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阔叶常绿树种大叶桉边材渗透性和解剖结构随树龄和树高的变化

Changes in sapwood permeability and anatomy with tree age and height in the broad-leaved evergreen species Eucalyptus regnans.

作者信息

England Jacqueline R, Attiwill Peter M

机构信息

School of Botany, University of Melbourne, Victoria 3010, Australia.

出版信息

Tree Physiol. 2007 Aug;27(8):1113-24. doi: 10.1093/treephys/27.8.1113.

Abstract

Increases in plant size and structural complexity with increasing age have important implications for water flow through trees. Water supply to the crown is influenced by both the cross-sectional area and the permeability of sapwood. It has been hypothesized that hydraulic conductivity within sapwood increases with age. We investigated changes in sapwood permeability (k) and anatomy with tree age and height in the broad-leaved evergreen species Eucalyptus regnans F. Muell. Sapwood was sampled at breast height from trees ranging from 8 to 240 years old, and at three height positions on the main stem of 8-year-old trees. Variation in k was not significant among sampling height positions in young trees. However, k at breast height increased with tree age. This was related to increases in both vessel frequency and vessel diameter, resulting in a greater proportion of sapwood being occupied by vessel lumina. Sapwood hydraulic conductivity (the product of k and sapwood area) also increased with increasing tree age. However, at the stand level, there was a decrease in forest sapwood hydraulic conductivity with increasing stand age, because of a decrease in the number of trees per hectare. Across all ages, there were significant relationships between k and anatomy, with individual anatomical characteristics explaining 33-62% of the variation in k. There was also strong agreement between measured k and permeability predicted by the Hagen-Poiseuille equation. The results support the hypothesis of an increase in sapwood permeability at breast height with age. Further measurements are required to confirm this result at other height positions in older trees. The significance of tree-level changes in sapwood permeability for stand-level water relations is discussed.

摘要

随着树龄增长,植物大小和结构复杂性的增加对树木中的水流具有重要影响。树冠的水分供应受边材横截面积和渗透性的影响。据推测,边材内的水力传导率会随着树龄增长而增加。我们研究了阔叶常绿树种大叶桉(Eucalyptus regnans F. Muell.)边材渗透性(k)和解剖结构随树龄和树高的变化。在胸高处采集了树龄从8年到240年的树木的边材样本,并在8年生树木主干的三个高度位置进行了采样。幼树中,不同采样高度位置的k值变化不显著。然而,胸高处的k值随树龄增加而增加。这与导管频率和导管直径的增加有关,导致边材中被导管腔占据的比例更大。边材水力传导率(k与边材面积的乘积)也随树龄增加而增加。然而,在林分水平上,由于每公顷树木数量的减少,森林边材水力传导率随林分年龄增加而降低。在所有树龄中,k与解剖结构之间存在显著关系,单个解剖特征可解释k值变化的33 - 62%。实测的k值与哈根 - 泊肃叶方程预测的渗透率之间也有很强的一致性。结果支持了胸高处边材渗透性随树龄增加的假设。需要进一步测量以在老龄树木的其他高度位置证实这一结果。本文还讨论了边材渗透性在树水平上的变化对林分水平水分关系的意义。

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