Tradeoff between short-term and long-term adaptation in a changing environment
Robert Forster, Claus O. Wilke
Abstract
We investigate the competition dynamics of two microbial or viral strains that live in an environment that switches periodically between two states. One of the strains is adapted to the long-term environment, but pays a short-term cost, while the other is adapted to the short-term environment and pays a cost in the long term. We explore the tradeoff between these alternative strategies in extensive numerical simulations, and present a simple analytic model that can predict the outcome of these competitions as a function of the mutation rate and the time scale of the environmental changes. Our model is relevant for arboviruses, which alternate between different host species on a regular basis.
Create a lesson
Related papers
Self-Replicating Neural Cellular Automata: Quantifying Emergent Phenotypic and Genotypic Diversity in an OpenEnded Substrate
Sanyam Jain, Felix Simon Reimers, Stefano Nichele
Optimum foraging area in a three-trophic food chain
Lucas Massoni, Rafael Menezes, Marcus A. M. de Aguiar et al.
Graph construction in QUBO-based recursive phylogenetic tree reconstruction
Yoshiki Kanazawa, Ashish Joshi, Takahiko Koyama
Anomalous First Passage in Evolution: Edge-KPZ Theory
Tetsuhiro S. Hatakeyama
Navigating the Delicate Geometry of Beehive Mite Infestation with Optimal Control
Julia Saff, Bhargav R. Karamched
Evolution of Fast and Slow Life Histories in Resource-Constrained Populations with Mass-Mortality Events
Éloi Martin, David Steinsaltz