Predicting the repeatability of evolution remains elusive. Theory and empirical studies suggest that strong selection and large population sizes increase the probability for parallel evolution at the phenotypic and genotypic levels. However, selection and population sizes are not constant, but rather change continuously and directly affect each other even on short time scales. Here, we examine the degree of parallel evolution shaped through eco-evolutionary dynamics in an algal host population coevolving with a virus. We find high degrees of parallelism at the level of population size changes (ecology) and at the phenotypic level between replicated populations. At the genomic level, we find evidence for parallelism, as the same large genomi...
Viruses are integral to ecological and evolutionary processes, but we have a poor understanding of w...
Understanding the dynamics of molecular adaptation is a fundamental goal of evolutionary biology. Wh...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Predicting the repeatability of evolution remains elusive. Theory and empirical studies suggest that...
Predicting the repeatability of evolution remains elusive. Theory and empirical studies suggest that...
Predicting the repeatability of evolution remains elusive. Theory and empirical studies sug- gest t...
Species interactions and coevolution are integral to ecological communities, but we lack empirical i...
Parallel evolution across replicate populations has provided evolutionary biologists with iconic exa...
The degree to which evolutionary trajectories and outcomes are repeatable across independent populat...
Evolution experiments have demonstrated high levels of genetic parallelism between populations evolv...
Characterizing how viruses evolve expands our understanding of the underlying fundamental processes,...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Parallel evolution, defined as identical changes arising in independent populations, is often attrib...
Viruses are integral to ecological and evolutionary processes, but we have a poor understanding of w...
Understanding the dynamics of molecular adaptation is a fundamental goal of evolutionary biology. Wh...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Predicting the repeatability of evolution remains elusive. Theory and empirical studies suggest that...
Predicting the repeatability of evolution remains elusive. Theory and empirical studies suggest that...
Predicting the repeatability of evolution remains elusive. Theory and empirical studies sug- gest t...
Species interactions and coevolution are integral to ecological communities, but we lack empirical i...
Parallel evolution across replicate populations has provided evolutionary biologists with iconic exa...
The degree to which evolutionary trajectories and outcomes are repeatable across independent populat...
Evolution experiments have demonstrated high levels of genetic parallelism between populations evolv...
Characterizing how viruses evolve expands our understanding of the underlying fundamental processes,...
We investigated the relationship between genomic and phenotypic evolution among replicate population...
Parallel evolution, defined as identical changes arising in independent populations, is often attrib...
Viruses are integral to ecological and evolutionary processes, but we have a poor understanding of w...
Understanding the dynamics of molecular adaptation is a fundamental goal of evolutionary biology. Wh...
We investigated the relationship between genomic and phenotypic evolution among replicate population...