【2h】

Waiting time to parapatric speciation.

机译:等待异族形成的时间。

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摘要

Using a weak migration and weak mutation approximation, I studied the average waiting time to parapatric speciation. The description of reproductive isolation used is based on the classical Dobzhansky model and its recently proposed multilocus generalizations. The dynamics of parapatric speciation are modelled as a biased random walk performed by the average genetic distance between the residents and immigrants. If a small number of genetic changes is sufficient for complete reproductive isolation, mutation and random genetic drift alone can cause speciation on the time-scale of ten to 1,000 times the inverse of the mutation rate over a set of loci underlying reproductive isolation. Even relatively weak selection for local adaptation can dramatically decrease the waiting time to speciation. The actual duration of the parapatric speciation process (that is the duration of intermediate forms in the actual transition to a state of complete reproductive isolation) is shorter by orders of magnitude than the overall waiting time to speciation. For a wide range of parameter values, the actual duration of parapatric speciation is of the order of one over the mutation rate. In general, parapatric speciation is expected to be triggered by changes in the environment.
机译:通过使用弱迁移和弱突变近似,我研究了异族物种形成的平均等待时间。使用的生殖隔离的描述基于经典的Dobzhansky模型及其最近提出的多基因座概括。家长式物种形成的动力学建模为由居民和移民之间的平均遗传距离进行的有偏向的随机游走。如果少量的遗传变化足以完成完整的生殖分离,则仅突变和随机遗传漂移就可以在十个至一千倍的时间尺度上形成物种,该时间尺度是一组潜在的生殖分离位点的突变率的倒数。即使是本地适应性相对较弱的选择,也可以显着减少物种形成的等待时间。准亲属形成过程的实际持续时间(即实际过渡到完全生殖隔离状态的中间形式的持续时间)比整个等待形成时间要短几个数量级。对于较大范围的参数值,准父本形态形成的实际持续时间大约是突变率的一倍。一般而言,环境变化会触发准父母形态的形成。

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