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Growth of Festuca pallescens in Silvopastoral Systems in Patagonia, Part 2: Parameterization of Models of Stomatal Conductance and Leaf Photosynthesis

机译:巴塔哥尼亚森林牧草系统中白桦的生长,第2部分:气孔导度和叶片光合作用模型的参数化

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A combined model of stomatal conductance and photosynthesis was developed for Festuca pallescens (St. Ives) Parodi, a forage species in Patagonia. Curves showing the relationship between photosynthesis and photosynthetic photon flux density (PPFD) were constructed for plants grown under differing levels of water availability, relative humidity (RH) and air temperature (T). Stomatal conductance (g s) was related to these variables and pre-dawn leaf water potential (ψpd) using an empirical multiplicative submodel. Parameters of the photosynthesis-PPFD curves were related to the average g s values for each curve to introduce stomatal limitation on photosynthesis. Considering the simplicity of the models, estimated stomatal conductance and photosynthesis agree satisfactorily with independent measured values in the field and in the glasshouse, particularly in the range of low and medium values of both variables (R 2 = 0.84 and 0.87 for g s and photosynthesis models, respectively). Photosynthesis–PPFD curves were also determined under field conditions for plants growing under shade and in the open, in a silvopastoral trial in northwestern Patagonia. No significant differences in the photosynthetic light response curves were found between these locations, but slight increases in maximum assimilation rate and quantum yield (light use efficiency) were found for leaves grown under shade. This study of environmental influences on photosynthesis in F. pallescens may help to predict its capacity to grow under trees in silvopastoral systems. In addition, this simple model may be easily parameterised for other species to predict photosynthetic responses under different environmental conditions.
机译:针对巴塔哥尼亚(Patagonia)的一种牧草花粉草(Festuca pallescens(St. Ives)Parodi)开发了气孔导度和光合作用的组合模型。对于在不同水平的水分,相对湿度(RH)和空气温度(T)下生长的植物,构建了显示光合作用与光合光子通量密度(PPFD)之间关系的曲线。利用经验乘子模型,气孔导度(g s )与这些变量和黎明前叶水势(ψpd)有关。光合作用-PPFD曲线的参数与每条曲线的平均g s 值相关,从而导致气孔限制光合作用。考虑到模型的简单性,估算的气孔导度和光合作用与田间和温室中的独立测量值令人满意,特别是在两个变量的中低值范围内(R 2 = 0.84和0.87) gs 和光合作用模型)。在野外条件下,在巴塔哥尼亚西北部的一个牧草试验中,还确定了田间条件下在阴暗和露天条件下生长的植物的光合作用-PPFD曲线。在这些位置之间没有发现光合光响应曲线的显着差异,但是在阴影下生长的叶片的最大同化率和量子产率(光利用效率)略有增加。这项研究对苍白镰刀菌光合作用的环境影响可能有助于预测其在牧草系统中树木下生长的能力。此外,可以为其他物种轻松设置该简单模型的参数,以预测不同环境条件下的光合作用响应。

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