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Natural selection in populations subject to a migration load

机译:受人口迁移影响的自然选择

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Migration tends to oppose the effects of divergent natural selection among populations. Numerous theoretical and empirical studies have demonstrated that this migration-selection balance constrains genetic divergence among populations. In contrast, relatively few studies have examined immigration's effects on fitness and natural selection within recipient populations. By constraining local adaptation, migration can lead to reduced fitness, known as a "migration load," which in turn causes persistent natural selection. We develop a simple two-island model of migration-selection balance that, although very general, also reflects the natural history of Timema cristinae walking-stick insects that inhabit two host plant species that favor different cryptic color patterns. We derive theoretical predictions about how migration rates affect the level of maladaptation within populations (measured as the frequency of less-cryptic color-pattern morphs), which in turn determines the selection differential (the within-generation morph frequency change). Using data on color morph frequencies from 25 natural populations, we confirm previous results showing that maladaptation is higher in populations receiving more immigrants. We then present novel evidence that this increased maladaptation leads to larger selection differentials, consistent with our model. Our results provide comparative evidence that immigration elevates the variance in fitness, which in turn leads to larger selection differentials, consistent with Fisher's Theorem of Natural Selection. However, we also find evidence that recurrent adult migration between parapatric populations may tend to obscure the effects of selection.
机译:移民往往反对人口之间自然选择的差异。大量的理论和经验研究表明,这种迁移选择平衡会限制种群之间的遗传差异。相比之下,相对较少的研究检查了移民对接受者群体的适应性和自然选择的影响。通过限制局部适应,迁移会导致适应性降低,这被称为“迁移负荷”,进而导致持续的自然选择。我们开发了一个简单的两岛迁移选择平衡模型,尽管该模型非常笼统,但也反映了Timema cristinae手杖昆虫的自然历史,该昆虫居住于两种寄主植物中,它们倾向于不同的隐秘颜色模式。我们得出有关迁移率如何影响种群内适应不良水平的理论预测(以不那么隐秘的彩色图案变体的频率衡量),进而确定选择差异(代内变体频率变化)。使用来自25个自然种群的颜色变体频率数据,我们确认了先前的结果,表明接受更多移民的种群中适应不良率更高。然后,我们提供了新颖的证据,表明这种不良适应增加导致了更大的选择差异,与我们的模型一致。我们的结果提供了比较证据,表明移民会增加适应度的差异,进而导致更大的选择差异,这与费舍尔自然选择定理是一致的。但是,我们也发现有证据表明,成年后异族人口之间的成年人反复迁徙可能会掩盖选择的影响。

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