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Inter- and intra-annual dynamics of photosynthesis differ between forest floor vegetation and tree canopy in a subarctic Scots pine stand

机译:在亚曲率苏格兰群松树架中,光合作用的相互作用和年度植被植被和树冠之间的不同动态

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摘要

We studied the inter- and intra-annual dynamics of the photosynthesis of forest floor vegetation and tree canopy in a subarctic Scots pine stand at the northern timberline in Finland. We tackled the issue using three different approaches: 1) measuring carbon dioxide exchange above and below canopy with the eddy covariance technique, 2) modelling the photosynthesis of the tree canopy based on shoot chamber measurements, and 3) up-scaling the forest floor photosynthesis using biomass estimates and available information on the annual cycle of photosynthetic capacity of those species. The studied ecosystem was generally a weak sink of carbon but the sink strength showed notable year-to-year variation. Total ecosystem respiration and photosynthesis indicated a clear temperature limitation for the carbon exchange. However, the increase in photosynthetic production was steeper than the increase in respiration with temperature, indicating that warm temperatures increase the sink strength and do not stimulate the total ecosystem respiration as much in the 4-year window studied. The interannual variation in the photosynthetic production of the forest stand mainly resulted from the forest floor vegetation, whereas the photosynthesis of the tree canopy seemed to be more stable from year to year. Tree canopy photosynthesis increased earlier in the spring, whereas that of the forest floor increased after snowmelt, highlighting that models for photosynthesis in the northern area should also include snow cover in order to accurately estimate the seasonal dynamics of photosynthesis in these forests.
机译:我们研究了在芬兰北部茅草队的亚曲率苏格兰植被和树冠上的森林地板植被和树冠的摄影间动态。我们使用三种不同方法解决了问题:1)通过涡流协方识技术测量上方和底座下方的二氧化碳交换,2)基于拍摄室测量来建模树冠的光合作用,3)森林地板光合作用使用生物量估计和可用信息,有关这些物种的光合容量的年度周期的可用信息。学习的生态系统通常是碳的弱水槽,但水槽强度表现出显着的逐年变异。生态系统总呼吸和光合作用表示碳交换的明显温度限制。然而,光合作用的增加比温度的呼吸增加陡峭,表明温暖的温度增加了水槽强度,并且在研究的4年窗口中没有刺激总生态系统呼吸。森林立场光合作用的持续变化主要由森林地板植被导致,而树冠的光合作用似乎与年份比年更稳定。树冠冠层光合作用在春季之前增加,而森林地板的融雪后的增加,突出显示北部地区的光合作用的模型也应该包括雪覆盖,以便准确估计这些森林中光合作用的季节性动态。

著录项

  • 来源
    《Agricultural and Forest Meteorology》 |2019年第2019期|共11页
  • 作者单位

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Univ Eastern Finland Dept Environm &

    Biol Sci POB 1627 FI-70211 Kuopio Finland;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Lawrence Berkeley Natl Lab Climate Sci Dept Berkeley CA USA;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Agr &

    Forestry Inst Atmospher &

    Earth Syst Res Forest Sci POB 27 FIN-00014 Helsinki Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Eddy covariance; Net ecosystem exchange; Sink limitation;

    机译:EDDY协方差;净生态系统交流;沉沦限制;

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