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Photosynthetic physiology of eucalypts along a sub-continental rainfall gradient in northern Australia

机译:澳大利亚北部次大陆降雨梯度下桉树的光合生理

摘要

Leaf-level photosynthetic parameters of species in the closely related genera Eucalyptus and Corymbia were assessed along a strong rainfall gradient in northern Australia. Both instantaneous gas exchange measurements and leaf carbon isotope discrimination indicated little variation in intercellular CO2 concentrations during photosynthesis (ci) in response to a decrease in mean annual precipitation from not, vert, similar1700 mm to not, vert, similar300 mm. Correlation between stomatal conductance and photosynthetic capacity contributed toward the maintenance of relatively constant ci among the sampled leaves, when assessed at ambient CO2 concentration and photon irradiance similar to full sunlight. Leaf mass per area was the most plastic leaf trait along the rainfall gradient, showing a linear increase in response to decreasing mean annual precipitation. The maximum Rubisco carboxylation velocity, Vcmax, expressed on a leaf-area basis, showed a modest increase in response to decreasing rainfall. This modest increase in Vcmax was associated with the strongly expressed increase in leaf mass per area. These results suggest that variation in ecosystem-level gas exchange during the dry season in north-Australian savannas will likely be dominated by changes in leaf area index in response to increasing aridity, rather than by changes in photosynthetic performance per unit leaf area.
机译:在澳大利亚北部的强降雨梯度下,对密切相关的桉树属和Corymbia属中物种的叶水平光合参数进行了评估。瞬时气体交换测量和叶碳同位素判别均表明,光合作用(ci)期间细胞间CO2浓度变化不大,这是由于年平均降水量从非垂直,相似的1700毫米减少到非垂直,相似的300毫米所致。当在环境CO2浓度和类似于全日照的光子辐照度下进行评估时,气孔导度与光合能力之间的相关性有助于维持采样叶片中ci的相对恒定。在降雨梯度上,每面积叶质量是最可塑性的叶片性状,显示出对年均降水量减少的线性增加。以叶面积为基础的最大Rubisco羧化速度Vcmax随降雨减少而适度增加。 Vcmax的这种适度增加与单位面积叶片质量的明显增加有关。这些结果表明,在北澳大利亚大草原干旱季节,生态系统级气体交换的变化可能是由干旱增加引起的叶面积指数的变化而不是单位叶面积的光合性能的变化所主导。

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