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Effects of elevated atmospheric CO_{2} on woody plants

机译:大气 CO_ {2} 升高对木本植物的影响

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摘要

Abstract: Because of their prominent role in the global carbon balance and their possible carbon sequestration, trees are very important organisms in relation to global climatic changes. Knowledge of these processes is the key to understanding the functioning of the whole forest ecosystem which can be modelled and predicted based on the physiological process information. This paper reviews the major methods and techniques used to examine the likely effects of elevated CO2 on woody plants, as well as the major physiological responses of trees to elevated CO2. The available exposure techniques and approaches are described. An overview table with all relevant literature data over the period 1989-93 summarizes the percent changes in biomass, root/shoot ratio, photosynthesis, leaf area and water use efficiency under elevated CO2. Interaction between growth, photosynthesis and nutrition is discussed with a special emphasis on downward regulation of photosynthesis. The stimulation or reduction found in the respiratory processes of woody plants are reviewed, as well as the effect of elevated CO2 on stomatal density, conductance and water use efficiency. Changes in plant quality and their consequences are examined. Changes in underground processes under elevated CO2 are especially emphasized and related to the functioning of the ecosystem. Some directions for future research are put forward.
机译:摘要:由于树木在全球碳平衡中的重要作用以及可能的碳固存,因此与全球气候变化有关,树木是非常重要的生物。了解这些过程是了解整个森林生态系统功能的关键,可以基于生理过程信息对模型进行建模和预测。本文概述了用于检查CO2升高对木本植物的可能影响的主要方法和技术,以及树木对CO2升高的主要生理反应。描述了可用的曝光技术和方法。 1989-93年期间所有相关文献数据的概览表总结了在CO2升高的情况下生物量,根/茎比,光合作用,叶面积和水分利用效率的变化百分比。讨论了生长,光合作用和营养之间的相互作用,特别强调了光合作用的向下调节。综述了木本植物呼吸过程中发现的刺激或减少,以及二氧化碳浓度升高对气孔密度,电导率和水分利用效率的影响。检查了植物质量的变化及其后果。在二氧化碳升高的情况下,地下过程的变化尤其受到重视,并且与生态系统的功能有关。提出了今后研究的方向。

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  • 作者

    Ceulemans, R.; Mousseau, M.;

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  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 eng
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