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

机译:性状的系统发育模式和性状可塑性进化:两栖动物胚胎的见解。

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摘要

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 by life history plasticity. 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.
机译:环境变化有利于表型可塑性的演变。对于许多物种,我们了解不同表型的成本和收益,但我们对可塑性性状如何在大型进化枝中进化的方法缺乏广泛的了解。使用在北美进行的相同实验,我们研究了猎物对捕食者线索的反应。当没有线索,压碎的卵线索和掠夺性小龙虾线索时,我们对23种两栖动物物种/种群(跨越三个科目和五个属)的五个生命历史特征及其可塑性大小进行了量化。胚间反应在种间差异很大,且系统性状信号在性状之间很常见,而系统性状信号因性状可塑性而很少见。在特质进化模型中,Ornstein Uhlenbeck(OU)模型提供了最佳拟合,或与布朗运动密切相关。使用最佳拟合模型,三个生命历史特征的可塑性进化速率高于性状,而两个生命历史特征则较低。这些数据表明,两栖动物胚胎中生活史特征的进化受物种在系统发育中的位置的限制要比生活史可塑性更大。性状进化的OU模型通常非常适合性状变异的模式这一事实可能表明对性状及其可塑性的适应性最佳。

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