Time shift between net and gross CO2 uptake and growth derived from tree rings in pine and spruce

被引:13
作者
Lagergren, Fredrik [1 ]
Jonsson, Anna Maria [1 ]
Linderson, Hans [2 ]
Lindroth, Anders [1 ]
机构
[1] Lund Univ, Dept Phys Geog & Ecosyst Sci, Solvegatan 12, S-22362 Lund, Sweden
[2] Lund Univ, Dept Geol, Solvegatan 12, S-22362 Lund, Sweden
来源
TREES-STRUCTURE AND FUNCTION | 2019年 / 33卷 / 03期
基金
瑞典研究理事会;
关键词
Boreal forest; Picea abies; Pinus sylvestris; Eddy covariance; Dendrochronology; Carbon balance; LONG-TERM; ECOSYSTEM PRODUCTIVITY; CARBON ALLOCATION; NORWAY SPRUCE; STEM GROWTH; SCOTS PINE; FOREST; EXCHANGE; FLUXES; AGE;
D O I
10.1007/s00468-019-01814-9
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Key messageA 6-9month backward time shift of the carbon uptake gave the highest correlation between annual biomass increment and carbon uptake in this old even aged forest.AbstractPlants' carbon uptake and allocation to different biomass compartments is an important process for both wood production and climate mitigation. Measurements of the net ecosystem carbon dioxide exchange between ecosystems and the atmosphere provide insights into the processes of photosynthesis, respiration and accumulation of carbon over time, and the increase in woody biomass can be assessed by allometric functions based on stem diameter measurements. The fraction of carbon allocated to radial stem growth varies over time, and a lag between carbon uptake and growth can be expected. The dynamics of non-structural carbohydrates and autotrophic and heterotrophic respiration are key mechanisms for understanding this lag effect. In this study, a 9-year record of carbon flux and tree-ring data from Norunda, Sweden was used to investigate the relationship between net and gross carbon uptake and carbon allocated to growth. The flux data were aggregated to monthly sums. When full 12-month periods of accumulated carbon exchange were successively shifted backwards in time, the highest correlation was found with a 6-9month shift, showing that a large part of the previous growing season was important for explaining the biomass increment of the following year.
引用
收藏
页码:765 / 776
页数:12
相关论文
共 58 条
  • [51] Age-related decline in forest productivity: Pattern and process
    Ryan, MG
    Binkley, D
    Fownes, JH
    [J]. ADVANCES IN ECOLOGICAL RESEARCH, VOL 27, 1997, 27 : 213 - 262
  • [52] HERBIVORY IN FORESTED ECOSYSTEMS
    SCHOWALTER, TD
    HARGROVE, WW
    CROSSLEY, DA
    [J]. ANNUAL REVIEW OF ENTOMOLOGY, 1986, 31 : 177 - 196
  • [53] Shinozaki K., 1964, Japanese Journal of Ecology, V14, P97
  • [54] Sample-Based Estimation of Greenhouse Gas Emissions From Forests-A New. Approach to Account for Both Sampling and Model Errors
    Stahl, Goran
    Heikkinen, Juha
    Petersson, Hans
    La, Jaakko Repo
    Holm, Soren
    [J]. FOREST SCIENCE, 2014, 60 (01) : 3 - 13
  • [55] Linking annual tree growth with eddy-flux measures of net ecosystem productivity across twenty years of observation in a mixed conifer forest
    Teets, Aaron
    Fraver, Shawn
    Hollinger, David Y.
    Weiskittel, Aaron R.
    Seymour, Robert S.
    Richardson, Andrew D.
    [J]. AGRICULTURAL AND FOREST METEOROLOGY, 2018, 249 : 479 - 487
  • [56] Factors controlling CO2 exchange on timescales from hourly to decadal at Harvard Forest
    Urbanski, S.
    Barford, C.
    Wofsy, S.
    Kucharik, C.
    Pyle, E.
    Budney, J.
    McKain, K.
    Fitzjarrald, D.
    Czikowsky, M.
    Munger, J. W.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2007, 112 (G2)
  • [57] Outbreaks of Gremmeniella abietina cause considerable decline in stem growth of surviving Scots pine trees
    Wang, Xiaoming
    Stenstrom, Elna
    Boberg, Johanna
    Ols, Clementine
    Drobyshev, Igor
    [J]. DENDROCHRONOLOGIA, 2017, 44 : 39 - 47
  • [58] Link between continuous stem radius changes and net ecosystem productivity of a subalpine Norway spruce forest in the Swiss Alps
    Zweifel, R.
    Eugster, W.
    Etzold, S.
    Dobbertin, M.
    Buchmann, N.
    Haesler, R.
    [J]. NEW PHYTOLOGIST, 2010, 187 (03) : 819 - 830