British Antarctic Survey, High Cross, Madingley Road, Cambridge CB3 0ET, UK.
Trends Ecol Evol. 2019 Jun;34(6):502-509. doi: 10.1016/j.tree.2019.02.003. Epub 2019 Mar 1.
Growth involves two flows of energy: the chemical energy in the monomers used to construct the macromolecules that comprise tissue (proteins, nucleic acids, lipid membranes), and the metabolic energy used to build those macromolecules. The metabolic costs of synthesising the macromolecules necessary to build tissue are well defined, and we have a robust estimate of the overall cost of growth for an individual ectotherm. At the population level the cost of production appears to be much greater for endotherms than ectotherms, the reasons for which are not fully understood. These uncertainties are important to resolve if we wish to accurately model the flow of energy through populations or ecosystems because simply scaling up from individual energetics may produce misleading results.
用于构建组织(蛋白质、核酸、脂质膜)的大分子的单体中的化学能量,以及用于构建这些大分子的代谢能量。合成构建组织所需的大分子的代谢成本是明确的,我们对单个变温动物的整体生长成本有了一个可靠的估计。在种群水平上,内温动物的生产成本似乎比变温动物高得多,其原因尚不完全清楚。如果我们希望准确地模拟能量在种群或生态系统中的流动,那么解决这些不确定性是很重要的,因为仅仅从个体能量学上进行扩展可能会产生误导性的结果。