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Phylogenetic grouping, curvature and metabolic scaling in terrestrial invertebrates

机译:陆生无脊椎动物的系统发育分组,曲率和代谢标度

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For more than a century, the scaling of animal metabolic rates with individual body masses and environmental temperature has predominantly been described by power-law and exponential relationships respectively. Many theories have been proposed to explain these scaling relationships, but were challenged by empirically documented curvatures on double-logarithmic scales. In the present study, we present a novel data set comprising 3661 terrestrial (mainly soil) invertebrate respiration rates from 192 independent sources across a wide range in body masses, environmental temperatures and phylogenetic groups. Although our analyses documented power-law and exponential scaling with body masses and temperature, respectively, polynomial models identified curved deviations. Interestingly, complex scaling models accounting for phylogenetic groups were able to remove curvatures except for a negative curvature at the highest temperatures (>30°C) indicating metabolic down regulation. This might indicate that the tremendous differences in invertebrate body architectures, ecology and physiology may cause severely different metabolic scaling processes.
机译:一个多世纪以来,动物代谢率随个体体重和环境温度的变化分别主要通过幂律和指数关系来描述。已经提出了许多理论来解释这些标度关系,但是受到经验证明的双对数标度曲率的挑战。在本研究中,我们提供了一个新颖的数据集,包括来自192个独立来源的366种陆地(主要是土壤)无脊椎动物呼吸速率,涉及体重,环境温度和系统发生群体的广泛范围。尽管我们的分析记录了分别随体重和温度变化的幂律和指数标度,但是多项式模型可以确定弯曲偏差。有趣的是,考虑了系统发育组的复杂比例缩放模型能够去除曲率,但在最高温度(> 30°C)下出现负曲率,表明代谢下降。这可能表明无脊椎动物的身体结构,生态学和生理学上的巨大差异可能导致新陈代谢过程的严重不同。

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