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首页> 外文期刊>Journal of the Royal Society Interface >Macronutrient intakes and the lifespan-fecundity trade-off: a geometric framework agent-based model
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Macronutrient intakes and the lifespan-fecundity trade-off: a geometric framework agent-based model

机译:Macronurient摄入量和寿命繁殖力折衷:基于几何框架代理的模型

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摘要

Lifespan and fecundity, the main components in evolutionary fitness, are both strongly affected by nutritional state. Geometric framework of nutrition (GFN) experiments has shown that lifespan and fecundity are separated in nutrient space leading to a functional trade-off between the two traits. Here we develop a spatially explicit agent-based model (ABM) using the GFN to explore how ecological factors may cause selection on macronutrient appetites to optimally balance these life-history traits. We show that increasing the risk of extrinsic mortality favours intake of a mixture of nutrients that is associated with maximal fecundity at the expense of reduced longevity and that this result is robust across spatial and nutritional environments. These model behaviours are consistent with what has been observed in studies that quantify changes in life history in response to environmental manipulations. Previous GFN-derived ABMs have treated fitness as a single value. This is the first such model to instead decompose fitness into its primary component traits, longevity and fecundity, allowing evolutionary fitness to be an emergent property of the two. Our model demonstrates that selection on macronutrient appetites may affect life-history trade-offs and makes predictions that can be directly tested in artificial selection experiments.
机译:寿命和繁殖力,进化健康的主要成分,都受到营养状态的强烈影响。营养的几何框架(GFN)实验表明,在营养空间中分离出来的寿命和繁殖力,导致两个特征之间的功能性折衷。在这里,我们使用GFN开发基于空间的基于代理的模型(ABM),以探索生态因素如何导致Macronurients胃口的选择,以最佳地平衡这些生命历史特征。我们表明,提高外部死亡率的风险促使营养素的混合物以牺牲寿命降低的牺牲和营养环境的牺牲牺牲了最大的繁殖力相关的营养素。这些模型行为与在研究中所观察到的研究中,以满足环境操纵的影响。以前的GFN衍生的ABMS将适应性视为单一值。这是第一这样的模型,而是将适应性分解为其主要分量的特征,寿命和繁殖力,允许进化的适应度成为两者的紧急性质。我们的模型表明,Macronurient胃口的选择可能会影响寿命历史权衡,并使可以在人工选择实验中直接测试的预测。

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