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A whole-tree chamber system for examining tree-level physiological responses of field-grown trees to environmental variation and climate change

机译:用于检查田间生长树木对环境变化和气候变化的树木生理反应的全树室系统

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摘要

A whole-tree chamber (WTC) system was installed at Flakaliden in northern Sweden to examine the long-term physiological responses of field-grown 40-year-old Norway spruce trees [ Picea abies (L.) Karst.] to climate change. The WTCs were designed as large cuvettes to allow the net tree-level CO 2 and water fluxes to be measured on a continuous basis. A total of 12 WTCs were used to impose combinations of atmospheric carbon dioxide concentration, [CO 2 ], and air temperature treatments. The air inside the ambient and elevated [CO 2 ] WTCs was maintained at 365 and 700 m mol mol - 1 , respectively. The air temperature inside the ambient temperature WTCs tracked air temperature outside the WTCs. Elevated temperatures were altered on a monthly time-step and ranged between + 2.8 and + 5.6 ∞ C above ambient temperature. The system allowed continuous, long-term measurement of whole-tree photosynthesis, night-time respiration and transpiration. The performance of the WTCs was assessed using winter and spring data sets. The ability of the WTC system to measure tree-level physiological responses is demonstrated. All WTCs displayed a high level of control over tracking of air temperatures. The set target of 365 m mol mol - 1 in the ambient [CO 2 ] chambers was too low to be maintained during winter because of tree dormancy and the high natural increase in [CO 2 ] over winter at high latitudes such as the Flakaliden site. Accurate control over [CO 2 ] in the ambient [CO 2 ] chambers was restored during the spring and the system maintained the elevated [CO 2 ] target of 700 m mol mol - 1 for both measurement periods. Air water vapour deficit (VPD) was accurately tracked in ambient temperature WTCs. However, as water vapour pressure in all 12 WTCs was maintained at the level of nonchambered (reference) air, VPD of elevated temperature WTCs was increased.
机译:瑞典北部的弗拉卡利登(Flakaliden)安装了整树房(WTC)系统,以研究田间生长的40岁挪威云杉[Picea abies(L.)Karst。]对气候变化的长期生理响应。 WTC被设计为大比色杯,以允许连续测量净树级CO 2和水通量。总共使用了12个WTC来组合大气二氧化碳浓度,[CO 2]和空气温度处理。环境和升高的[CO 2] WTC内部的空气分别保持在365和700 m mol mol-1。环境温度WTC内部的空气温度跟踪WTC内部的空气温度。升高的温度按每月的时间步长进行更改,范围比环境温度高+ 2.8至+ 5.6∞C。该系统可以连续,长期测量整棵树的光合作用,夜间呼吸和蒸腾作用。使用冬季和春季数据集评估了世贸中心的绩效。证明了WTC系统测量树级生理反应的能力。所有WTC都显示出对空气温度跟踪的高度控制。由于树木休眠以及在高纬度地区(例如Flakaliden地点)冬季冬季[CO 2]的自然增加,在环境[CO 2]室中设定的目标365 m mol mol-1太低,无法在冬季维持。 。在春季期间,恢复了对[CO 2]室中[CO 2]的精确控制,并且系统在两个测量周期内都将升高的[CO 2]目标维持在700 m mol mol-1。在环境温度WTC中可以准确跟踪空气中的水汽缺乏量(VPD)。但是,由于所有12个WTC中的水蒸气压力都保持在非室内(参考)空气水平,因此高温WTC的VPD有所增加。

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