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Light and Water‐use Efficiencies of Pine Shoots Exposed to Elevated Carbon Dioxide and Temperature

机译:二氧化碳和温度升高对松树芽的光和水利用效率

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摘要

An automatic gas exchange system was used to continuously measure water and carbon fluxes of attached shoots of Scots pine trees (Pinus sylvestris L.) grown in environment‐controlled chambers for a 3‐year period (1998–2000) and exposed to either normal ambient conditions (CON), elevated CO2 (+350 µmol mol–1; EC), elevated temperature (+2–6 °C; ET) or a combination of EC and ET (ECT). EC treatment enhanced the mean daily total carbon flux per unit projected needle area (Fc.d) by 17–21 %, depending on the year. This corresponds to a 16–24 % increase in light‐use efficiency (LUE) based on incident photosynthetically active radiation. The EC treatment reduced the mean daily total water flux (Fw.d) by 1–12 %, corresponding to a 13–35 % increase in water‐use efficiency (WUE). The ET treatment increased Fc.d by 10–18 %, resulting in an 8–19 % increase in LUE, and Fw.d by 48–74 %, resulting in a reduction of WUE by 19–34 %. There was no interaction between CO2 and temperature elevation in connection with either carbon or water fluxes, as the carbon flux responded similarly in both ECT and EC, while the water flux in the ECT treatment was similar to that in ET. Regressions indicated that the increase in maximum LUE was greater with increasing air temperature, whereas changes in WUE were related only to high vapour pressure deficit. Furthermore, changes in LUE and WUE caused by ECT treatment displayed strong diurnal and seasonal variation.
机译:使用自动气体交换系统连续测量环境控制室中生长3年(1998-2000年)并暴露于正常环境下的苏格兰松树(Pinus sylvestris L.)的附生芽的水和碳通量条件(CON),CO2升高(+350 µmol mol –1 ; EC),温度升高(+ 2–6°C; ET)或EC和ET的组合(ECT)。 EC处理将每年每单位针刺面积(Fc.d)的平均每日总碳通量提高17-21%,具体取决于年份。根据入射的光合有效辐射,这相当于光利用效率(LUE)增长16–24%。 EC处理使平均每日总水通量(Fw.d)降低了1-12%,相当于用水效率(WUE)提高了13-35%。 ET处理使Fc.d增加10–18%,导致LUE增加8–19%,而Fw.d增加48–74%,导致WUE减少19–34%。由于碳通量在ECT和EC中的响应相似,而在碳通量和水通量方面,CO2和温度升高之间没有相互作用,而ECT处理中的水通量与ET中的相似。回归表明,随着空气温度的升高,最大LUE的增加更大,而WUE的变化仅与高蒸气压亏缺有关。此外,ECT处理引起的LUE和WUE变化显示出强烈的昼夜变化。

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