bioRxiv · 10.1101/2020.01.29.924373
Variable environments select for short lifespan
Abstract
The role of environmental variation in the evolution of lifespan is contested. Classic theory predicts that variable environments favour the evolution of long life, but recent theoretical work suggests that environmental variation can instead select for shorter lifespan when the changes are rapid relative to generation time. Here, we used experimental evolution to study how lifespan evolves in response to temperature variation. Genetically diverse populations of the outcrossing nematode Caenorhabditis remanei, were exposed to a novel, stressful temperature for 30 generations, under stable, gradually warming or fluctuating thermal regimes. We found the evolution of shorter lifespan in populations exposed to environments that fluctuated within the individuals lifetime, compared to populations evolving in stable warm temperature. While climate warming is predicted to increase environmental stochasticity, our results show that fast temperature cycles can rapidly select for short lifespan.
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Lind, M. I., Ratikainen, I. I., Andersson, J., Carlsson, H., Krieg, T., Larva, T., Maklakov, A. A.. 2020-01-29. Variable environments select for short lifespan. https://doi.org/10.1101/2020.01.29.924373
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