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树木和维管植物异速生长的通用标度律:迈向一个将植物形态与从细胞到生态系统的功能联系起来的通用定量理论。

Universal scaling in tree and vascular plant allometry: toward a general quantitative theory linking plant form and function from cells to ecosystems.

作者信息

Enquist Brian J

机构信息

Department of Ecology and Evolutionary Biology, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Tree Physiol. 2002 Nov;22(15-16):1045-64. doi: 10.1093/treephys/22.15-16.1045.

Abstract

A general theory of allometric scaling that predicts how the proportions of vascular plants and the characteristics of plant communities change or scale with plant size is outlined. The theory rests, in part, on the assumptions of (1) minimal energy dissipation in the transport of fluid through space-filling, fractal-like, branching vascular networks; and (2) the absence of scaling with plant size in the anatomical and physiological attributes of leaves and xylem. The theory shows how the scaling of metabolism with plant size is central to the scaling of whole-plant form and function. It is shown how allometric constraints influence plant populations and, potentially, processes in plant evolution. Rapidly accumulating evidence in support of the general allometric model is reviewed and new evidence is presented. Current work supports the notion that scaling of how plants utilize space and resources is central to the development of a general synthetic and quantitative theory of plant form, function, ecology and diversity.

摘要

概述了一个异速生长比例的通用理论,该理论预测维管植物的比例以及植物群落的特征如何随植物大小变化或按比例缩放。该理论部分基于以下假设:(1)在通过空间填充、类分形分支维管网络输送流体时能量耗散最小;(2)叶片和木质部的解剖学和生理学属性不随植物大小缩放。该理论表明,代谢随植物大小的缩放如何成为整株植物形态和功能缩放的核心。展示了异速生长限制如何影响植物种群以及植物进化过程。回顾了迅速积累的支持通用异速生长模型的证据,并给出了新的证据。当前的研究支持这样一种观点,即植物利用空间和资源方式的缩放是植物形态、功能、生态学和多样性通用综合定量理论发展的核心。

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