRIR1 in cold stress response

生物 计算生物学 鉴定(生物学) 基因 基因组 遗传学 转录组 细胞生物学
作者
Shuxia Li,Zhihao Cheng,Shiman Dong,Zhibo Li,Lina Zou,Pingjuan Zhao,Xin Guo,Yan Bao,Wenquan Wang,Ming Peng
出处
期刊:Authorea - Authorea
标识
DOI:10.22541/au.163427801.14833806/v1
摘要

Long non-coding RNAs (lncRNAs) have been considered to be important regulators of gene expression in a range of biological processes in plants. A large number of lncRNAs have been identified in plants. However, most of their biological functions still remain to be determined. Here, we identified total 3 004 lncRNAs in cassava under normal or cold-treated conditions from Iso-seq data. We further characterized a lincRNA, CRIR1, as a novel positive regulator of the plant response to cold stress. CRIR1 can be significantly induced by cold treatment. Overexpression of CRIR1 in cassava enhanced the cold tolerance of transgenic plants. Transcriptome analysis demonstrated that CRIR1 regulates a range of cold stress-related genes in a CBF-independent pathway. We further found that CRIR1 RNA can interact with MeCSP5, a homolog of the cold shock protein that acts as RNA chaperones, indicating that CRIR1 may recruit MeCSP5 to improve the translation efficiency of mRNA. In summary, our study greatly extends the repertoire of lncRNAs in plants as well as its responding to cold stress. Moreover, it reveals a sophisticated mechanism by which CRIR1 regulates plant cold stress response by modulating the expression of stress-responsive genes and increasing the translational yield.
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