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黄松中与高度相关的生长衰退并非由碳限制所致。

Height-related growth declines in ponderosa pine are not due to carbon limitation.

作者信息

Sala Anna, Hoch Günter

机构信息

Division of Biological Sciences, The University of Montana, Missoula, MT 59812, USA.

出版信息

Plant Cell Environ. 2009 Jan;32(1):22-30. doi: 10.1111/j.1365-3040.2008.01896.x. Epub 2008 Nov 10.

Abstract

Decreased gas exchange as trees grow tall has been proposed to explain age-related growth declines in trees. We examined changes of mobile carbon stores (starch, sugars and lipids) with tree height in ponderosa pine (Pinus ponderosa) at two sites differing in water availability, and tested the following hypotheses: (1) carbon supply does not become increasingly limited as trees grow tall; rather, the concentration of mobile carbon compounds increases with tree height reflecting greater reductions of carbon sink activities relative to carbon assimilation; and (2) increases of stored mobile carbon compounds with tree height are greater in drier sites. Height-related growth reductions were associated with significant increases of non-structural carbohydrates (NSC) and lipid concentrations in all tissues in the upper canopy and of NSC in the bole. Lipid concentrations in the bole decreased with tree height, but such decrease is not necessarily inconsistent with non-limiting carbon supply in tall trees. Furthermore, we found stronger increases of mobile carbon stores with tree height at the dry site relative to the moist site. Our results provide first direct evidence that carbon supply does not limit growth in tall trees and that decreases of water availability might negatively impact growth processes more than net-photosynthesis.

摘要

树木长高时气体交换减少被认为可以解释树木与年龄相关的生长衰退现象。我们在两个水分可利用性不同的地点,研究了黄松(Pinus ponderosa)中移动碳储存(淀粉、糖和脂质)随树高的变化,并检验了以下假设:(1)随着树木长高,碳供应不会越来越受限;相反,移动碳化合物的浓度会随着树高增加,这反映出相对于碳同化,碳汇活动的减少幅度更大;(2)在较干燥的地点,储存的移动碳化合物随树高的增加幅度更大。与树高相关的生长减少与树冠上部所有组织中非结构性碳水化合物(NSC)和脂质浓度的显著增加以及树干中NSC的增加有关。树干中的脂质浓度随树高降低,但这种降低不一定与高大树木中碳供应不受限相矛盾。此外,我们发现,相对于湿润地点,干燥地点移动碳储存随树高的增加幅度更大。我们的结果首次提供了直接证据,表明碳供应不会限制高大树木的生长,并且水分可利用性的降低可能对生长过程的负面影响大于对净光合作用的影响。

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