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树木高度的限制。

The limits to tree height.

作者信息

Koch George W, Sillett Stephen C, Jennings Gregory M, Davis Stephen D

机构信息

Department of Biological Sciences and the Merriam-Powell Center for Environmental Research, Northern Arizona University, Flagstaff, Arizona 86011, USA.

出版信息

Nature. 2004 Apr 22;428(6985):851-4. doi: 10.1038/nature02417.

Abstract

Trees grow tall where resources are abundant, stresses are minor, and competition for light places a premium on height growth. The height to which trees can grow and the biophysical determinants of maximum height are poorly understood. Some models predict heights of up to 120 m in the absence of mechanical damage, but there are historical accounts of taller trees. Current hypotheses of height limitation focus on increasing water transport constraints in taller trees and the resulting reductions in leaf photosynthesis. We studied redwoods (Sequoia sempervirens), including the tallest known tree on Earth (112.7 m), in wet temperate forests of northern California. Our regression analyses of height gradients in leaf functional characteristics estimate a maximum tree height of 122-130 m barring mechanical damage, similar to the tallest recorded trees of the past. As trees grow taller, increasing leaf water stress due to gravity and path length resistance may ultimately limit leaf expansion and photosynthesis for further height growth, even with ample soil moisture.

摘要

在资源丰富、压力较小且对光照的竞争使高度生长具有重要意义的地方,树木会长得很高。人们对树木能够生长到的高度以及最大高度的生物物理决定因素了解甚少。一些模型预测,在没有机械损伤的情况下,树木高度可达120米,但历史记载中有更高的树木。目前关于高度限制的假说集中在较高树木中水分运输限制的增加以及由此导致的叶片光合作用的降低。我们在加利福尼亚州北部潮湿的温带森林中研究了红杉(红杉),包括地球上已知最高的树(112.7米)。我们对叶片功能特征高度梯度的回归分析估计,除非受到机械损伤,树木的最大高度为122 - 130米,这与过去记录的最高树木相似。随着树木长得更高,由于重力和路径长度阻力导致的叶片水分胁迫增加,可能最终会限制叶片扩展和光合作用,从而限制树木进一步长高,即使土壤水分充足。

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