Annual killifish adapted to life in seasonally ephemeral water-bodies exhibit desiccation resistant eggs that can undergo diapause, a period of developmental arrest, enabling them to traverse the otherwise inhospitable dry season. Environmental cues that potentially indicate the season can govern whether eggs enter a stage of diapause mid-way through development or skip this diapause and instead undergo direct development. We report, based on construction of a supermatrix phylogenetic tree of the order Cyprinodontiformes and a battery of comparative analyses, that the ability to produce diapause eggs evolved independently at least six times within African and South American killifish. We then show in species representative of these lineages...
The annual killifish, Austrofundulus limnaeus, is capable of entering into a state of metabolic and ...
Repeated, independent emergence of the same trait within different phylogenetic lineages is termed p...
Two ways in which organisms adapt to variable environments are phenotypic plasticity and bet-hedging...
Annual killifish adapted to life in seasonally ephemeral water-bodies exhibit desiccation resistant ...
Background: Diapause is a developmental arrest present in annual killifish, whose eggs are able to s...
Annual killifish adapted to life in aquatic habitat that seasonally dries have evolved desiccation r...
Across the tree of life there is a great deal of variation in life cycles, life histories, and repro...
Background: Annual killifishes are adapted to surviving and reproducing over alternating dry and wet...
Killifishes survive and persist in extreme environments by exploiting both aquatic and terrestrial h...
Annual killifish survive in temporary ponds by producing drought-tolerant embryos that can enter met...
Diapause is a reversible developmental arrest faced by many organisms in harsh environments. Annual ...
Background: Many organisms are able to survive in extreme environments by entering a state of dorman...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
International audienceEmbryos of annual killifish diapause in soil egg banks while ponds are dry. Th...
Organisms inhabiting unpredictable environments often evolve diversified reproductive bet-hedging st...
The annual killifish, Austrofundulus limnaeus, is capable of entering into a state of metabolic and ...
Repeated, independent emergence of the same trait within different phylogenetic lineages is termed p...
Two ways in which organisms adapt to variable environments are phenotypic plasticity and bet-hedging...
Annual killifish adapted to life in seasonally ephemeral water-bodies exhibit desiccation resistant ...
Background: Diapause is a developmental arrest present in annual killifish, whose eggs are able to s...
Annual killifish adapted to life in aquatic habitat that seasonally dries have evolved desiccation r...
Across the tree of life there is a great deal of variation in life cycles, life histories, and repro...
Background: Annual killifishes are adapted to surviving and reproducing over alternating dry and wet...
Killifishes survive and persist in extreme environments by exploiting both aquatic and terrestrial h...
Annual killifish survive in temporary ponds by producing drought-tolerant embryos that can enter met...
Diapause is a reversible developmental arrest faced by many organisms in harsh environments. Annual ...
Background: Many organisms are able to survive in extreme environments by entering a state of dorman...
Embryos of annual killifish diapause in soil egg banks while ponds are dry. Their rates of developme...
International audienceEmbryos of annual killifish diapause in soil egg banks while ponds are dry. Th...
Organisms inhabiting unpredictable environments often evolve diversified reproductive bet-hedging st...
The annual killifish, Austrofundulus limnaeus, is capable of entering into a state of metabolic and ...
Repeated, independent emergence of the same trait within different phylogenetic lineages is termed p...
Two ways in which organisms adapt to variable environments are phenotypic plasticity and bet-hedging...