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两个质体RNA编辑突变体的全转录组RNA测序、基因集富集通路分析和外显子覆盖分析。

Whole-transcriptome RNA-seq, gene set enrichment pathway analysis, and exon coverage analysis of two plastid RNA editing mutants.

作者信息

Hackett Justin B, Lu Yan

机构信息

a Department of Biological Sciences , Western Michigan University , Kalamazoo , MI , USA.

出版信息

Plant Signal Behav. 2017 May 4;12(5):e1312242. doi: 10.1080/15592324.2017.1312242. Epub 2017 Apr 7.

DOI:10.1080/15592324.2017.1312242
PMID:28387567
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5501230/
Abstract

In land plants, plastid and mitochondrial RNAs are subject to post-transcriptional C-to-U RNA editing. T-DNA insertions in the ORGANELLE RNA RECOGNITION MOTIF PROTEIN6 gene resulted in reduced photosystem II (PSII) activity and smaller plant and leaf sizes. Exon coverage analysis of the ORRM6 gene showed that orrm6-1 and orrm6-2 are loss-of-function mutants. Compared to other ORRM proteins, ORRM6 affects a relative small number of RNA editing sites. Sanger sequencing of reverse transcription-PCR products of plastid transcripts revealed 2 plastid RNA editing sites that are substantially affected in the orrm6 mutants: psbF-C77 and accD-C794. The psbF gene encodes the β subunit of cytochrome b, an essential component of PSII. The accD gene encodes the β subunit of acetyl-CoA carboxylase, a protein required in plastid fatty acid biosynthesis. Whole-transcriptome RNA-seq demonstrated that editing at psbF-C77 is nearly absent and the editing extent at accD-C794 was significantly reduced. Gene set enrichment pathway analysis showed that expression of multiple gene sets involved in photosynthesis, especially photosynthetic electron transport, is significantly upregulated in both orrm6 mutants. The upregulation could be a mechanism to compensate for the reduced PSII electron transport rate in the orrm6 mutants. These results further demonstrated that Organelle RNA Recognition Motif protein ORRM6 is required in editing of specific RNAs in the Arabidopsis (Arabidopsis thaliana) plastid.

摘要

在陆生植物中,质体和线粒体RNA会经历转录后C到U的RNA编辑。细胞器RNA识别基序蛋白6基因中的T-DNA插入导致光系统II(PSII)活性降低,植株和叶片尺寸变小。对ORRM6基因的外显子覆盖分析表明,orrm6-1和orrm6-2是功能缺失突变体。与其他ORRM蛋白相比,ORRM6影响的RNA编辑位点相对较少。对质体转录本的逆转录PCR产物进行桑格测序,发现orrm6突变体中有2个质体RNA编辑位点受到显著影响:psbF-C77和accD-C794。psbF基因编码细胞色素b的β亚基,这是PSII的一个重要组成部分。accD基因编码乙酰辅酶A羧化酶的β亚基,该蛋白是质体脂肪酸生物合成所必需的。全转录组RNA测序表明,psbF-C77几乎没有编辑,accD-C794的编辑程度显著降低。基因集富集途径分析表明,在两个orrm6突变体中,多个参与光合作用的基因集,尤其是光合电子传递相关基因集的表达显著上调。这种上调可能是一种机制,用于补偿orrm6突变体中PSII电子传递速率的降低。这些结果进一步证明,细胞器RNA识别基序蛋白ORRM6是拟南芥质体中特定RNA编辑所必需的。

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本文引用的文献

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RNA Recognition Motif-Containing Protein ORRM4 Broadly Affects Mitochondrial RNA Editing and Impacts Plant Development and Flowering.含RNA识别基序的蛋白质ORRM4广泛影响线粒体RNA编辑并影响植物发育和开花。
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