Carbon allocation between tree root growth and root respiration in boreal pine forest

被引:142
作者
Högberg, P [1 ]
Nordgren, A
Ågren, GI
机构
[1] SLU, Dept Forest Ecol, Sect Soil Sci, S-90183 Umea, Sweden
[2] SLU, Dept Ecol & Environm Res, S-75007 Uppsala, Sweden
关键词
carbon; carbon allocation; roots; soil respiration; trees;
D O I
10.1007/s00442-002-0983-8
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Soil respiration, i.e. respiration by mycorrhizal roots and by heterotrophic organisms decomposing above- and below-ground litters, is a major component in ecosystem carbon (C) balances. For decades, the paradigm has been that the biomass of fine roots of trees turns over several times a year, which together with large inputs of above-ground litter leaves little room for the contribution from root respiration. Here, we combine the results of a recent tree girdling experiment with the C budget of the classic Swedish Coniferous Forest (SWECON) project, in which root growth and turnover were estimated to be high. We observe that such a high rate of root turnover requires an unlikely high C use efficiency for root growth, and is not consistent with the 1:1 relation between root: heterotrophic respiration obtained in the girdling experiment. Our analysis suggests that 75% of the C allocated to roots is respired, while 25% is used for growth, and hence that root growth and turnover were grossly overestimated in the SWECON study.
引用
收藏
页码:579 / 581
页数:3
相关论文
共 16 条
[1]  
Agren G. I., 1980, Ecological Bulletins, V32, P307
[2]   BIOMASS AND NUTRIENTS IN AN ENGELMANN SPRUCE - SUB-ALPINE FIR FOREST IN NORTH CENTRAL COLORADO - POOLS, ANNUAL PRODUCTION, AND INTERNAL CYCLING [J].
ARTHUR, MA ;
FAHEY, TJ .
CANADIAN JOURNAL OF FOREST RESEARCH-REVUE CANADIENNE DE RECHERCHE FORESTIERE, 1992, 22 (03) :315-325
[3]  
COX TL, 1978, PEDOBIOLOGIA, V18, P264
[4]   The age of fine-root carbon in three forests of the eastern United States measured by radiocarbon [J].
Gaudinski, JB ;
Trumbore, SE ;
Davidson, EA ;
Cook, AC ;
Markewitz, D ;
Richter, DD .
OECOLOGIA, 2001, 129 (03) :420-429
[5]   Soil carbon cycling in a temperate forest: radiocarbon-based estimates of residence times, sequestration rates and partitioning of fluxes [J].
Gaudinski, JB ;
Trumbore, SE ;
Davidson, EA ;
Zheng, SH .
BIOGEOCHEMISTRY, 2000, 51 (01) :33-69
[6]   Sensitivity of boreal forest carbon balance to soil thaw [J].
Goulden, ML ;
Wofsy, SC ;
Harden, JW ;
Trumbore, SE ;
Crill, PM ;
Gower, ST ;
Fries, T ;
Daube, BC ;
Fan, SM ;
Sutton, DJ ;
Bazzaz, A ;
Munger, JW .
SCIENCE, 1998, 279 (5348) :214-217
[7]  
Gower S.T., 1994, ECOL B, V43, P115
[8]   Separating root and soil microbial contributions to soil respiration: A review of methods and observations [J].
Hanson, PJ ;
Edwards, NT ;
Garten, CT ;
Andrews, JA .
BIOGEOCHEMISTRY, 2000, 48 (01) :115-146
[9]   Large-scale forest girdling shows that current photosynthesis drives soil respiration [J].
Högberg, P ;
Nordgren, A ;
Buchmann, N ;
Taylor, AFS ;
Ekblad, A ;
Högberg, MN ;
Nyberg, G ;
Ottosson-Löfvenius, M ;
Read, DJ .
NATURE, 2001, 411 (6839) :789-792
[10]   Productivity overshadows temperature in determining soil and ecosystem respiration across European forests [J].
Janssens, IA ;
Lankreijer, H ;
Matteucci, G ;
Kowalski, AS ;
Buchmann, N ;
Epron, D ;
Pilegaard, K ;
Kutsch, W ;
Longdoz, B ;
Grünwald, T ;
Montagnani, L ;
Dore, S ;
Rebmann, C ;
Moors, EJ ;
Grelle, A ;
Rannik, Ü ;
Morgenstern, K ;
Oltchev, S ;
Clement, R ;
Gudmundsson, J ;
Minerbi, S ;
Berbigier, P ;
Ibrom, A ;
Moncrieff, J ;
Aubinet, M ;
Bernhofer, C ;
Jensen, NO ;
Vesala, T ;
Granier, A ;
Schulze, ED ;
Lindroth, A ;
Dolman, AJ ;
Jarvis, PG ;
Ceulemans, R ;
Valentini, R .
GLOBAL CHANGE BIOLOGY, 2001, 7 (03) :269-278