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大气湿度升高对杂交白杨木质部解剖和水力特性的影响。

Impact of elevated atmospheric humidity on anatomical and hydraulic traits of xylem in hybrid aspen.

作者信息

Jasi Ska Anna Katarzyna, Alber Meeli, Tullus Arvo, Rahi Märt, Sellin Arne

机构信息

Institute of Ecology and Earth Sciences, University of Tartu, Lai 40, 51005 Tartu, Estonia.

Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Kreutzwaldi 5, 51014 Tartu, Estonia.

出版信息

Funct Plant Biol. 2015 Jun;42(6):565-578. doi: 10.1071/FP14224.

Abstract

This study was performed on hybrid aspen saplings growing at the Free Air Humidity Manipulation site in Estonia. We investigated changes in wood anatomy and hydraulic conductivity in response to increased air humidity. Two hydraulic traits (specific conductivity and leaf-specific conductivity) and four anatomical traits of stem wood-relative vessel area (VA), vessel density (VD), pit area and pit aperture area-were influenced by the humidity manipulation. Stem hydraulic traits decreased in the apical direction, whereas branch hydraulic characteristics tended to be greatest in mid-canopy, associated with branch size. A reduction in VD due to increasing humidity was accompanied by a decrease in vessel lumen diameter, hydraulically weighted mean diameter (Dh), xylem vulnerability index and theoretical hydraulic conductivity. VA and Dh combined accounted for 87.4% of the total variation in kt of branches and 85.5% of that in stems across the treatments. Characters of branch vessels were more stable, and only the vessel-grouping index (the ratio of the total number of vessels to the total number of vessel groupings) was dependent on the interactive effect of the treatment and canopy position. Our results indicate that the increasing atmospheric humidity predicted for high latitudes will result in moderate changes in the structure and functioning of the hybrid aspen xylem.

摘要

本研究在爱沙尼亚的自由空气湿度控制试验点生长的杂交白杨幼树上进行。我们研究了木材解剖结构和水力传导率随空气湿度增加的变化。湿度处理影响了两个水力特性(比导率和叶比导率)以及茎木的四个解剖特性——相对导管面积(VA)、导管密度(VD)、纹孔面积和纹孔孔径面积。茎的水力特性沿顶端方向降低,而分支的水力特性在树冠中部往往最大,这与分支大小有关。湿度增加导致的VD降低伴随着导管腔直径、水力加权平均直径(Dh)、木质部脆弱性指数和理论水力传导率的降低。在所有处理中,VA和Dh共同解释了分支kt总变异的87.4%以及茎kt总变异的85.5%。分支导管的特征更稳定,只有导管分组指数(导管总数与导管分组总数的比值)取决于处理和树冠位置的交互作用。我们的结果表明,预测高纬度地区大气湿度的增加将导致杂交白杨木质部结构和功能的适度变化。

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