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Soil warming increased whole-tree water use of Pinus cembra at the treeline in the Central Tyrolean Alps

机译:土壤变暖增加了蒂罗尔中部阿尔卑斯山林线全树松的全树耗水量

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摘要

The study quantified the effect of soil warming on sap flow density (Qs) of Pinus cembra at treeline in the Central Tyrolean Alps. To enhance soil temperature we installed a transparent roof construction above the forest floor around six trees. Six other trees served as controls in the absence of any manipulation. Roofing enhanced growing season mean soil temperature by 1.6, 1.3, and 1.0 °C at 5, 10, and 20 cm soil depth, respectively, while soil water availability was not affected. Sap flow density (using Granier-type thermal dissipation probes) and environmental parameters were monitored throughout three growing seasons. During the first year of treatment, no warming effect was detected on Qs. However, soil warming caused Qs to increase significantly by 11 and 19% above levels in control trees during the second and third year, respectively. This effect appeared to result from warming-induced root production, a reduction in viscosity and perhaps an increase also in root hydraulic conductivity. Hardly affected were leaf-level net CO2 uptake rate and conductance for water vapor, so that water-use efficiency stayed unchanged as confirmed by needle δ13C analysis. We conclude that tree water loss will increase with soil warming, which may alter the water balance within the treeline ecotone of the Central Austrian Alps in a future warming environment.
机译:这项研究量化了土壤温度升高对蒂罗尔中部阿尔卑斯山林线松柏树液流密度(Qs)的影响。为了提高土壤温度,我们在森林地面上方的六棵树上安装了透明的屋顶结构。在没有任何操作的情况下,其他六棵树用作对照。屋面提高​​了生长季节的平均温度,分别在5、10和20 cm的土壤深度下分别提高了1.6、1.3和1.0°C,而土壤水的有效性不受影响。在三个生长季节中监测汁液流量密度(使用Granier型散热探针)和环境参数。在治疗的第一年,没有发现Qs变暖的影响。然而,在第二年和第三年中,土壤变暖导致Qs分别比对照树高出11%和19%。这种作用似乎是由于变暖引起的根系产生,粘度降低以及根系水力传导率也可能增加。针叶δ 13 C分析证实,叶片水平的净CO2吸收率和水蒸气传导率几乎不受影响,因此水分利用效率保持不变。我们得出的结论是,随着土壤变暖,树木的水分流失会增加,这可能会在未来的变暖环境中改变奥地利中部阿尔卑斯山林交界处的水分平衡。

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