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Age Structure, Changing Demography and Effective Population Size in Atlantic Salmon (Salmo salar)

机译:大西洋鲑(Salmo salar)的年龄结构,不断变化的人口统计学和有效种群数量

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摘要

Effective population size (Ne) is a central evolutionary concept, but its genetic estimation can be significantly complicated by age structure. Here we investigate Ne in Atlantic salmon (Salmo salar) populations that have undergone changes in demography and population dynamics, applying four different genetic estimators. For this purpose we use genetic data (14 microsatellite markers) from archived scale samples collected between 1951 and 2004. Through life table simulations we assess the genetic consequences of life history variation on Ne. Although variation in reproductive contribution by mature parr affects age structure, we find that its effect on Ne estimation may be relatively minor. A comparison of estimator models suggests that even low iteroparity may upwardly bias Ne estimates when ignored (semelparity assumed) and should thus empirically be accounted for. Our results indicate that Ne may have changed over time in relatively small populations, but otherwise remained stable. Our ability to detect changes in Ne in larger populations was, however, likely hindered by sampling limitations. An evaluation of Ne estimates in a demographic context suggests that life history diversity, density-dependent factors, and metapopulation dynamics may all affect the genetic stability of these populations.
机译:有效种群数量(Ne)是一个重要的进化概念,但是其遗传估计可能会因年龄结构而大大复杂化。在这里,我们使用四种不同的遗传估计量,对经历了人口统计学和种群动态变化的大西洋鲑(Salmo salar)种群中的Ne进行调查。为此,我们使用了1951年至2004年收集的规模样本中的遗传数据(14个微卫星标记)。通过生命表模拟,我们评估了生命史变异对Ne的遗传后果。尽管成熟帕尔繁殖贡献的变化会影响年龄结构,但我们发现其对Ne估计的影响可能相对较小。估算器模型的比较表明,即使忽略了较低的等位性,Ne的估算值(假设均等)也会使Ne的估算值产生偏差,因此应从经验上加以考虑。我们的结果表明,Ne可能在相对较小的人群中随时间变化,但否则保持稳定。但是,我们可能无法检测到较大人群中Ne的变化,这可能是由于采样限制所致。在人口统计学背景下对Ne估计值的评估表明,生活史的多样性,依赖密度的因素以及种群动态都可能影响这些种群的遗传稳定性。

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