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The Chlamydomonas Genome Reveals the Evolution of Key Animal and Plant Functions

机译:衣藻基因组揭示了关键动植物功能的进化

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Chlamydomonas reinhardtii is a unicellular green alga whose lineage diverged from land plants over 1 billion years ago. It is a model system for studying chloroplast-based photosynthesis, as well as the structure, assembly, and function of eukaryotic flagella (cilia), which were inherited from the common ancestor of plants and animals, but lost in land plants. We sequenced the ~120-megabase nuclear genome of Chlamydomonas and performed comparative phylogenomic analyses, identifying genes encoding uncharacterized proteins that are likely associated with the function and biogenesis of chloroplasts or eukaryotic flagella. Analyses of the Chlamydomonas genome advance our understanding of the ancestral eukaryotic cell, reveal previously unknown genes associated with photosynthetk and flagellar functions, and establish links between ciliopathy and the composition and function of flagella.
机译:莱茵衣藻(Chlamydomonas reinhardtii)是一种单细胞绿藻,其谱系在十亿年前与陆地植物不同。它是研究基于叶绿体的光合作用以及真核鞭毛(纤毛)的结构,组装和功能的模型系统,这些真核鞭毛是从动植物的共同祖先继承而来的,但在陆地植物中却消失了。我们对衣藻〜120兆碱基的核基因组进行了测序,并进行了比较的系统进化分析,确定了编码未表征蛋白的基因,这些蛋白可能与叶绿体或真核鞭毛的功能和生物发生有关。对衣原体基因组的分析提高了我们对祖先真核细胞的了解,揭示了以前未知的与光合作用和鞭毛功能有关的基因,并建立了纤毛病与鞭毛组成和功能之间的联系。

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