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用接地阻抗法对树根吸收面进行电学测量:2. 基于异速生长关系和根系切断实验的验证。

Electrical measurement of tree root absorbing surfaces by the earth impedance method: 2. Verification based on allometric relationships and root severing experiments.

作者信息

Cermák Jan, Ulrich Radek, Stanek Zdenek, Koller Jan, Aubrecht Ludek

机构信息

Mendel University of Agriculture and Forestry, Institute of Forest Ecology, Zemedelska 3, 613 00 Brno, Czech Republic.

出版信息

Tree Physiol. 2006 Sep;26(9):1113-21. doi: 10.1093/treephys/26.9.1113.

Abstract

We validated, by means of allometric relationships and root severing experiments, the modified earth impedance method developed for measuring absorbing root surfaces. For the allometric studies, a series of 350 small and large trees of six broadleaf and coniferous species in several experimental sites was examined. We found a good linear ln-ln fit between absorbing root surface area and basal area (or stem cross-sectional area at the root collar in seedlings) over a range of stem diameters from 0.5-55 cm. The absorbing root surface area also changed consistently with crown projected area and the root-accessed area (territory) of the tree. At the whole-tree level, absorbing root surface area reached about 70 times that of basal area and 40% of crown projected area, or roughly 1/3 of the root-accessed area in Norway spruce (in this species, the ratio was relatively larger in small trees and smaller in large trees). The absorbing root surfaces of mechanically severed parts of Norway spruce root systems changed in about the same proportions as the geometrically determined parts of the severed root systems. These results are promising and support field applications of the method in biological and ecological studies.

摘要

我们通过异速生长关系和根系切断实验,验证了为测量吸收根表面积而开发的改良土壤阻抗法。对于异速生长研究,我们在多个实验地点对6种阔叶树和针叶树的350棵大小树木进行了考察。我们发现,在0.5至55厘米的茎直径范围内,吸收根表面积与基部面积(或幼苗根颈处的茎横截面积)之间存在良好的线性对数-对数拟合关系。吸收根表面积也与树冠投影面积和树木的根系可达面积(区域)一致变化。在整树水平上,吸收根表面积达到基部面积的约70倍和树冠投影面积的40%,或约为挪威云杉根系可达面积的1/3(在该物种中,该比例在小树中相对较大,在大树中较小)。挪威云杉根系机械切断部分的吸收根表面变化比例与切断根系的几何确定部分大致相同。这些结果很有前景,并支持该方法在生物学和生态学研究中的实地应用。

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