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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >The horsetail Equisetum arvense mitochondria share two group I introns with the liverwort Marchantia, acquired a novel group II intron but lost intron-encoded ORFs.
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The horsetail Equisetum arvense mitochondria share two group I introns with the liverwort Marchantia, acquired a novel group II intron but lost intron-encoded ORFs.

机译:马尾木贼属植物线粒体与地衣共有两个I组内含子,获得了一个新颖的II组内含子,但丢失了内含子编码的ORF。

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摘要

We studied the genomic structure and RNA editing of mitochondrial cox1, cox2, cob and atp9 from the horsetail Equisetum arvense, a representative of an old fern lineage. Editing of cox1, cob and atp9 mRNAs occur only by C-to-U transitions. No changes were found in cox2 transcripts constituting one of the rare examples of unedited mitochondrial mRNA in land plants. From three intervening sequences in cox1, cox1i395 and cox1i624 are group IB introns homologous to the Marchantia polymorpha cox1 introns, and cox1i747 is a group IIA intron different to other introns found in plant mtDNA. The group II intron cox2i373 is very similar to other introns found in cox2 from vascular plants. While cob and atp9 have no introns and display the gene structure found in seed plants, various nucleotide substitutions abolish the only potential ORF, a LAGLIDADG endonuclease present in cox1i395. Thus, E. arvense mitochondria conserve two group I introns from non-vascular plants, probably inherited from a common ancestor with liverworts. Analogous to seed plants, E. arvense has no potential mitochondrial splicing factors encoded in these introns. This is the first report concerning the presence of vertically inherited group I introns in vascular plant mitochondria.
机译:我们研究了马尾木贼马set的线粒体cox1,cox2,cob和atp9的基因组结构和RNA编辑,这是一个古老的蕨类谱系的代表。仅通过C到U转换来编辑cox1,cob和atp9 mRNA。陆地植物中未编辑的线粒体mRNA的罕见实例之一的cox2转录本未发现任何变化。在cox1的三个插入序列中,cox1i395和cox1i624是与多形马氏酵母cox1内含子同源的IB组内含子,而cox1i747是与植物mtDNA中发现的其他内含子不同的IIA组内含子。 II组内含子cox2i373与维管植物cox2中发现的其他内含子非常相似。尽管cob和atp9没有内含子并显示出在种子植物中发现的基因结构,但各种核苷酸取代消除了唯一可能的ORF,即cox1395中存在的LAGLIDADG核酸内切酶。因此,狂犬病线粒体保存了来自非维管植物的两个第一类内含子,这些内含子可能是从具有艾蒿的共同祖先遗传而来的。与种子植物相似,欧文肠球菌在这些内含子中没有编码的潜在线粒体剪接因子。这是关于维管植物线粒体中存在垂直遗传的I类内含子的第一份报告。

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