Adaptive Potential of Epigenetic Switching During Adaptation to Fluctuating Environments

Author:

Stajic Dragan123ORCID,Bank Claudia145,Gordo Isabel1ORCID

Affiliation:

1. Instituto Gulbenkian de Ciência , 2780-156 Oeiras, Portugal

2. Department of Zoology, University of Stockholm , Stockholm, Sweden

3. Department of Infectious Diseases and Pathobiology, Institute for Fish and Wildlife Health, University of Bern , 3012 Bern, Switzerland

4. Department of Biology, Institute for Ecology and Evolution, University of Bern , 3012 Bern, Switzerland

5. Swiss Institute of Bioinformatics , 1015 Lausanne, Switzerland

Abstract

Abstract Epigenetic regulation of gene expression allows for the emergence of distinct phenotypic states within the clonal population. Due to the instability of epigenetic inheritance, these phenotypes can intergenerationally switch between states in a stochastic manner. Theoretical studies of evolutionary dynamics predict that the phenotypic heterogeneity enabled by this rapid epigenetic switching between gene expression states would be favored under fluctuating environmental conditions, whereas genetic mutations, as a form of stable inheritance system, would be favored under a stable environment. To test this prediction, we engineered switcher and non-switcher yeast strains, in which the uracil biosynthesis gene URA3 is either continually expressed or switched on and off at two different rates (slow and fast switchers). Competitions between clones with an epigenetically controlled URA3 and clones without switching ability (SIR3 knockout) show that the switchers are favored in fluctuating environments. This occurs in conditions where the environments fluctuate at similar rates to the rate of switching. However, in stable environments, but also in environments with fluctuation frequency higher than the rate of switching, we observed that genetic changes dominated. Remarkably, epigenetic clones with a high, but not with a low, rate of switching can coexist with non-switchers even in a constant environment. Our study offers an experimental proof of concept that helps defining conditions of environmental fluctuation under which epigenetic switching provides an advantage.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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