Gillooly J F, Brown J H, West G B, Savage V M, Charnov E L
Department of Biology, The University of New Mexico, Albuquerque, NM 87131, USA.
Science. 2001 Sep 21;293(5538):2248-51. doi: 10.1126/science.1061967.
We derive a general model, based on principles of biochemical kinetics and allometry, that characterizes the effects of temperature and body mass on metabolic rate. The model fits metabolic rates of microbes, ectotherms, endotherms (including those in hibernation), and plants in temperatures ranging from 0 degrees to 40 degrees C. Mass- and temperature-compensated resting metabolic rates of all organisms are similar: The lowest (for unicellular organisms and plants) is separated from the highest (for endothermic vertebrates) by a factor of about 20. Temperature and body size are primary determinants of biological time and ecological roles.
我们基于生化动力学和异速生长原理推导出一个通用模型,该模型描述了温度和体重对代谢率的影响。该模型适用于温度范围为0摄氏度至40摄氏度的微生物、变温动物、恒温动物(包括处于冬眠状态的动物)和植物的代谢率。所有生物的质量和温度补偿后的静息代谢率相似:最低的(单细胞生物和植物)与最高的(恒温脊椎动物)相差约20倍。温度和体型是生物时间和生态角色的主要决定因素。