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深层分支异叶足虫中的线粒体基因组进化与一种新型RNA编辑系统

Mitochondrial Genome Evolution and a Novel RNA Editing System in Deep-Branching Heteroloboseids.

作者信息

Yang Jiwon, Harding Tommy, Kamikawa Ryoma, Simpson Alastair G B, Roger Andrew J

机构信息

Centre for Comparative Genomics and Evolutionary Bioinformatics, Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia, Canada.

Graduate School of Human and Environmental Studies, Graduate School of Global Environmental Studies, Kyoto University, Japan.

出版信息

Genome Biol Evol. 2017 May 1;9(5):1161-1174. doi: 10.1093/gbe/evx086.

Abstract

Discoba (Excavata) is an evolutionarily important group of eukaryotes that includes Jakobida, with the most bacterial-like mitochondrial genomes known, and Euglenozoa, many of which have extensively fragmented mitochondrial genomes. However, little is known about the mitochondrial genomes of Heterolobosea, the third main group of Discoba. Here, we studied two heteroloboseids-an undescribed amoeba "BB2" and Pharyngomonas kirbyi. Phylogenomic analysis revealed that they form a clade that is a sister group to all other Heterolobosea. We characterized the mitochondrial genomes of BB2 and P. kirbyi, which encoded 44 and 48 putative protein-coding genes respectively. Their gene contents were similar to that of Naegleria. In BB2, mitochondrially encoded RNAs were heavily edited, with ∼500 mononucleotide insertion events, mostly guanosines. These insertions always have the same identity as an adjacent nucleotide. Editing occurs in all ribosomal RNAs and protein-coding transcripts except one, and half of the transfer RNAs. Analysis of Illumina deep-sequencing data suggested that this RNA editing is very accurate and efficient, and most likely co-transcriptional. The dissimilarity of this editing process to other RNA editing phenomena in discobids, as well as its apparent absence in P. kirbyi, suggest that this remarkably extensive system of insertional editing evolved independently in the BB2 lineage, after its divergence from the P. kirbyi lineage.

摘要

双滴虫(盘状亚门)是一类在进化上具有重要意义的真核生物,包括贾科比虫纲(其线粒体基因组是已知最类似细菌的)和眼虫纲(其中许多物种的线粒体基因组已广泛碎片化)。然而,对于双滴虫的第三个主要类群——变形鞭毛虫纲的线粒体基因组,我们却知之甚少。在此,我们研究了两种变形鞭毛虫——一种未描述的变形虫“BB2”和柯氏咽鞭毛虫。系统基因组分析表明,它们形成了一个进化枝,是所有其他变形鞭毛虫纲的姐妹群。我们对BB2和柯氏咽鞭毛虫的线粒体基因组进行了特征分析,它们分别编码44个和48个假定的蛋白质编码基因。它们的基因组成与纳格里亚属相似。在BB2中,线粒体编码的RNA经过大量编辑,有大约500个单核苷酸插入事件,大多数是鸟苷酸。这些插入总是与相邻核苷酸具有相同的碱基。除了一个蛋白质编码转录本和一半的转运RNA外,所有核糖体RNA和蛋白质编码转录本都发生了编辑。对Illumina深度测序数据的分析表明,这种RNA编辑非常准确和高效,而且很可能是共转录的。这种编辑过程与双滴虫中的其他RNA编辑现象不同,以及在柯氏咽鞭毛虫中明显不存在这种现象,这表明这种极其广泛的插入编辑系统是在BB2谱系与柯氏咽鞭毛虫谱系分化后,在BB2谱系中独立进化而来的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7b4/5421314/e3b1f468af86/evx086f1.jpg

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