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Relationships between net photosynthesis and foliar nitrogen concentrations in a loblolly pine forest ecosystem grown in elevated atmospheric carbon dioxide

机译:大气二氧化碳含量升高的火炬松森林生态系统净光合作用与叶片氮含量的关系

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We examined the effects of elevated carbon dioxide concentration ([CO2]) on the relationship between light-saturated net photosynthesis (A(sat)) and area-based foliar nitrogen (N) concentration (N(a)) in the canopy of the Duke Forest FACE experiment. Measurements of A(sat) and N(a) were made on two tree species growing in the forest overstory and four tree species growing in the forest understory, in ambient and elevated [CO2] FACE rings, during early and late summer of 1999, 2001 and 2002, corresponding to years three, five and six of CO2 treatment. When measured at the growth [CO2], net photosynthetic rates of each species examined in the forest overstory and understory were stimulated by elevated [CO2] at each measurement date. We found no effect of elevated [CO2] on N(a) in any of the species. The slope of the A(sat)-N relationship was 81% greater in elevated [CO2] than in ambient [CO2] when averaged across all sample dates, reflecting a differential CO2 effect on photosynthesis at the top and bottom of the canopy. We compared A(sat)-N relationships in trees grown in ambient and elevated [CO2] at two common CO2 concentrations, during late summer 2001 and both early and late 2002, to determine if the stimulatory effect of elevated [CO2] on photosynthesis diminishes over time. At all three sample times, neither the slopes nor the y-intercepts of the A(sat)-N relationships of trees grown in ambient or elevated [CO2] differed when measured at common CO2 concentrations, indicating that the responses of photosynthesis to long-term elevated [CO2] did not differ from the responses to a short-term increase in [CO2]. This finding, together with the observation that N(a) was unaffected by growth in elevated [CO2], indicates that these overstory and understory trees growing at the Duke Forest FACE experiment continue to show a strong stimulation of photosynthesis by elevated [CO2].
机译:我们研究了二氧化碳浓度([CO2])升高对冠层冠层光饱和净光合作用(A(sat))与基于面积的叶面氮(N)浓度(N(a))之间关系的影响。森林公爵FACE实验。在1999年初和夏末,对环境上层和高CO2 FACE环上生长在森林表层上的两种树种和森林下层上生长的四种树种进行了A(sat)和N(a)测量, 2001年和2002年,分别对应于第三,第五和第六年的CO2处理。当以生长[CO2]进行测量时,在每个测量日期升高的[CO2]会刺激森林上层和下层中每个物种的净光合速率。我们没有发现任何物种中升高的[CO2]对N(a)都没有影响。当在所有采样日期中平均时,升高的[CO2]中的A(sat)-N关系的斜率比周围的[CO2]高81%,这反映了冠层顶部和底部对光合作用的差异影响。我们比较了2001年夏末和2002年初及后期在环境中和在两种常见CO2浓度下升高的[CO2]下生长的树木中的A(sat)-N关系,以确定升高的[CO2]对光合作用的刺激作用是否减弱随着时间的推移。在所有三个采样时间,在普通CO2浓度下测量时,在环境或升高的[CO2]中生长的树木的A(sat)-N关系的斜率或y轴截距都没有变化,这表明光合作用对长时光的响应术语[CO2]升高与[CO2]短期升高的反应没有区别。这一发现以及N(a)不受升高的[CO2]生长影响的观察结果,表明在Duke Forest FACE实验中生长的这些树皮和林下树木继续显示出升高的[CO2]对光合作用的强烈刺激。

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