Department of Physics, Bar-Ilan University, Ramat-Gan, IL, 52900, Israel.
Evolution. 2022 Nov;76(11):2739-2757. doi: 10.1111/evo.14616. Epub 2022 Oct 12.
Evolutionary processes take place in fluctuating environments, where carrying capacities and selective forces vary over time. The fate of a mutant type and the persistence time of polymorphic states were studied in some specific cases of varying environments, but a generic methodology is still lacking. Here, we present such a general analytic framework. We first identify a set of elementary building blocks, a few basic demographic processes like logistic or exponential growth, competition at equilibrium, sudden decline, and so on. For each of these elementary blocks, we evaluate the mean and the variance of the changes in the frequency of the mutant population. Finally, we show how to find the relevant terms of the diffusion equation for each arbitrary combination of these blocks. Armed with this technique one may calculate easily the quantities that govern the evolutionary dynamics, like the chance of ultimate fixation, the time to absorption, and the time to fixation.
进化过程发生在不断变化的环境中,其中承载能力和选择力随时间而变化。在一些特定的环境变化情况下,研究了突变体类型的命运和多态状态的持续时间,但仍缺乏通用的方法。在这里,我们提出了这样一个通用的分析框架。我们首先确定了一组基本的构建块,一些基本的人口统计过程,如逻辑斯谛或指数增长、平衡竞争、突然下降等。对于每个基本块,我们评估了突变体种群频率变化的均值和方差。最后,我们展示了如何为这些块的任意组合找到扩散方程的相关项。有了这项技术,人们可以很容易地计算出控制进化动态的数量,例如最终固定的机会、吸收的时间和固定的时间。