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Size-dependent predation and correlated life history traits alter eco-evolutionary dynamics and selection for faster individual growth

机译:依赖于依赖的捕食和相关的寿命历史特征改变了生态进化动态和选择,以更快的个体增长

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摘要

Age at maturation is a key life history trait influencing individual fitness, population age structure, and ecological interactions. We investigated the evolution of age at maturity through changes in the von Bertalanffy growth constant for organisms with a simple juvenile-adult life history. We used Gillespie eco-evolutionary models to uncover the role of predation in driving the evolution of the growth constant when eco-evolutionary dynamics are present. We incorporated both size-independent and size-dependent predation into our models to generate differences in selection and dynamics in the system. Our results generally support the idea that faster ontogenetic growth is beneficial when populations are growing but that predation tends to have little effect on age at maturity unless there are trade-offs with other life history traits. In particular, if faster ontogenetic growth comes at the cost of fecundity, our results suggest that predation selects for intermediate levels of growth and fecundity. Eco-evolutionary dynamics influenced the nature of selection only when growth was linked to fecundity. We also found that predators that increasingly consume larger prey tend to have higher population sizes due to the greater energy intake from larger prey, but the growth rate-fecundity trade-off reversed this pattern. Overall, our results suggest an important role for interactions between size-dependent foraging and life-history trade-offs in generating varying selection on age at maturity through underlying growth traits.
机译:成熟年龄是影响个人健康,人口年龄结构和生态相互作用的关键寿命历史特征。通过具有简单的青少年成年生命历史的生物体的von Bertalanffy生长常数的变化,我们调查了成熟年龄的演变。我们使用Gillespie Eco进化模型来揭示捕食在存在生态进化动态时捕获增长恒定的演变的作用。我们将大小无关和大小相关的捕获纳入我们的模型,以在系统中产生选择和动态的差异。我们的结果普遍支持群体增长时更快的植入增长的想法是有益的,但除非有其他生命历史特征的权衡,否则捕食往往对成熟时期的年龄效果不大。特别是,如果繁殖的繁殖增长速度较快,我们的结果表明捕食选择的中间水平的生长和繁殖力。 Eco进化动态仅在增长与繁殖力相关时影响选择的性质。我们还发现,由于较大猎物的能量摄入量大,越来越多地消耗更大的猎物的捕食者往往具有更高的人口尺寸,但增长率 - 繁殖力折衷逆转了这种模式。总体而言,我们的成果表明,依赖于依赖于依赖的觅食和生活历史权衡之间的相互作用,通过潜在的增长特征在成熟时期的年龄选择不同选择之间的相互作用。

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