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整合代谢比例理论与共存理论。

Integrating metabolic scaling and coexistence theories.

作者信息

Saavedra Serguei, Arroyo José Ignacio, Deng Jie, Marquet Pablo A, Kempes Christopher P

机构信息

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

Santa Fe Institute, Santa Fe, New Mexico, USA.

出版信息

Ecology. 2025 Aug;106(8):e70173. doi: 10.1002/ecy.70173.

Abstract

Metabolic scaling theory has been pivotal in formalizing the expected energy expenditures across populations as a function of body size. Coexistence theory has provided a mathematization of the environmental conditions compatible with multispecies coexistence. Yet, it has been challenging to explain how observed community-wide patterns, such as the inverse relationship between population abundance density and body size, can be unified under both theories. Here, we provide the foundation for a tractable, scalable, and extendable framework to study the coexistence of resource-mediated competing populations as a function of their body size. For a given thermal domain and response, this integration reveals that the metabolically predicted 1/4 power dependence of carrying capacity of biomass density on body size can be understood as the average distribution of carrying capacities across feasible environmental conditions, especially for large communities. In line with empirical observations, our integration predicts that such average distribution leads to communities in which population biomass densities at equilibrium are independent from body size, and consequently, population abundance densities are inversely related to body size. This integration opens new opportunities to increase our understanding of how metabolic scaling relationships at the population level can shape processes at the community level under changing environments.

摘要

代谢比例理论在将不同种群预期的能量消耗形式化为体型的函数方面起到了关键作用。共存理论对与多物种共存相兼容的环境条件进行了数学描述。然而,要解释如何在这两种理论下统一诸如种群丰度密度与体型之间的反比关系等观察到的全群落模式,一直具有挑战性。在此,我们为一个易于处理、可扩展且可延伸的框架奠定基础,以研究资源介导的竞争种群作为体型函数的共存情况。对于给定的热域和响应,这种整合表明,代谢预测的生物量密度承载能力对体型的1/4幂依赖性可理解为承载能力在可行环境条件下的平均分布,特别是对于大型群落而言。与实证观察结果一致,我们的整合预测,这种平均分布会导致群落中处于平衡状态的种群生物量密度与体型无关,因此,种群丰度密度与体型呈反比关系。这种整合为增进我们对在不断变化的环境下种群水平的代谢比例关系如何塑造群落水平过程的理解带来了新机遇。

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