Institut de Recherche en Biologie Végétale, Département de sciences biologiques, Université de Montréal, Montréal, Canada.
Centre de Recherche et de Développement de St-Jean-sur-Richelieu, Agriculture et Agroalimentaire Canada, Saint-Jean-sur-Richelieu, Canada.
Biol Rev Camb Philos Soc. 2017 Nov;92(4):1859-1876. doi: 10.1111/brv.12312. Epub 2016 Nov 7.
Temperature imposes significant constraints on ectothermic animals, and these organisms have evolved numerous adaptations to respond to these constraints. While the impacts of temperature on the physiology of ectotherms have been extensively studied, there are currently no frameworks available that outline the multiple and often simultaneous pathways by which temperature can affect behaviour. Drawing from the literature on insects, we propose a unified framework that should apply to all ectothermic animals, generalizing temperature's behavioural effects into: (1) kinetic effects, resulting from temperature's bottom-up constraining influence on metabolism and neurophysiology over a range of timescales (from short to long term), and (2) integrated effects, where the top-down integration of thermal information intentionally initiates or modifies a behaviour (behavioural thermoregulation, thermal orientation, thermosensory behavioural adjustments). We discuss the difficulty in distinguishing adaptive behavioural changes from constraints when observing animals' behavioural responses to temperature. We then propose two complementary approaches to distinguish adaptations from constraints, and categorize behaviours according to our framework: (i) 'kinetic null modelling' of temperature's effects on behaviour; and (ii) behavioural ecology experiments using temperature-insensitive mutants. Our framework should help to guide future research on the complex relationship between temperature and behaviour in ectothermic animals.
温度对变温动物具有显著的限制作用,这些生物已经进化出许多适应机制来应对这些限制。虽然温度对变温动物生理的影响已经得到了广泛的研究,但目前还没有框架可以概述温度影响行为的多种且往往是同时发生的途径。本文以昆虫学文献为基础,提出了一个统一的框架,该框架应该适用于所有变温动物,将温度对行为的影响概括为:(1)由代谢和神经生理学在多个时间尺度(从短期到长期)上受到温度的自上而下的限制所产生的动力学效应;(2)整合效应,其中热信息的自上而下的整合有意地启动或改变行为(行为体温调节、热定向、热感觉行为调整)。我们讨论了在观察动物对温度的行为反应时,区分适应性行为变化和限制的困难。然后,我们提出了两种互补的方法来区分适应和限制,并根据我们的框架对行为进行分类:(i)对行为受温度影响的“动力学零模型”;(ii)使用温度不敏感突变体的行为生态学实验。我们的框架应该有助于指导未来对变温动物中温度和行为之间复杂关系的研究。