Literature DB >> 35325205

Mitochondrion-encoded circular RNAs are widespread and translatable in plants.

Xun Liao1, Xiao-Jie Li2, Guan-Tao Zheng3, Feng-Rui Chang1, Lin Fang4, Hang Yu1, Jun Huang1, Ya-Feng Zhang1.   

Abstract

Nucleus-encoded circular RNAs (ncircRNAs) have been widely detected in eukaryotes, and most circRNA identification algorithms are designed to identify them. However, using these algorithms, few mitochondrion-encoded circRNAs (mcircRNAs) have been identified in plants, and the role of plant mcircRNAs has not yet been addressed. Here, we developed a circRNA identification algorithm, mitochondrion-encoded circRNA identifier, based on common features of plant mitochondrial genomes. We identified 7,524, 9,819, 1,699, 1,821, 1,809, and 5,133 mcircRNAs in maize (Zea mays), Arabidopsis (Arabidopsis thaliana), rice (Oryza sativa), tomato (Solanum lycopersicum), cucumber (Cucumis sativus), and grape (Vitis vinifera), respectively. These mcircRNAs were experimentally validated. Plant mcircRNAs had distinct characteristics from ncircRNAs, and they were more likely to be derived from RNA degradation but not intron backsplicing. Alternative circularization was prevalent in plant mitochondria, and most parental genomic regions hosted multiple mcircRNA isoforms, which have homogenous 5' termini but heterogeneous 3' ends. By analysis of mitopolysome and mitoribosome profiling data, 1,463 mcircRNAs bound to ribosomes were detected in maize and Arabidopsis. Further analysis of mass spectrometry-based proteomics data identified 358 mcircRNA-derived polypeptides. Overall, we developed a computational pipeline that efficiently identifies plant mcircRNAs, and we demonstrated mcircRNAs are widespread and translated in plants. © American Society of Plant Biologists 2022. All rights reserved. For permissions, please email: journals.permissions@oup.com.

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Year:  2022        PMID: 35325205      PMCID: PMC9237725          DOI: 10.1093/plphys/kiac143

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.005


  51 in total

1.  NGS QC Toolkit: a toolkit for quality control of next generation sequencing data.

Authors:  Ravi K Patel; Mukesh Jain
Journal:  PLoS One       Date:  2012-02-01       Impact factor: 3.240

2.  Exon-intron circular RNAs regulate transcription in the nucleus.

Authors:  Zhaoyong Li; Chuan Huang; Chun Bao; Liang Chen; Mei Lin; Xiaolin Wang; Guolin Zhong; Bin Yu; Wanchen Hu; Limin Dai; Pengfei Zhu; Zhaoxia Chang; Qingfa Wu; Yi Zhao; Ya Jia; Ping Xu; Huijie Liu; Ge Shan
Journal:  Nat Struct Mol Biol       Date:  2015-02-09       Impact factor: 15.369

3.  Characteristics of plant circular RNAs.

Authors:  Qinjie Chu; Panpan Bai; Xintian Zhu; Xingchen Zhang; Lingfeng Mao; Qian-Hao Zhu; Longjiang Fan; Chu-Yu Ye
Journal:  Brief Bioinform       Date:  2018-11-15       Impact factor: 11.622

4.  Major contribution of transcription initiation to 5'-end formation of mitochondrial steady-state transcripts in maize.

Authors:  Yafeng Zhang; Xiaoyu Huang; Jingyun Zou; Xun Liao; Yujun Liu; Tengxiang Lian; Hai Nian
Journal:  RNA Biol       Date:  2019-01-06       Impact factor: 4.652

5.  Organellar and Secretory Ribonucleases: Major Players in Plant RNA Homeostasis.

Authors:  Gustavo C MacIntosh; Benoît Castandet
Journal:  Plant Physiol       Date:  2020-06-08       Impact factor: 8.340

Review 6.  Coping with cryptic and defective transcripts in plant mitochondria.

Authors:  Sarah Holec; Heike Lange; Jean Canaday; Dominique Gagliardi
Journal:  Biochim Biophys Acta       Date:  2008-02-15

7.  Sequence and comparative analysis of the maize NB mitochondrial genome.

Authors:  Sandra W Clifton; Patrick Minx; Christiane M-R Fauron; Michael Gibson; James O Allen; Hui Sun; Melissa Thompson; W Brad Barbazuk; Suman Kanuganti; Catherine Tayloe; Louis Meyer; Richard K Wilson; Kathleen J Newton
Journal:  Plant Physiol       Date:  2004-11       Impact factor: 8.340

8.  The RAD52-like protein ODB1 is required for the efficient excision of two mitochondrial introns spliced via first-step hydrolysis.

Authors:  José M Gualberto; Monique Le Ret; Barbara Beator; Kristina Kühn
Journal:  Nucleic Acids Res       Date:  2015-06-05       Impact factor: 16.971

9.  PcircRNA_finder: a software for circRNA prediction in plants.

Authors:  Li Chen; Yongyi Yu; Xinchen Zhang; Chen Liu; Chuyu Ye; Longjiang Fan
Journal:  Bioinformatics       Date:  2016-08-04       Impact factor: 6.937

10.  Genome-Wide Identification of Circular RNAs in Arabidopsis thaliana.

Authors:  Gang Chen; Jiawen Cui; Li Wang; Yingfang Zhu; Zhaogeng Lu; Biao Jin
Journal:  Front Plant Sci       Date:  2017-09-27       Impact factor: 5.753

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