The Evolution of Phenotypic Plasticity in Response to Temperature Stress

Author:

Mallard Francois1ORCID,Nolte Viola1,Schlötterer Christian1

Affiliation:

1. Institut für Populationsgenetik, Vetmeduni Vienna, Austria

Abstract

Abstract Phenotypic plasticity is the ability of a single genotype to produce different phenotypes in response to environmental variation. The importance of phenotypic plasticity in natural populations and its contribution to phenotypic evolution during rapid environmental change is widely debated. Here, we show that thermal plasticity of gene expression in natural populations is a key component of its adaptation: evolution to novel thermal environments increases ancestral plasticity rather than mean genetic expression. We determined the evolution of plasticity in gene expression by conducting laboratory natural selection on a Drosophila simulans population in hot and cold environments. After more than 60 generations in the hot environment, 325 genes evolved a change in plasticity relative to the natural ancestral population. Plasticity increased in 75% of these genes, which were strongly enriched for several well-defined functional categories (e.g., chitin metabolism, glycolysis, and oxidative phosphorylation). Furthermore, we show that plasticity in gene expression of populations exposed to different temperatures is rather similar across species. We conclude that most of the ancestral plasticity can evolve further in more extreme environments.

Funder

Marie Skłodowska Curie Individual Fellowship

European Research Council

Austrian Science Funds

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

Reference65 articles.

1. Thermal Adaptation

2. Controlling the false discovery rate: a practical and powerful approach to multiple testing;Benjamini;J R Stat Soc B,1995

3. Genomic evidence of rapid and stable adaptive oscillations over seasonal time scales in Drosophila;Bergland;PLoS Genet,2014

4. A role for genetic accommodation in evolution?;Braendle;Bioessays,2006

5. Genome-wide analysis of a long-term evolution experiment with Drosophila;Burke;Nature,2010

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