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首页> 外文期刊>Journal of computational biology: A journal of computational molecular cell biology >A New Genomic Evolutionary Model for Rearrangements, Duplications, and Losses that Applies across Eukaryotes and Prokaryotes
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A New Genomic Evolutionary Model for Rearrangements, Duplications, and Losses that Applies across Eukaryotes and Prokaryotes

机译:适用于真核生物和原核生物的重排,重复和损失的新基因组进化模型

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摘要

Genomic rearrangements have been studied since the beginnings of modern genetics and models for such rearrangements have been the subject of many papers over the last 10 years. However, none of the extant models can predict the evolution of genomic organization into circular unichromosomal genomes (as in most prokaryotes) and linear multichromosomal genomes (as in most eukaryotes). Very few of these models support gene duplications and losses-yet these events may be more common in evolutionary history than rearrangements and themselves cause apparent rearrangements. We propose a new evolutionary model that integrates gene duplications and losses with genome rearrangements and that leads to genomes with either one (or a very few) circular chromosome or a collection of linear chromosomes. Our model is based on existing rearrangement models and inherits their linear-time algorithms for pairwise distance computation (for rearrangement only). Moreover, our model predictions fit observations about the evolution of gene family sizes and agree with the existing predictions about the growth in the number of chromosomes in eukaryotic genomes.
机译:自从现代遗传学开始以来,就对基因组重排进行了研究,并且在过去的十年中,此类重排的模型一直是许多论文的主题。但是,没有一种现存的模型能够预测基因组组织向环状单染色体基因组(如大多数原核生物)和线性多染色体基因组(如大多数真核生物)的进化。这些模型中很少有支持基因重复和缺失的,但是这些事件在进化史中可能比重排更常见,并且它们本身引起明显的重排。我们提出了一个新的进化模型,该模型将基因重复和丢失与基因组重排整合在一起,并导致具有一个(或很少)圆形染色体或一组线性染色体的基因组。我们的模型基于现有的重排模型,并继承了它们的线性时间算法以进行成对距离计算(仅用于重排)。此外,我们的模型预测符合对基因家族大小演变的观察,并与关于真核基因组中染色体数目增长的现有预测一致。

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