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Unexpectedly Streamlined Mitochondrial Genome of the Euglenozoan Euglena gracilis

机译:Euglenozoan Euglena gracilis的精简线粒体基因组

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摘要

In this study, we describe the mitochondrial genome of the excavate flagellate Euglena gracilis. Its gene complement is reduced as compared with the well-studied sister groups Diplonemea and Kinetoplastea. We have identified seven protein-coding genes: Three subunits of respiratory complex I (nad1, nad4, and nad5), one subunit of complex III (cob), and three subunits of complex IV (cox1, cox2, and a highly divergent cox3). Moreover, fragments of ribosomal RNA genes have also been identified. Genes encoding subunits of complex V, ribosomal proteins and tRNAs were missing, and are likely located in the nuclear genome. Although mitochondrial genomes of diplonemids and kinetoplastids possess the most complex RNA processing machineries known, including trans-splicing and editing of the uridine insertion/deletion type, respectively, our transcriptomic data suggest their total absence in E. gracilis. This finding supports a scenario in which the complex mitochondrial processing machineries of both sister groups evolved relatively late in evolution from a streamlined genome and transcriptome of their common predecessor.
机译:在这项研究中,我们描述了挖出的鞭毛Euglena gracilis的线粒体基因组。与研究透彻的姐妹组Diplonemea和Kinetoplastea相比,其基因互补减少。我们确定了七个蛋白质编码基因:呼吸系统复杂I的三个亚基(nad1,nad4和nad5),复合物III的一个亚基(cob)和复合物IV的三个亚基(cox1,cox2和高度趋异的cox3) 。此外,还已经鉴定了核糖体RNA基因的片段。缺少编码复杂V,核糖体蛋白和tRNA亚基的基因,很可能位于核基因组中。尽管二烯酮和动质体的线粒体基因组拥有已知的最复杂的RNA处理机制,包括分别对尿苷插入/缺失类型进行反式剪接和编辑,但我们的转录组数据表明它们完全不存在于gracilis中。这一发现支持了一个场景,即两个姐妹群体的复杂线粒体加工机器从其共同前身的精简基因组和转录组进化出相对较晚的进化。

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