Parallel genetic adaptation amid a background of changing effective population sizes in divergent yellow perch (Perca flavescens) populations.

IF 3.8 1区 生物学 Q1 BIOLOGY
Xiaoshen Yin, Claire E Schraidt, Morgan M Sparks, Peter T Euclide, Tyler J Hoyt, Carl R Ruetz Iii, Tomas O Höök, Mark R Christie
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引用次数: 0

Abstract

Aquatic ecosystems are highly dynamic environments vulnerable to natural and anthropogenic disturbances. High-economic-value fisheries are one of many ecosystem services affected by these disturbances, and it is critical to accurately characterize the genetic diversity and effective population sizes of valuable fish stocks through time. We used genome-wide data to reconstruct the demographic histories of economically important yellow perch (Perca flavescens) populations. In two isolated and genetically divergent populations, we provide independent evidence for simultaneous increases in effective population sizes over both historic and contemporary time scales including negative genome-wide estimates of Tajima's D, 3.1 times more single nucleotide polymorphisms than adjacent populations, and contemporary effective population sizes that have increased 10- and 47-fold from their minimum, respectively. The excess of segregating sites and negative Tajima's D values probably arose from mutations accompanying historic population expansions with insufficient time for purifying selection, whereas linkage disequilibrium-based estimates of Ne also suggest contemporary increases that may have been driven by reduced fishing pressure or environmental remediation. We also identified parallel, genetic adaptation to reduced visual clarity in the same two habitats. These results suggest that the synchrony of key ecological and evolutionary processes can drive parallel demographic and evolutionary trajectories across independent populations.

在有效种群数量不断变化的背景下,黄鲈(Perca flavescens)种群的遗传适应发生了分化。
水生生态系统是高度动态的环境,很容易受到自然和人为干扰的影响。具有高经济价值的渔业是受这些干扰影响的众多生态系统服务之一,因此准确描述有价值鱼类种群的遗传多样性和有效种群数量至关重要。我们利用全基因组数据重建了具有重要经济价值的黄鲈(Perca flavescens)种群的人口历史。在两个孤立且基因不同的种群中,我们提供了独立的证据,证明有效种群规模在历史和当代时间尺度上同时增加,包括田岛D的全基因组负估计值、单核苷酸多态性是相邻种群的3.1倍,以及当代有效种群规模分别比最小值增加了10倍和47倍。过多的分离位点和负的Tajima's D值可能是由于历史上种群扩张时突变造成的,没有足够的时间进行纯化选择,而基于连锁不平衡的Ne估计值也表明,当代种群规模的增加可能是由于捕捞压力减小或环境修复造成的。我们还发现,在同样的两个栖息地中,视觉清晰度降低也会产生平行的遗传适应。这些结果表明,关键的生态和进化过程的同步性可以驱动独立种群之间的平行人口和进化轨迹。
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来源期刊
CiteScore
7.90
自引率
4.30%
发文量
502
审稿时长
1 months
期刊介绍: Proceedings B is the Royal Society’s flagship biological research journal, accepting original articles and reviews of outstanding scientific importance and broad general interest. The main criteria for acceptance are that a study is novel, and has general significance to biologists. Articles published cover a wide range of areas within the biological sciences, many have relevance to organisms and the environments in which they live. The scope includes, but is not limited to, ecology, evolution, behavior, health and disease epidemiology, neuroscience and cognition, behavioral genetics, development, biomechanics, paleontology, comparative biology, molecular ecology and evolution, and global change biology.
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