Alternative splicing and translation play important roles in hypoxic germination in rice

剪接体 生物 RNA剪接 细胞生物学 基因 内含子 SR蛋白 蛋白质组学 拼接因子 选择性拼接 翻译(生物学) 遗传学 内质网 核糖核酸 信使核糖核酸
作者
Mo-Xian Chen,Fu‐Yuan Zhu,Fengzhu Wang,Nenghui Ye,Bei Gao,Xi Chen,Shan Zhao,Tao Fan,Yun Cao,Tie-Yuan Liu,Ze-Zhuo Su,Li Xie,Qi Hu,Hui-Jie Wu,Shi Xiao,Jianhua Zhang,Ying-Gao Liu
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:70 (3): 817-833 被引量:51
标识
DOI:10.1093/jxb/ery393
摘要

Post-transcriptional mechanisms (PTMs), including alternative splicing (AS) and alternative translation initiation (ATI), may explain the diversity of proteins involved in plant development and stress responses. Transcriptional regulation is important during the hypoxic germination of rice seeds, but the potential roles of PTMs in this process have not been characterized. We used a combination of proteomics and RNA sequencing to discover how AS and ATI contribute to plant responses to hypoxia. In total, 10 253 intron-containing genes were identified. Of these, ~1741 differentially expressed AS (DAS) events from 811 genes were identified in hypoxia-treated seeds compared with controls. Over 95% of these were not present in the list of differentially expressed genes. In particular, regulatory pathways such as the spliceosome, ribosome, endoplasmic reticulum protein processing and export, proteasome, phagosome, oxidative phosphorylation, and mRNA surveillance showed substantial AS changes under hypoxia, suggesting that AS responses are largely independent of transcriptional regulation. Considerable AS changes were identified, including the preferential usage of some non-conventional splice sites and enrichment of splicing factors in the DAS data sets. Taken together, these results not only demonstrate that AS and ATI function during hypoxic germination but they have also allowed the identification of numerous novel proteins/peptides produced via ATI.

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