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Soft Shoulders Ahead: Spurious Signatures of Soft and Partial Selective Sweeps Result from Linked Hard Sweeps

机译:提前出现软肩:链接的硬扫频导致软和部分选择性扫频的虚假签名

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摘要

Characterizing the nature of the adaptive process at the genetic level is a central goal for population genetics. In particular, we know little about the sources of adaptive substitution or about the number of adaptive variants currently segregating in nature. Historically, population geneticists have focused attention on the hard-sweep model of adaptation in which a de novo beneficial mutation arises and rapidly fixes in a population. Recently more attention has been given to soft-sweep models, in which alleles that were previously neutral, or nearly so, drift until such a time as the environment shifts and their selection coefficient changes to become beneficial. It remains an active and difficult problem, however, to tease apart the telltale signatures of hard vs. soft sweeps in genomic polymorphism data. Through extensive simulations of hard- and soft-sweep models, here we show that indeed the two might not be separable through the use of simple summary statistics. In particular, it seems that recombination in regions linked to, but distant from, sites of hard sweeps can create patterns of polymorphism that closely mirror what is expected to be found near soft sweeps. We find that a very similar situation arises when using haplotype-based statistics that are aimed at detecting partial or ongoing selective sweeps, such that it is difficult to distinguish the shoulder of a hard sweep from the center of a partial sweep. While knowing the location of the selected site mitigates this problem slightly, we show that stochasticity in signatures of natural selection will frequently cause the signal to reach its zenith far from this site and that this effect is more severe for soft sweeps; thus inferences of the target as well as the mode of positive selection may be inaccurate. In addition, both the time since a sweep ends and biologically realistic levels of allelic gene conversion lead to errors in the classification and identification of selective sweeps. This general problem of “soft shoulders” underscores the difficulty in differentiating soft and partial sweeps from hard-sweep scenarios in molecular population genomics data. The soft-shoulder effect also implies that the more common hard sweeps have been in recent evolutionary history, the more prevalent spurious signatures of soft or partial sweeps may appear in some genome-wide scans.
机译:在遗传水平上表征适应性过程的性质是种群遗传学的主要目标。特别是,我们对适应性替代的来源或目前自然界分离的适应性变体的数量了解甚少。从历史上看,种群遗传学家一直将注意力集中在硬适应的适应模型上,在这种适应模型中出现了从头有益的突变并迅速将其固定在种群中。最近,人们对软扫描模型给予了更多关注,在这种模型中,以前处于中性或接近中性的等位基因会漂移,直到环境发生变化并且其选择系数发生变化从而变得有益为止。然而,在基因组多态性数据中,区分硬扫描和软扫描的信号特征仍然是一个活跃而困难的问题。通过对硬扫描和软扫描模型进行广泛的模拟,我们在这里表明确实通过使用简单的汇总统计数据可能无法将两者分开。尤其是,似乎在与硬扫掠地点相联但又远离的区域中进行重组,可以形成多态性模式,该模式与在软扫掠附近可能发现的情况非常相似。我们发现,使用基于单倍型的统计数据来检测部分或正在进行的选择性扫描时,会出现非常相似的情况,因此很难将硬扫描的肩部与部分扫描的中心区分开。虽然知道所选站点的位置可以稍微缓解此问题,但我们表明,自然选择签名的随机性通常会导致信号到达远离该站点的顶点,并且这种影响对于软扫描更为严重;因此,目标的推断以及积极选择的方式可能是不准确的。另外,自扫描结束以来的时间以及等位基因转化的生物学现实水平均导致选择性扫描的分类和鉴定错误。普遍存在的“软肩”问题凸显了在分子种群基因组学数据中将软扫描和部分扫描与硬扫描方案区分开来的困难。软肩效应还意味着,最近的进化史上出现了更为常见的硬扫掠,在某些全基因组扫描中,软扫掠或部分扫掠的伪造签名更为普遍。

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