Two ways in which organisms adapt to variable environments are phenotypic plasticity and bet-hedging. Theory suggests that bet-hedging is expected to evolve in unpredictable environments for which reliable cues indicative of future conditions (or season length) are lacking. Alternatively, if reliable cues exist indicating future conditions, organisms will be under selection to produce the most appropriate phenotype – that is, adaptive phenotypic plasticity. Here we experimentally test which of these modes of adaptation are at play in killifish that have evolved an annual life cycle. These fish persist in ephemeral pools that completely dry each season through the production of eggs that can remain in developmental arrest, or diapause, burie...
1. Changes to the timing of key life-cycle events can alter selection on life-history traits and hav...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
In ephemeral habitats, the same genotypes cope with unpredictable environmental conditions, favourin...
Two ways in which organisms adapt to variable environments are phenotypic plasticity and bet-hedging...
Comparative evidence suggests that adaptive plasticity may evolve as a response to predictable envir...
Across the tree of life there is a great deal of variation in life cycles, life histories, and repro...
In ephemeral habitats, the same genotypes cope with unpredictable environmental conditions, favourin...
Organisms inhabiting unpredictable environments often evolve diversified reproductive bet-hedging st...
Organisms inhabiting unpredictable environments often evolve diversified reproductive bet-hedging st...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
Annual killifish adapted to life in seasonally ephemeral water-bodies exhibit desiccation resistant ...
International audienceBackground: Diapause is a developmental arrest present in annual killifish, wh...
1. Changes to the timing of key life-cycle events can alter selection on life-history traits and hav...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
In ephemeral habitats, the same genotypes cope with unpredictable environmental conditions, favourin...
Two ways in which organisms adapt to variable environments are phenotypic plasticity and bet-hedging...
Comparative evidence suggests that adaptive plasticity may evolve as a response to predictable envir...
Across the tree of life there is a great deal of variation in life cycles, life histories, and repro...
In ephemeral habitats, the same genotypes cope with unpredictable environmental conditions, favourin...
Organisms inhabiting unpredictable environments often evolve diversified reproductive bet-hedging st...
Organisms inhabiting unpredictable environments often evolve diversified reproductive bet-hedging st...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
Annual killifish adapted to life in seasonally ephemeral water-bodies exhibit desiccation resistant ...
International audienceBackground: Diapause is a developmental arrest present in annual killifish, wh...
1. Changes to the timing of key life-cycle events can alter selection on life-history traits and hav...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
In ephemeral habitats, the same genotypes cope with unpredictable environmental conditions, favourin...