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温度对淡水甲壳类关键种代谢比例的影响取决于鱼类捕食模式。

Temperature effects on metabolic scaling of a keystone freshwater crustacean depend on fish-predation regime.

机构信息

Department of Biology, Juniata College, 1700 Moore Street, Huntingdon, PA 16652, USA

Department of Biology, Juniata College, 1700 Moore Street, Huntingdon, PA 16652, USA.

出版信息

J Exp Biol. 2020 Nov 12;223(Pt 21):jeb232322. doi: 10.1242/jeb.232322.

Abstract

According to the metabolic theory of ecology, metabolic rate, an important indicator of the pace of life, varies with body mass and temperature as a result of internal physical constraints. However, various ecological factors may also affect metabolic rate and its scaling with body mass. Although reports of such effects on metabolic scaling usually focus on single factors, the possibility of significant interactive effects between multiple factors requires further study. In this study, we show that the effect of temperature on the ontogenetic scaling of resting metabolic rate of the freshwater amphipod depends critically on habitat differences in predation regime. Increasing temperature tends to cause decreases in the metabolic scaling exponent (slope) in population samples from springs with fish predators, but increases in population samples from springs without fish. Accordingly, the temperature sensitivity of metabolic rate is not only size-specific, but also its relationship to body size shifts dramatically in response to fish predators. We hypothesize that the dampened effect of temperature on the metabolic rate of large adults in springs with fish, and of small juveniles in springs without fish are adaptive evolutionary responses to differences in the relative mortality risk of adults and juveniles in springs with versus without fish predators. Our results demonstrate a complex interaction among metabolic rate, body mass, temperature and predation regime. The intraspecific scaling of metabolic rate with body mass and temperature is not merely the result of physical constraints related to internal body design and biochemical kinetics, but rather is ecologically sensitive and evolutionarily malleable.

摘要

根据生态代谢理论,代谢率作为生活节奏的一个重要指标,会受到体重和温度的影响,这是由于内部物理限制造成的。然而,各种生态因素也可能影响代谢率及其与体重的比例关系。尽管关于这种代谢比例变化的影响的报告通常集中在单一因素上,但多个因素之间存在显著的交互作用的可能性需要进一步研究。在这项研究中,我们表明,温度对淡水端足目动物休息代谢率的个体发生比例的影响,取决于捕食制度的生境差异。在有鱼类捕食者的泉水中,温度升高往往会导致种群样本的代谢比例指数(斜率)下降,但在没有鱼类的泉水中,种群样本的代谢比例指数(斜率)则会升高。因此,代谢率的温度敏感性不仅是特定于大小的,而且其与体型的关系也会因鱼类捕食者的存在与否而发生巨大变化。我们假设,有鱼类的泉水中,大型成年个体的代谢率受温度的影响较小,而没有鱼类的泉水中,小型幼体的代谢率受温度的影响较大,这是对有鱼类和无鱼类捕食者的泉水中成年个体和幼体相对死亡率差异的适应性进化反应。我们的结果表明,代谢率、体重、温度和捕食制度之间存在复杂的相互作用。与身体设计和生化动力学相关的内部物理限制不仅仅是导致代谢率与体重和温度的种内比例关系的原因,而是对生态具有敏感性,并且在进化上具有可变性。

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