Asexual Evolution Waves: Fluctuations and Universality
Daniel S. Fisher

TL;DR
This paper develops mathematical models to understand the stochastic dynamics of beneficial mutations in large asexual populations, revealing universal behaviors and fluctuations that influence evolutionary outcomes.
Contribution
It introduces advanced asymptotic methods to analyze fluctuations and distributions in a broad class of asexual evolution models with rapidly declining beneficial mutation distributions.
Findings
Dynamics are universal for large populations with certain mutation distributions.
Fluctuations significantly impact the speed of evolution and genetic diversity.
A simple stochastic model captures key aspects of the evolution process.
Abstract
In large asexual populations, multiple beneficial mutations arise in the population, compete, interfere with each other, and accumulate on the same genome, before any of them fix. The resulting dynamics, although studied by many authors, is still not fully understood, fundamentally because the effects of fluctuations due to the small numbers of the fittest individuals are large even in enormous populations. In this paper, branching processes and various asymptotic methods for analyzing the stochastic dynamics are further developed and used to obtain information on fluctuations, time dependence, and the distributions of sizes of subpopulations, jumps in the mean fitness, and other properties. The focus is on the behavior of a broad class of models: those with a distribution of selective advantages of available beneficial mutations that falls off more rapidly than exponentially. For such…
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