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首页> 外文期刊>Tree Physiology >Physiological basis of seasonal trend in leaf photosynthesis of five evergreen broad-leaved species in a temperate deciduous forest
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Physiological basis of seasonal trend in leaf photosynthesis of five evergreen broad-leaved species in a temperate deciduous forest

机译:温带落叶林中5种常绿阔叶树种叶片光合作用的季节性趋势的生理基础

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The physiological basis of photosynthesis during winter was investigated in saplings of five evergreen broad-leaved species (Camellia japonica L., Cleyera japonica Thunb., Photinia glabra (Thunb.) Maxim., Castanopsis cuspidata (Thunb.) Schottky and Quercus glauca Thunb.) co-occurring under deciduous canopy trees in a temperate forest. We focused on temperature dependence of photosynthetic rate and capacity as important physiological parameters that determine light-saturated rates of net photosynthesis at low temperatures during winter. Under controlled temperature conditions, maximum rates of ribulose bisphosphate carboxylation and electron transport (Vcmax) and Jmax, respectively) increased exponentially with increasing leaf temperature. The temperature dependence of photosynthetic rate did not differ among species. In the field, photosynthetic capacity, determined as Vcmax and Jmax at a common temperature of 25 degrees C (Vcmax(25) and Jmax(25)), increased until autumn and then decreased in species-specific patterns. Values of Vcmax(25) and Jmax(25) differed among species during winter. There was a positive correlation of Vcmax(25) with area-based nitrogen concentration among leaves during winter in Camellia and Photinia. Interspecific differences in Vcmax(25) were responsible for interspecific differences in light-saturated rates of net photosynthesis during winter.
机译:研究了5个常绿阔叶树种(Camellia japonica L.,Cleyera japonica Thunb。,Photinia glabra(Thunb.Maxim。),锥栗(Castanopsis cuspidata(Thunb。)Schottky和Quercus glauca Thunb。 )在温带森林的落叶冠层树下同时发生。我们将光合速率和容量的温度依赖性作为重要的生理参数,这些参数决定了冬季低温下净光合作用的光饱和速率。在受控温度条件下,核糖二磷酸羧化和电子传递的最大速率(分别为Vcmax和Jmax)随叶片温度的升高呈指数增长。物种间光合速率的温度依赖性没有差异。在田间,在25°C的共同温度下(Vcmax(25)和Jmax(25))确定为Vcmax和Jmax的光合作用能力一直增加到秋天,然后以物种特定的模式降低。在冬季,不同物种的Vcmax(25)和Jmax(25)值不同。在茶花和石楠的冬季,叶片中的Vcmax(25)与基于区域的氮浓度呈正相关。 Vcmax(25)的种间差异是造成冬季净光合作用的光饱和速率的种间差异的原因。

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