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Enhanced (hydrodynamic) transport induced by population growth in reaction–diffusion systems with application to population genetics

机译:反应扩散系统中种群增长引起的增强的(水动力)运输及其在种群遗传学中​​的应用

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摘要

We consider a system made up of different physical, chemical, or biological species undergoing replication, transformation, and disappearance processes, as well as slow diffusive motion. We show that for systems with net growth the balance between kinetics and the diffusion process may lead to fast, enhanced hydrodynamic transport. Solitary waves in the system, if they exist, stabilize the enhanced transport, leading to constant transport speeds. We apply our theory to the problem of determining the original mutation position from the current geographic distribution of a given mutation. We show that our theory is in good agreement with a simulation study of the mutation problem presented in the literature. It is possible to evaluate migratory trajectories from measured data related to the current distribution of mutations in human populations.
机译:我们考虑一个由不同物理,化学或生物物种组成的系统,这些物理,化学或生物物种经历复制,转化和消失过程以及缓慢的扩散运动。我们表明,对于具有净增长的系统,动力学与扩散过程之间的平衡可能会导致快速,增强的水动力传输。系统中的孤立波(如果存在的话)稳定了增强的传输,从而导致恒定的传输速度。我们将我们的理论应用于从给定突变的当前地理分布确定原始突变位置的问题。我们证明我们的理论与文献中提出的突变问题的模拟研究非常吻合。可以从与人口中突变的当前分布有关的实测数据评估迁移轨迹。

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