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Molluscan mitochondrial genomes break the rules

机译:软体动物的线粒体基因因素打破了规则

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摘要

The first animal mitochondrial genomes to be sequenced were of several vertebrates and model organisms, and the consistency of genomic features found has led to a 'textbook description'. However, a more broad phylogenetic sampling of complete animal mitochondrial genomes has found many cases where these features do not exist, and the phylum Mollusca is especially replete with these exceptions. The characterization of full mollusc mitogenomes required considerable effort involving challenging molecular biology, but has created an enormous catalogue of surprising deviations from that textbook description, including wide variation in size, radical genome rearrangements, gene duplications and losses, the introduction of novel genes, and a complex system of inheritance dubbed 'doubly uniparental inheritance'. Here, we review the extraordinary variation in architecture, molecular functioning and intergenerational transmission of molluscan mitochondrial genomes. Such features represent a great potential for the discovery of biological history, processes and functions that are novel for animal mitochondrial genomes. This provides a model system for studying the evolution and the manifold roles that mitochondria play in organismal physiology, and many ways that the study of mitochondrial genomes are useful for phylogeny and population biology.
机译:第一批被测序的动物线粒体基因组来自几种脊椎动物和模式生物,发现的基因组特征的一致性导致了“教科书描述”。然而,对完整的动物线粒体基因组进行更广泛的系统发育取样发现,许多情况下这些特征并不存在,软体动物门尤其充满了这些例外。完整的软体动物有丝分裂基因组的表征需要相当大的努力,涉及挑战性的分子生物学,但却产生了大量与教科书描述惊人的偏差,包括大小的巨大差异、激进的基因组重排、基因复制和丢失、新基因的引入,以及一个被称为“双亲单亲遗传”的复杂遗传系统。在这里,我们回顾了软体动物线粒体基因组在结构、分子功能和代际传递方面的非凡变化。这些特征代表了发现动物线粒体基因组新的生物历史、过程和功能的巨大潜力。这提供了一个模型系统,用于研究线粒体在生物体生理学中的进化和多种作用,以及线粒体基因组研究对系统发育和种群生物学有用的许多方式。

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