Institute for Atmospheric and Earth System Research/Forest Sciences, Faculty of Agriculture and Forestry, University of Helsinki, PO Box 27, Helsinki, Finland.
Institute for Atmospheric and Earth System Research/Physics, Faculty of Science, University of Helsinki, PO Box 68, Helsinki, Finland.
Tree Physiol. 2018 Sep 1;38(9):1356-1370. doi: 10.1093/treephys/tpy040.
Current methods to study relations between stem respiration and stem growth have been hampered by problems in quantifying stem growth from dendrometer measurements, particularly on a daily time scale. This is mainly due to the water-related influences within these measurements that mask growth. A previously published model was used to remove water-related influences from measured radial stem variations to reveal a daily radial growth signal (ΔˆGm). We analysed the intra- and inter-annual relations between ΔˆGm and estimated growth respiration rates (Rg) on a daily scale for 5 years. Results showed that Rg was weakly correlated to stem growth prior to tracheid formation, but was significant during the early summer. In the late summer, the correlation decreased slightly relative to the early summer. A 1-day time lag was found of ΔˆGm preceding Rg. Using wavelet analysis and measurements from eddy covariance, it was found that Rg followed gross primary production and temperature with a 2 and 3 h time lag, respectively.This study shows that further in-depth analysis of in-situ growth and growth respiration dynamics is greatly needed, with a focus on cellular respiration at specific developmental stages, its woody tissue costs and linkages to source-sink processes and environmental drivers.
目前,从树木测量仪的测量中量化茎生长的方法一直受到一些问题的阻碍,特别是在每日时间尺度上。这主要是由于这些测量中与水有关的影响掩盖了生长。我们使用先前发表的模型来消除测量的径向茎变化中的与水有关的影响,以揭示每日径向生长信号(ΔˆGm)。我们分析了 5 年内ΔˆGm与每天估算的生长呼吸速率(Rg)之间的年际和年内关系。结果表明,在形成导管之前,Rg 与茎生长弱相关,但在初夏时显著相关。在夏末,与初夏相比,相关性略有下降。发现ΔˆGm 比 Rg 提前 1 天时间滞后。使用小波分析和涡度协方差测量结果,发现 Rg 分别滞后于总初级生产力和温度 2 和 3 小时。本研究表明,需要进一步深入分析原位生长和生长呼吸动态,重点关注特定发育阶段的细胞呼吸、木质组织成本以及与源-汇过程和环境驱动因素的联系。