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Balancing nutrients, water and heat in the face of environmental change: a thermodynamic niche framework.

机译:面对环境变化,平衡营养,水和热量:热力学利基框架。

摘要

Models of the regulatory behaviour of organisms are fundamental to a strong physiologically-based understanding of species' responses to global environmental change. Biophysical models of heat and water exchange in organisms (biophysical ecology) and nutritionally-explicit models for understanding feeding behaviour and its fitness consequences (the Geometric Framework of nutrition, GF) are providing such an underpinning. However, temperature, water and nutrition interact in fundamental ways in influencing the responses of the organism to their environment, and a priority is to develop an integrated approach for conceptualising and measuring these interactions. Ideally, such an approach would be based on a thermodynamically-formalized energy and mass budgeting approach that is sparsely parameterised and sufficiently general to apply across a range of situations and organisms. Here we illustrate how mass-balance aspects of Dynamic Energy Budget theory can be applied to obtain first-principles estimates of fluxes of O
机译:生物调节行为的模型是对物种对全球环境变化的反应进行基于生理的深刻理解的基础。生物体中的热与水交换的生物物理模型(生物物理生态学)以及用于理解喂养行为及其适应性后果的营养显式模型(营养的几何框架,GF)提供了这样的基础。但是,温度,水和营养以根本方式相互作用,从而影响生物对环境的反应,因此优先考虑开发一种综合方法,以概念化和测量这些相互作用。理想地,这种方法将基于热力学形式化的能源和质量预算方法,该方法的参数稀疏且具有足够的通用性,可应用于各种情况和生物。在这里,我们说明了如何将动态能量收支理论的质量平衡方面应用于获得O通量的第一性原理估计

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