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Large-Scale Genomic Analysis Suggests a Neutral Punctuated Dynamics of Transposable Elements in Bacterial Genomes

机译:大规模的基因组分析表明细菌基因组中转座因子的中性点点动力学。

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摘要

Insertion sequences (IS) are the simplest and most abundant form of transposable DNA found in bacterial genomes. When present in multiple copies, it is thought that they can promote genomic plasticity and genetic exchange, thus being a major force of evolutionary change. The main processes that determine IS content in genomes are, though, a matter of debate. In this work, we take advantage of the large amount of genomic data currently available and study the abundance distributions of 33 IS families in 1811 bacterial chromosomes. This allows us to test simple models of IS dynamics and estimate their key parameters by means of a maximum likelihood approach. We evaluate the roles played by duplication, lateral gene transfer, deletion and purifying selection. We find that the observed IS abundances are compatible with a neutral scenario where IS proliferation is controlled by deletions instead of purifying selection. Even if there may be some cases driven by selection, neutral behavior dominates over large evolutionary scales. According to this view, IS and hosts tend to coexist in a dynamic equilibrium state for most of the time. Our approach also allows for a detection of recent IS expansions, and supports the hypothesis that rapid expansions constitute transient events—punctuations—during which the state of coexistence of IS and host becomes perturbated.
机译:插入序列(IS)是细菌基因组中最简单,最丰富的转座DNA形式。当以多拷贝存在时,认为它们可以促进基因组可塑性和基因交换,因此是进化变化的主要力量。但是,决定基因组中IS含量的主要过程尚有争议。在这项工作中,我们利用了目前可获得的大量基因组数据,并研究了1811个细菌染色体中33个IS家族的丰度分布。这使我们能够测试IS动态的简单模型,并通过最大似然法估算其关键参数。我们评估了重复,侧向基因转移,缺失和纯化选择所起的作用。我们发现观察到的IS丰度与中性方案兼容,在该方案中IS增殖是通过删除而不是纯化选择来控制的。即使在某些情况下可能会受到选择的驱使,中性行为仍会在较大的进化规模上占主导地位。根据这种观点,IS和主机通常在大多数时间处于动态平衡状态。我们的方法还可以检测到最近的IS扩展,并支持以下假设:快速扩展会构成瞬时事件(标点符号),在此期间,IS和宿主的共存状态会受到干扰。

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