首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Warming reduces metabolic rate in marine snails: Adaptation to fluctuating high temperatures challenges the metabolic theory of ecology
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Warming reduces metabolic rate in marine snails: Adaptation to fluctuating high temperatures challenges the metabolic theory of ecology

机译:变暖降低了海洋蜗牛的新陈代谢速率:适应不断变化的高温挑战了生态学的新陈代谢理论

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The universal temperature-dependence model (UTD) of the metabolic theory of ecology (MTE) proposes that temperature controls mass-scaled, whole-animal resting metabolic rate according to the first principles of physics (Boltzmann kinetics). Controversy surrounds the model's implication of a mechanistic basis for metabolism that excludes the effects of adaptive regulation, and it is unclear how this would apply to organisms that live in fringe environments and typically show considerable metabolic adaptation. We explored thermal scaling of metabolism in a rocky-shore eulittoral-fringe snail (Echinolittorina malaccana) that experiences constrained energy gain and fluctuating high temperatures (between 25°C and approximately 50°C) during prolonged emersion (weeks). In contrast to the prediction of the UTD model, metabolic rate was often negatively related to temperature over a benign range (30-40°C), the relationship depending on (i) the temperature range, (ii) the degree of metabolic depression (related to the quiescent period), and (iii) whether snails were isolated within their shells. Apparent activation energies (E) varied between 0.05 and - 0.43 eV, deviating excessively from the UTD's predicted range of between 0.6 and 0.7 eV. The lowering of metabolism when heated should improve energy conservation in a high-temperature environment and challenges both the theory's generality and its mechanistic basis.
机译:生态代谢理论(MTE)的通用温度依赖性模型(UTD)提出,温度应根据物理学的第一原理(玻尔兹曼动力学)控制大规模的全动物静止代谢率。该模型围绕新陈代谢的机制基础的含义存在争议,该模型排除了适应性调节的影响,目前尚不清楚这将如何应用于生活在边缘环境中并通常表现出相当大的新陈代谢适应性的生物。我们研究了岩壁岸缘条纹蜗牛(Echinolittorina malaccana)中代谢的热定标,该蜗牛在延长的出土时间(数周)内会受到限制的能量获取并在高温(25°C至约50°C之间)波动。与UTD模型的预测相反,新陈代谢率通常与温度在良性范围(30-40°C)上呈负相关,该关系取决于(i)温度范围,(ii)代谢抑制的程度( (与休止期有关),以及(iii)蜗牛壳内是否分离出蜗牛。表观活化能(E)在0.05到-0.43 eV之间变化,与UTD的0.6到0.7 eV的预计范围相差太大。加热时新陈代谢的降低应改善高温环境下的能量保存,并挑战该理论的普遍性及其机理基础。

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