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Convergent acclimation of leaf photosynthesis and respiration to prevailing ambient temperatures under current and warmer climates in Eucalyptus tereticornis

机译:在当前和较暖的气候下,桉树叶片光合作用和呼吸趋于适应主要环境温度

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摘要

Understanding physiological acclimation of photosynthesis and respiration is important in elucidating the metabolic performance of trees in a changing climate. Does physiological acclimation to climate warming mirror acclimation to seasonal temperature changes?We grew Eucalyptus tereticornis trees in the field for 14 months inside 9-m tall whole-tree chambers tracking ambient air temperature (Tair) or ambient Tair + 3°C (i.e. ‘warmed’). We measured light- and CO2-saturated net photosynthesis (Amax) and night-time dark respiration (R) each month at 25°C to quantify acclimation. Tree growth was measured, and leaf nitrogen (N) and total nonstructural carbohydrate (TNC) concentrations were determined to investigate mechanisms of acclimation.Warming reduced Amax and R measured at 25°C compared to ambient-grown trees. Both traits also declined as mean daily Tair increased, and did so in a similar way across temperature treatments. Amax and R (at 25°C) both increased as TNC concentrations increased seasonally; these relationships appeared to arise from source–sink imbalances, suggesting potential substrate regulation of thermal acclimation.We found that photosynthesis and respiration each acclimated equivalently to experimental warming and seasonal temperature change of a similar magnitude, reflecting a common, nearly homeostatic constraint on leaf carbon exchange that will be important in governing tree responses to climate warming.
机译:了解光合作用和呼吸的生理适应对阐明气候变化中树木的代谢性能非常重要。生理适应气候变暖会适应季节性温度变化吗?我们在9米高的全树室内,在田间种植桉树14个月,追踪环境空气温度(Tair)或环境温度Tair + 3°C(即``温暖”)。我们每月在25°C下测量光和CO2饱和的净光合作用(Amax)和夜间暗呼吸(R),以量化适应程度。测量树木的生长,并测定叶氮(N)和总非结构性碳水化合物(TNC)的浓度以研究适应机制。与环境生长的树木相比,在25°C下测得的暖化降低了Amax和R.随着平均每日Tair的增加,两种性状也均下降,并且在温度处理中以相同的方式下降。随着TNC浓度的季节性增加,Amax和R(在25°C时)均增加;这些关系似乎是由源-汇不平衡引起的,表明潜在的底物对热适应的调节。我们发现,光合作用和呼吸作用均等同于相似程度的实验升温和季节性温度变化,反映出对叶片碳的共同的,接近稳态的约束。交流对于控制树木对气候变暖的反应非常重要。

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