Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Japan.
RIKEN BioResource Research Center, Japan Collection of Microorganisms Microbe Division, Tsukuba, Japan.
Sci Rep. 2019 Mar 19;9(1):4850. doi: 10.1038/s41598-019-41238-6.
Mitochondrial genomes exhibit diverse features among eukaryotes in the aspect of gene content, genome structure, and the mobile genetic elements such as introns and plasmids. Although the number of published mitochondrial genomes is increasing at tremendous speed, those of several lineages remain unexplored. Here, we sequenced the complete mitochondrial genome of a unicellular heterotrophic eukaryote, Marophrys sp. SRT127 belonging to the Centroheliozoa, as the first report on this lineage. The circular-mapped mitochondrial genome, which is 113,062 bp in length, encodes 69 genes typically found in mitochondrial genomes. In addition, the Marophrys mitochondrial genome contains 19 group I introns. Of these, 11 introns have genes for homing endonuclease (HE) and phylogenetic analyses of HEs have shown that at least five Marophrys HEs are related to those in green algal plastid genomes, suggesting intron transfer between the Marophrys mitochondrion and green algal plastids. We also discovered a putative mitochondrial plasmid in linear form. Two genes encoded in the circular-mapped mitochondrial genome were found to share significant similarities to those in the linear plasmid, suggesting that the plasmid was integrated into the mitochondrial genome. These findings expand our knowledge on the diversity and evolution of the mobile genetic elements in mitochondrial genomes.
线粒体基因组在基因内容、基因组结构和移动遗传元件(如内含子和质粒)方面表现出多样性,存在于真核生物中。尽管已发表的线粒体基因组数量正在迅速增加,但仍有几个谱系尚未被探索。在这里,我们测序了一种单细胞异养真核生物 Marophrys sp. SRT127 的完整线粒体基因组,该生物属于中心动物门,这是该谱系的第一个报告。圆形映射的线粒体基因组长 113062bp,编码线粒体基因组中通常发现的 69 个基因。此外,Marophrys 线粒体基因组包含 19 个 I 组内含子。其中 11 个内含子具有归巢内切酶 (HE) 的基因,对 HE 的系统发育分析表明,至少有五个 Marophrys HE 与绿藻质体基因组中的 HE 相关,表明 Marophrys 线粒体和绿藻质体之间的内含子转移。我们还发现了一个以线性形式存在的假定线粒体质粒。在线粒体基因组圆形图谱中编码的两个基因与线性质粒中的基因具有显著相似性,表明该质粒已整合到线粒体基因组中。这些发现扩展了我们对线粒体基因组中移动遗传元件多样性和进化的认识。