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一种基因组大小进化模型。

A model for genome size evolution.

作者信息

Fischer Stephan, Bernard Samuel, Beslon Guillaume, Knibbe Carole

机构信息

INSA-Lyon, Inria, CNRS, LIRIS, UMR5205, 69621, Villeurbanne, France,

出版信息

Bull Math Biol. 2014 Sep;76(9):2249-91. doi: 10.1007/s11538-014-9997-8. Epub 2014 Aug 21.

Abstract

We present a model for genome size evolution that takes into account both local mutations such as small insertions and small deletions, and large chromosomal rearrangements such as duplications and large deletions. We introduce the possibility of undergoing several mutations within one generation. The model, albeit minimalist, reveals a non-trivial spontaneous dynamics of genome size: in the absence of selection, an arbitrary large part of genomes remains beneath a finite size, even for a duplication rate 2.6-fold higher than the rate of large deletions, and even if there is also a systematic bias toward small insertions compared to small deletions. Specifically, we show that the condition of existence of an asymptotic stationary distribution for genome size non-trivially depends on the rates and mean sizes of the different mutation types. We also give upper bounds for the median and other quantiles of the genome size distribution, and argue that these bounds cannot be overcome by selection. Taken together, our results show that the spontaneous dynamics of genome size naturally prevents it from growing infinitely, even in cases where intuition would suggest an infinite growth. Using quantitative numerical examples, we show that, in practice, a shrinkage bias appears very quickly in genomes undergoing mutation accumulation, even though DNA gains and losses appear to be perfectly symmetrical at first sight. We discuss this spontaneous dynamics in the light of the other evolutionary forces proposed in the literature and argue that it provides them a stability-related size limit below which they can act.

摘要

我们提出了一个基因组大小进化模型,该模型同时考虑了局部突变(如小插入和小缺失)以及大规模染色体重排(如重复和大缺失)。我们引入了在一代内发生多次突变的可能性。该模型虽然极简,但揭示了基因组大小的一种非平凡的自发动态:在没有选择的情况下,即使重复率比大缺失率高2.6倍,并且与小缺失相比存在偏向小插入的系统偏差,基因组的任意大部分仍保持在有限大小之下。具体而言,我们表明基因组大小渐近平稳分布存在的条件非平凡地取决于不同突变类型的速率和平均大小。我们还给出了基因组大小分布中位数和其他分位数的上界,并认为这些界限不能被选择克服。综上所述,我们的结果表明,即使在直觉上表明会无限增长的情况下,基因组大小的自发动态也自然地阻止其无限增长。通过定量数值示例,我们表明,实际上,在经历突变积累的基因组中,即使乍一看DNA的增减似乎完全对称,收缩偏差也会很快出现。我们根据文献中提出的其他进化力量来讨论这种自发动态,并认为它为它们提供了一个与稳定性相关的大小限制,在这个限制以下它们可以发挥作用。

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