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水稻线粒体编码开放阅读框中C到U RNA编辑的检测与分析

Detection and Analysis of C-to-U RNA Editing in Rice Mitochondria-Encoded ORFs.

作者信息

Zheng Peng, Wang Dongxin, Huang Yuqing, Chen Hao, Du Hao, Tu Jumin

机构信息

Zhejiang Provincial Key Laboratory of Crop Germplasm Resources, Institute of Crop Science, Zhejiang University, No. 866, Yu-Hang-Tang Road, Hangzhou 310058, China.

College of Life Science and Technology, Guangxi University, Nanning 530004, China.

出版信息

Plants (Basel). 2020 Sep 28;9(10):1277. doi: 10.3390/plants9101277.

Abstract

Cytidine to uridine (C-to-U) RNA editing is an important type of substitutional RNA modification and is almost omnipresent in plant chloroplasts and mitochondria. In rice mitochondria, 491 C-to-U editing sites have been identified previously, and case studies have elucidated the function of several C-to-U editing sites in rice, but the functional consequence of most C-to-U alterations needs to be investigated further. Here, by means of Sanger sequencing and publicly available RNA-seq data, we identified a total of 569 C-to-U editing sites in rice mitochondria-encoded open reading frames (ORFs), 85.41% of these editing sites were observed on the first or the second base of a codon, resulting in the alteration of encoded amino acid. Moreover, we found some novel editing sites and several inaccurately annotated sites which may be functionally important, based on the highly conserved amino acids encoded by these edited codons. Finally, we annotated all 569 C-to-U RNA editing sites in their biological context. More precise information about C-to-U editing sites in rice mitochondria-encoded ORFs will facilitate our investigation on the function of C-to-U editing events in rice and also provide a valid benchmark from rice for the analysis of mitochondria C-to-U editing in other plant species.

摘要

胞苷到尿苷(C-to-U)的RNA编辑是一种重要的替换性RNA修饰类型,几乎普遍存在于植物叶绿体和线粒体中。在水稻线粒体中,此前已鉴定出491个C-to-U编辑位点,并且案例研究阐明了水稻中几个C-to-U编辑位点的功能,但大多数C-to-U改变的功能后果仍需进一步研究。在此,通过桑格测序和公开可用的RNA-seq数据,我们在水稻线粒体编码的开放阅读框(ORF)中总共鉴定出569个C-to-U编辑位点,其中85.41%的编辑位点出现在密码子的第一位或第二位,导致编码氨基酸发生改变。此外,基于这些编辑密码子编码的高度保守氨基酸,我们发现了一些新的编辑位点和几个可能具有重要功能的注释不准确的位点。最后,我们在其生物学背景下注释了所有569个C-to-U RNA编辑位点。关于水稻线粒体编码ORF中C-to-U编辑位点的更精确信息将有助于我们研究水稻中C-to-U编辑事件的功能,也为分析其他植物物种线粒体中的C-to-U编辑提供了来自水稻的有效基准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b65/7600565/eb058c1f9d65/plants-09-01277-g001.jpg

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