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鸟类和哺乳动物的代谢标度:分类群分歧时间、系统发育和代谢率如何影响标度指数与截距之间的关系。

Metabolic Scaling in Birds and Mammals: How Taxon Divergence Time, Phylogeny, and Metabolic Rate Affect the Relationship between Scaling Exponents and Intercepts.

作者信息

Gavrilov Valery M, Golubeva Tatiana B, Warrack Giles, Bushuev Andrey V

机构信息

Department of Vertebrate Zoology, M.V. Lomonosov Moscow State University, 119991 Moscow, Russia.

Zvenigorod Biological Station, M.V. Lomonosov Moscow State University, 119991 Moscow, Russia.

出版信息

Biology (Basel). 2022 Jul 18;11(7):1067. doi: 10.3390/biology11071067.

Abstract

Analysis of metabolic scaling in currently living endothermic animal species allowed us to show how the relationship between body mass and the basal metabolic rate (BMR) has evolved in the history of endothermic vertebrates. We compared six taxonomic groups according to their energetic characteristics and the time of evolutionary divergence. We transformed the slope of the regression lines to the common value and analyzed three criteria for comparing BMR of different taxa regardless of body size. Correlation between average field metabolic rate (FMR) of the group and its average BMR was shown. We evaluated the efficiency of self-maintenance in ordinary life (defined BMR/FMR) in six main groups of endotherms. Our study has shown that metabolic scaling in the main groups of endothermic animals correlates with their evolutionary age: the younger the group, the higher the metabolic rate, but the rate increases more slowly with increasing body weight. We found negative linear relationship for scaling exponents and the allometric coefficient in five groups of endotherms: in units of mL O/h per g, in relative units of allometric coefficients, and also in level or scaling elevation. Mammals that diverged from the main vertebrate stem earlier have a higher "" exponent than later divergent birds. A new approach using three criteria for comparing BMR of different taxa regardless of body mass will be useful for many biological size-scaling relationships that follow the power function.

摘要

对现存恒温动物物种的代谢标度分析,使我们能够展示体重与基础代谢率(BMR)之间的关系在恒温脊椎动物历史中是如何演变的。我们根据能量特征和进化分歧时间对六个分类群进行了比较。我们将回归线的斜率转换为共同值,并分析了三种用于比较不同分类单元BMR的标准,而不考虑体型大小。结果显示了该组平均野外代谢率(FMR)与其平均BMR之间的相关性。我们评估了六个主要恒温动物类群在日常生活中的自我维持效率(定义为BMR/FMR)。我们的研究表明,恒温动物主要类群的代谢标度与其进化年龄相关:类群越年轻,代谢率越高,但随着体重增加,代谢率增加得更慢。我们在五组恒温动物中发现了标度指数与异速生长系数之间的负线性关系:以每克每小时毫升氧气为单位,以异速生长系数的相对单位,以及在水平或标度高度方面。从主要脊椎动物主干较早分化出来的哺乳动物,其“指数”比后来分化的鸟类更高。一种使用三种标准来比较不同分类单元BMR而不考虑体重的新方法,对于许多遵循幂函数的生物大小标度关系将是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9827/9312277/744f4628d6a0/biology-11-01067-g001.jpg

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