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Canopy profiles of photosynthetic parameters under elevated CO2 and N fertilization in a poplar plantation

机译:杨树人工林CO2和N浓度升高下光合参数的冠层剖面。

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A poplar plantation has been exposed to an elevated CO2 concentration for 5 years using the free air CO2 enrichment (FACE) technique. Even after such a long period of exposure, leaves of Populus x euramericana have not shown clear signs of photosynthetic acclimation. Only at the end of the growing season for shade leaves was a decrease of maximum velocity of carboxylation (V-cmax) observed. Maximum electron transport rate (J(max)) was increased by FACE treatment in July. Assimilation rates at CO2 partial pressure of 400 (A(400)) and 600 (A(600)) mu mol mol(-1) were not significantly different under FACE treatment. Most notably FACE significantly decreased stomatal conductance (g(s)) both on upper and lower canopy leaves. N fertilization increased N content in the leaves on mass basis (N-m) and specific leaf area (SLA) in both CO2 treatments but did not influence the photosynthetic parameters. These data show that in poplar plantations the long-term effects of elevated CO2 on photosynthesis do not differ considerably from the short-term ones even with N deposition. (c) 2005 Elsevier Ltd. All rights reserved.
机译:杨树人工林已使用自由空气CO2浓缩(FACE)技术暴露于较高的CO2浓度下5年。即使经过如此长时间的暴露,胡杨x美洲紫苏的叶子也没有显示出明显的光合适应迹象。仅在阴影的生长季节结束时,观察到最大羧化速度(V-cmax)降低。 7月通过FACE处理提高了最大电子传输速率(J(max))。在FACE处理下,CO2分压为400(A(400))和600(A(600))mol mol(-1)时的同化率没有显着差异。最值得注意的是,FACE显着降低了上层和下层冠层叶片的气孔导度(g(s))。在两种CO2处理中,氮肥均以质量基准(N-m)和比叶面积(SLA)增加了叶片中的氮含量,但不影响光合参数。这些数据表明,在杨树人工林中,即使有氮沉降,CO 2升高对光合作用的长期影响也与短期影响没有显着差异。 (c)2005 Elsevier Ltd.保留所有权利。

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