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Group II Introns Break New Boundaries: Presence in a Bilaterians Genome

机译:第二组内含子打破了新的界限:存在于Bilaterian基因组中

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摘要

Group II introns are ribozymes, removing themselves from their primary transcripts, as well as mobile genetic elements, transposing via an RNA intermediate, and are thought to be the ancestors of spliceosomal introns. Although common in bacteria and most eukaryotic organelles, they have never been reported in any bilaterian animal genome, organellar or nuclear. Here we report the first group II intron found in the mitochondrial genome of a bilaterian worm. This location is especially surprising, since animal mitochondrial genomes are generally distinct from those of plants, fungi, and protists by being small and compact, and so are viewed as being highly streamlined, perhaps as a result of strong selective pressures for fast replication while establishing germ plasm during early development. This intron is found in the mtDNA of an annelid worm, (an undescribed species of Nephtys), where the complete sequence revealed a 1819 bp group II intron inside the cox1 gene. We infer that this intron is the result of a recent horizontal gene transfer event from a viral or bacterial vector into the mitochondrial genome of Nephtys sp. Our findings hold implications for understanding mechanisms, constraints, and selective pressures that account for patterns of animal mitochondrial genome evolution
机译:第II组内含子是核酶,可通过RNA中间物转座,从初级转录本和可移动的遗传元件中去除自身,并被认为是剪接内含子的祖先。尽管它们在细菌和大多数真核细胞器中很常见,但从未在任何双侧动物基因组,细胞器或核中报告过它们。在这里,我们报告在一个双边蠕虫的线粒体基因组中发现的第一个II类内含子。该位置特别令人惊讶,因为动物线粒体基因组通常小巧而紧凑,因而不同于植物,真菌和原生生物,因此被认为是高度精简的,这可能是由于建立过程中快速复制的强大选择压力早期发育的种质。该内含子存在于一种无脊椎动物的线虫蠕虫的mtDNA中,该完整序列显示cox1基因内部有一个1819 bp的II组内含子。我们推断该内含子是最近的水平基因从病毒或细菌载体转移到Nephtys sp的线粒体基因组中的结果。我们的发现对理解动物线粒体基因组进化模式的机制,约束和选择性压力具有启示意义

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