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Global analysis of exon creation versus loss and the role of alternative splicing in 17 vertebrate genomes

机译:全球外显子创建与丢失和替代剪接在17个脊椎动物基因组中的作用的全局分析

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摘要

Association of alternative splicing (AS) with accelerated rates of exon evolution in some organisms has recently aroused widespread interest in its role in evolution of eukaryotic gene structure. Previous studies were limited to analysis of exon creation or lost events in mouse and/or human only. Our multigenome approach provides a way for (1) distinguishing creation and loss events on the large scale; (2) uncovering details of the evolutionary mechanisms involved; (3) estimating the corresponding rates over a wide range of evolutionary times and organisms; and (4) assessing the impact of AS on those evolutionary rates. We use previously unpublished independent analyses of alternative splicing in five species (human, mouse, dog, cow, and zebrafish) from the ASAP database combined with genomewide multiple alignment of 17 genomes to analyze exon creation and loss of both constitutively and alternatively spliced exons in mammals, fish, and birds. Our analysis provides a comprehensive database of exon creation and loss events over 360 million years of vertebrate evolution, including tens of thousands of alternative and constitutive exons. We find that exon inclusion level is inversely related to the rate of exon creation. In addition, we provide a detailed in-depth analysis of mechanisms of exon creation and loss, which suggests that a large fraction of nonrepetitive created exons are results of ab initio creation from purely intronic sequences. Our data indicate an important role for alternative splicing in creation of new exons and provide a useful novel database resource for future genome evolution research.
机译:替代剪接(AS)与某些生物中外显子进化速率加快的关联最近引起了人们对其在真核基因结构进化中的作用的广泛兴趣。以前的研究仅限于分析外显子创建或仅在小鼠和/或人类中丢失事件。我们的多基因组方法提供了一种方法(1)大规模地区分创造和损失事件; (2)揭示涉及的进化机制的细节; (3)在广泛的进化时期和生物体中估计相应的比率; (4)评估AS对这些进化率的影响。我们使用ASAP数据库中五个物种(人类,小鼠,狗,牛和斑马鱼)中五个物种(人类,小鼠,狗,牛和斑马鱼)的可变剪接的先前未发表的独立分析,结合17个基因组的全基因组多重比对,分析外显子的创建和组成型或选择性剪接外显子的丢失。哺乳动物,鱼类和鸟类。我们的分析提供了超过3.6亿年脊椎动物进化过程中外显子创建和丢失事件的综合数据库,其中包括成千上万个替代和组成性外显子。我们发现外显子包涵水平与外显子生成速率成反比。此外,我们提供了对外显子创建和丢失机制的详细深入分析,这表明大部分非重复性外显子是纯内含子序列从头开始创建的结果。我们的数据表明替代剪接在创建新的外显子中的重要作用,并为将来的基因组进化研究提供有用的新颖数据库资源。

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