Sadoul Bastien, Martin Olivier, Prunet Patrick, Friggens Nicolas C
INRA, LPGP Fish Physiology and Genomics UR1037, Rennes, France.
INRA, Modélisation Systémique Appliquée aux Ruminants UMR0791, Paris, France; AgroParisTech, Modélisation Systémique Appliquée aux Ruminants UMR0791, Paris, France.
PLoS One. 2015 Aug 31;10(8):e0137333. doi: 10.1371/journal.pone.0137333. eCollection 2015.
Environmental perturbations can affect the health, welfare, and fitness of animals. Being able to characterize and phenotype adaptive capacity is therefore of growing scientific concern in animal ecology and in animal production sciences. Terms borrowed from physics are commonly used to describe adaptive responses of animals facing an environmental perturbation, but no quantitative characterization of these responses has been made. Modeling the dynamic responses to an acute challenge was used in this study to facilitate the characterization of adaptive capacity and therefore robustness. A simple model based on a spring and damper was developed to simulate the dynamic responses of animals facing an acute challenge. The parameters characterizing the spring and the damper can be interpreted in terms of stiffness and resistance to the change of the system. The model was tested on physiological and behavioral responses of rainbow trout facing an acute confinement challenge. The model has proven to properly fit the different responses measured in this study and to quantitatively describe the different temporal patterns for each statistical individual in the study. It provides therefore a new way to explicitly describe, analyze and compare responses of individuals facing an acute perturbation. This study suggests that such physical models may be usefully applied to characterize robustness in many other biological systems.
环境扰动会影响动物的健康、福祉和适应性。因此,能够表征和描述动物的适应能力在动物生态学和动物生产科学中日益受到科学界的关注。从物理学中借用的术语通常用于描述动物面对环境扰动时的适应性反应,但尚未对这些反应进行定量表征。本研究采用对急性挑战的动态反应建模来促进对适应能力进而对稳健性的表征。开发了一个基于弹簧和阻尼器的简单模型来模拟动物面对急性挑战时的动态反应。表征弹簧和阻尼器的参数可以从系统的刚度和对变化的阻力方面进行解释。该模型在虹鳟面对急性限制挑战的生理和行为反应上进行了测试。该模型已被证明能够很好地拟合本研究中测量的不同反应,并定量描述研究中每个统计个体的不同时间模式。因此,它提供了一种新的方式来明确描述、分析和比较个体面对急性扰动时的反应。这项研究表明,这种物理模型可能会有效地应用于表征许多其他生物系统中的稳健性。