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Linking photosynthesis and leaf N allocation under future elevated CO2 and climate warming in Eucalyptus globulus

机译:未来桉树CO2浓度升高与气候变暖对光合作用和叶片氮分配的影响

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摘要

Leaf-level photosynthetic processes and their environmental dependencies are critical for estimating CO2 uptake from the atmosphere. These estimates use biochemical-based models of photosynthesis that require accurate Rubisco kinetics. We investigated the effects of canopy position, elevated atmospheric CO2 [eC; ambient CO2 (aC)+240 ppm] and elevated air temperature (eT; ambient temperature (aT)+3 °C) on Rubisco content and activity together with the relationship between leaf N and Vcmax (maximal Rubisco carboxylation rate) of 7 m tall, soil-grown Eucalyptus globulus trees. The kinetics of E. globulus and tobacco Rubisco at 25 °C were similar. In vitro estimates of Vcmax derived from measures of E. globulus Rubisco content and kinetics were consistent, although slightly lower, than the in vivo rates extrapolated from gas exchange. In E. globulus, the fraction of N invested in Rubisco was substantially lower than for crop species and varied with treatments. Photosynthetic acclimation of E. globulus leaves to eC was underpinned by reduced leaf N and Rubisco contents; the opposite occurred in response to eT coinciding with growth resumption in spring. Our findings highlight the adaptive capacity of this key forest species to allocate leaf N flexibly to Rubisco and other photosynthetic proteins across differing canopy positions in response to future, warmer and elevated [CO2] climates.
机译:叶水平的光合作用过程及其对环境的依赖性对于估算大气中的二氧化碳吸收至关重要。这些估计使用基于生物化学的光合作用模型,需要精确的Rubisco动力学。我们调查了冠层位置,大气CO2升高[eC;环境CO2(aC)+240 ppm]和升高的空气温度(eT;环境温度(aT)+3°C)对Rubisco含量和活性的影响,以及叶片N与7 m高的Vcmax(最大Rubisco羧化率)之间的关系,土壤种植的桉树。球形大肠杆菌和烟草Rubisco在25°C下的动力学相似。从球藻中提取的Vcmax的体外估计值与卢比斯科菌的含量和动力学一致,尽管比从气体交换推断的体内速率要低,但仍是一致的。在E. globulus中,投入Rubisco的N比例显着低于农作物物种,并随处理方式而变化。减少的叶片氮含量和Rubisco含量为E. globulus叶片向eC的光合适应提供了支持。相反,eT与春季的生长恢复同时发生。我们的发现凸显了这一关键森林物种的适应能力,可以根据未来,温暖和升高的[CO2]气候灵活地将叶片N分配给不同冠层位置的Rubisco和其他光合蛋白。

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