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Phylogenetic patterns of trait and trait plasticity evolution: Insights from amphibian embryos.

Rick A RelyeaPatrick R StephensLisa N BarrowAndrew R BlausteinPaul W BradleyJulia C BuckAnn ChangJames P CollinsBrian CrotherJulia EarlStephanie S GervasiJason T HovermanOliver HymanEmily Moriarty LemmonThomas M LuhringMoses MichelsonChris MurraySteven PriceRaymond D SemlitschAndrew SihAaron B StolerNick VandenBroekAlexa WarwickGreta WengertJohn I Hammond
Published in: Evolution; international journal of organic evolution (2018)
Environmental variation favors the evolution of phenotypic plasticity. For many species, we understand the costs and benefits of different phenotypes, but we lack a broad understanding of how plastic traits evolve across large clades. Using identical experiments conducted across North America, we examined prey responses to predator cues. We quantified five life-history traits and the magnitude of their plasticity for 23 amphibian species/populations (spanning three families and five genera) when exposed to no cues, crushed-egg cues, and predatory crayfish cues. Embryonic responses varied considerably among species and phylogenetic signal was common among the traits, whereas phylogenetic signal was rare for trait plasticities. Among trait-evolution models, the Ornstein-Uhlenbeck (OU) model provided the best fit or was essentially tied with Brownian motion. Using the best fitting model, evolutionary rates for plasticities were higher than traits for three life-history traits and lower for two. These data suggest that the evolution of life-history traits in amphibian embryos is more constrained by a species' position in the phylogeny than is the evolution of life history plasticities. The fact that an OU model of trait evolution was often a good fit to patterns of trait variation may indicate adaptive optima for traits and their plasticities.
Keyphrases
  • genome wide
  • dna methylation
  • genetic diversity
  • climate change
  • electronic health record
  • big data
  • data analysis