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Allometric exponents do not support a universal metabolic allometry

机译:异速指数不支持通用代谢异速

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摘要

The debate about the value of the allometric scaling exponent (b) relating metabolic rate to body mass (metabolic rate = a × massb) is ongoing, with published evidence both for and against a 3/4-power scaling law continuing to accumulate. However, this debate often revolves around a dichotomous distinction between the 3/4-power exponent predicted by recent models of nutrient distribution networks and a 2/3 exponent predicted by Euclidean surface-area-to-volume considerations. Such an approach does not allow for the possibility that there is no single “true” exponent. In the present study, we conduct a meta-analysis of 127 interspecific allometric exponents to determine whether there is a universal metabolic allometry or if there are systematic differences between taxa or between metabolic states. This analysis shows that the effect size of mass on metabolic rate is significantly heterogeneous and that, on average, the effect of mass on metabolic rate is stronger for endotherms than for ectotherms. Significant differences between scaling exponents were also identified between ectotherms and endotherms, as well as between metabolic states (e.g., rest, field, and exercise), a result that applies to b values estimated by ordinary least squares, reduced major axis, and phylogenetically correct regression models. The lack of support for a single exponent model suggests that there is no universal metabolic allometry and represents a significant challenge to any model that predicts only a single value of b.
机译:关于将代谢率与体重(代谢率= a×massb)联系起来的异速伸缩定标指数(b)的值的争论仍在进行中,有关3/4幂定标定律的反对证据不断积累。但是,这种争论通常围绕着营养分配网络的最新模型所预测的3/4幂指数与欧几里德表面积与体积的考虑所预测的2/3指数之间的二分区别。这种方法不允许存在不存在单个“真实”指数的可能性。在本研究中,我们对127种种间异速异体指数进行了荟萃分析,以确定是否存在普遍的代谢异速体,或者分类群之间或代谢状态之间是否存在系统差异。该分析表明,质量对代谢率的影响大小明显不同,并且平均而言,质量对代谢率的影响对于吸热而言要强于对吸热的影响。还确定了等温线和吸热线之间以及代谢状态(例如,休息,田野和运动)之间缩放指数之间的显着差异,该结果适用于由普通最小二乘法,减少的长轴估计和系统发育正确的b值回归模型。缺乏对单一指数模型的支持表明没有普遍的代谢异速测量法,并且对仅预测b单个值的任何模型都构成了重大挑战。

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