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Crossing regimes of temperature dependence in animal movement

机译:动物运动中温度依赖性的交叉机制

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A pressing challenge in ecology is to understand the effects of changing global temperatures on food web structure and dynamics. The stability of these complex ecological networks largely depends on how predator-prey interactions may respond to temperature changes. Because predators and prey rely on their velocities to catch food or avoid being eaten, understanding how temperatures may affect animal movement is central to this quest. Despite our efforts, we still lack a mechanistic understanding of how the effect of temperature on metabolic processes scales up to animal movement and beyond. Here, we merge a biomechanical approach, the Metabolic Theory of Ecology and empirical data to show that animal movement displays multiple regimes of temperature dependence. We also show that crossing these regimes has important consequences for population dynamics and stability, which depend on the parameters controlling predator-prey interactions. We argue that this dependence upon interaction parameters may help explain why experimental work on the temperature dependence of interaction strengths has so far yielded conflicting results. More importantly, these changes in the temperature dependence of animal movement can have consequences that go well beyond ecological interactions and affect, for example, animal communication, mating, sensory detection, and any behavioral modality dependent on the movement of limbs. Finally, by not taking into account the changes in temperature dependence reported here we might not be able to properly forecast the impact of global warming on ecological processes and propose appropriate mitigation action when needed.
机译:生态学中的紧迫挑战是要了解全球温度变化对食物网结构和动力学的影响。这些复杂的生态网络的稳定性在很大程度上取决于捕食者与猎物之间的相互作用可能如何响应温度变化。由于掠食者和猎物依靠它们的速度来捕获食物或避免被吃掉,因此了解温度如何影响动物的活动是此任务的关键。尽管我们付出了很多努力,但我们仍然对温度对代谢过程的影响如何扩展到动物运动及其他方面缺乏机械的理解。在这里,我们将生物力学方法,生态代谢理论和经验数据相结合,以表明动物运动表现出多种温度依赖性。我们还表明,越过这些制度对种群动态和稳定性具有重要影响,这取决于控制捕食者与猎物相互作用的参数。我们认为这种对相互作用参数的依赖性可能有助于解释为什么迄今为止关于相互作用强度对温度的依赖性的实验工作产生了矛盾的结果。更重要的是,这些对动物运动的温度依赖性的变化所带来的后果远远超出了生态相互作用,并且会影响例如动物的交流,交配,感觉检测以及取决于肢体运动的任何行为方式。最后,如果不考虑此处报告的温度依赖性变化,我们可能无法正确预测全球变暖对生态过程的影响,并在需要时提出适当的缓解措施。

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