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A mechanistic model of how metabolic rate can interact with resource environment to influence foraging success and lifespan

机译:代谢率如何与资源环境相互作用以影响觅食成功和寿命的机械模型

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摘要

Metabolic rate, the biological rate of energy processing, is often considered to be the fundamental determinant of pace of life in biological systems. Assuming foraging performance to be the central link between metabolic rate and pace of life, we modeled the behavior of biological units with different metabolic rate, as foraging groups with or without within-group variation in metabolic rate, in environments of various resource configurations, with or without group-level behaviors such as information sharing and division of labor. Our results show how metabolic rate can interact with the resource environment to produce differences in energy gain and lifespan. The results also suggest that in a group context, rather than the average metabolic rate of the group, it is the composition of the group that matters such that metabolically diverse groups outperform metabolically homogenous groups. With a proposed experimental approach to test these predictions, these findings bring new insights to possible gene environment interactions that may be involved in the evolution of intraspecific differences in metabolic rates and how metabolic diversity may contribute to the evolution of group living.
机译:代谢率,能量处理的生物学率,通常被认为是生物系统中生命速度的基本决定因素。假设觅食性能是代谢率和生命步伐之间的中心联系,我们以不同的代谢率建模了生物单位的行为,作为在各种资源配置的环境中具有或没有组的内变率内的觅食组,在各种资源配置的环境中或者没有组级行为,如信息共享和分工。我们的结果表明代谢率如何与资源环境互动,以产生能源增益和寿命的差异。结果还表明,在群体上下文中,而不是本集团的平均代谢率,这是该组的组成,使得代谢多样性群体优于代谢均匀群体。通过提出的实验方法来测试这些预测,这些发现可以对可能参与代谢率的可拆除差异的进化以及代谢多样性如何有助于群体生活的演变,这提出了新的见解。

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