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Influence of springtime phenology on the ratio of soil respiration to total ecosystem respiration in a mixed temperate forest

机译:春季物候对混交温带森林土壤呼吸与总生态系统呼吸比的影响

摘要

Total ecosystem (Reco) and soil (Rs) respiration are important CO2 fluxes in the carbon balance of forests. Typically Rs accounts for between 30-80% of Reco, although variation in this ratio has been shown to occur, particularly at seasonal time scales. The objective of this study was to relate changes in Rs/Reco ratio to changing springtime phenological conditions in forest ecosystems. We used one year (2003) of automated and twelve years (1995-2006) of manual chamber-based measurements of Rs. Reco was determined using tower-based eddy covariance measurements for an oak-dominated mixed temperate forest at Harvard Forest, Petersham, MA, USA. Phenological data were obtained from field observations and the JRC fAPAR remote sensing product. The automated and eddy covariance data showed that springtime phenological events do influence the ratio of soil to total ecosystem respiration. During canopy development, Reco rose strongly, mainly the aboveground component, due to the formation of an increasing amount of respiring leaf tissue. An increase in Rs was observed after most of the canopy development, which is probably the consequence of a shift in allocation of photosynthate products from above- to belowground. This hypothesized allocation shift was also confirmed by the results of the twelve year manual chamber-based measurements.
机译:生态系统的总呼吸(Reco)和土壤的呼吸(Rs)是森林碳平衡中重要的CO2通量。通常,Rs占Reco的30-80%,尽管已证明该比例会发生变化,尤其是在季节性时标上。这项研究的目的是将Rs / Reco比率的变化与森林生态系统中春季春季物候条件的变化联系起来。我们使用了一年(2003年)的自动测量值和十二年(1995-2006年)的基于Rs值的手动室测量方法。在美国马萨诸塞州彼得舍姆市的哈佛森林,以橡树为主的混合温带森林,使用基于塔的涡旋协方差测量确定了Reco。从野外观察和JRC fAPAR遥感产品获得了物候数据。自动化和涡动协方差数据表明,春季物候事件确实会影响土壤与生态系统总呼吸的比率。在树冠发育期间,由于形成的呼吸叶组织数量增加,Reco强烈上升,主要是地上部分。在大多数冠层发育后观察到Rs的增加,这可能是光合产物分配从上到下转移的结果。十二年基于手动隔室的测量结果也证实了这种假设的分配变化。

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