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Photosynthesis of a temperate fallow C3 herbaceous ecosystem: measurements and model simulations at the leaf and canopy levels

机译:温带休耕C3草本生态系统的光合作用:在叶和冠层的测量和模型模拟

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摘要

The objectives of the study were to characterize photosynthesis of temperate fallow C3 herbaceous species and examine the performance of a simple photosynthesis model (based on the Farquhar's equations) to simulate carbon fluxes at the leaf and canopy levels. The maximum rate of carboxylation at 25°C (Vm0) was estimated for sunlit leaves using in situ gas exchange data under saturating irradiance. Throughout the seasons, leaf measurements indicate that values of Vm0 were similar for the four major species of the fallow. The rate declined from March (100 μmol m-2 s-1) to July (50 μmol m-2 s-1) and remained almost constant until November. The maximum quantum yield estimated for Potentilla reptans L. (dominant species) was 0.082 mol(CO2) mol-1(photon absorbed), similar to values already published for C3 species. Leaf area index (LAI) increased from winter (less than 0.2 m2 m-2) to spring (up to 4 m2 m-2). Rates of canopy photosynthesis (measured with a canopy chamber) strongly depended on LAI and temperature, in addition to irradiance. They reached a maximum of 25 μmol m-2 s-1 and were intermediate between those published for C4 grassland or cultivated species, and on woody species. At leaf level, simulations gave realistic predictions. At canopy level, the model had the ability to reproduce the effects of environmental and seasonal conditions. However, simulations underestimated the photosynthetic activity of the fallow canopy
机译:这项研究的目的是表征温带休耕C3草本植物的光合作用,并研究简单光合作用模型(基于Farquhar方程)的性能,以模拟叶片和冠层水平的碳通量。使用饱和辐射下的原位气体交换数据,估算了阳光照射下的叶子在25°C时的最大羧化速率(Vm0)。在整个季节中,叶片测量表明,休闲的四种主要物种的Vm0值相似。发病率从3月(100μmolm-2 s-1)下降到7月(50μmolm-2 s-1),直到11月几乎保持恒定。估计委陵菜(优势种)的最大量子产率为0.082 mol(CO2)mol-1(吸收光子),与C3物种已经公布的值相似。从冬季(小于0.2 m2 m-2)到春季(最大4 m2 m-2),叶面积指数(LAI)增加。除辐照度外,冠层光合作用的速率(用冠层室测量)还强烈取决于LAI和温度。它们的最大值达到25μmolm-2 s-1,介于C4草原或耕种物种以及木本物种发布的中间值之间。在叶子级别,模拟给出了现实的预测。在冠层水平上,该模型具有再现环境和季节性条件的影响的能力。然而,模拟低估了休闲林冠的光合活性

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