Factors causing temporal and spatial variation in heterotrophic and rhizospheric components of soil respiration in afforested organic soil croplands in Finland

被引:86
作者
Makiranta, Paivi [1 ]
Minkkinen, Kari [1 ]
Hytonen, Jyrki [2 ]
Laine, Jukka [3 ]
机构
[1] Univ Helsinki, Dept Forest Ecol, Peatland Ecol Grp, FI-00014 Helsinki, Finland
[2] Finnish Forest Res Inst, Kannus Res Unit, FI-69101 Kannus, Finland
[3] Finnish Forest Res Inst, Parkano Res Unit, FI-39700 Parkano, Finland
关键词
heterotrophic respiration; rhizospheric respiration; soil respiration; afforestation; organic soil;
D O I
10.1016/j.soilbio.2008.01.009
中图分类号
S15 [土壤学];
学科分类号
0903 [农业资源与环境]; 090301 [土壤学];
摘要
Partitioning soil respiration (SR) into its components, heterotrophic and rhizospheric respiration, is an important step for understanding and modelling carbon (C) cycling in organic soils. However, no partitioning studies on afforested organic soil croplands exist. We separated soil respiration originating from the decomposition of peat (SRP), and aboveground litter (SRL) and root respiration (SRR) in six afforested organic soil croplands in Finland with varying tree species and stand ages using the trenching method. Across the sites temporal variation in SR was primarily related to changes in soil surface temperature (-5 cm), which explained 71-96% of variation in SR rates. Decomposition of peat and litter was not related to changes in water table level, whereas a minor increase in root respiration was observed with the increase in water table depth. Temperature sensitivity of SR varied between the different respiration components: SRp was less sensitive to changes in soil surface temperature than SRL or SRR. Factors explaining spatial variation in SR differed between different respiration components. Annual SRp correlated positively with peat ash content while that of SRL was found to correlate positively with the amount of litter on the forest floor, separately for each tree species. Root respiration correlated positively with the biomass of ground vegetation. From the total soil respiration peat decomposition comprised a major share of 42%; the proportion of autotrophic respiration being 41% and aboveground litter 17%. Afforestation lowered peat decomposition rates. Nevertheless the effect of agricultural history can be seen in peat properties for decades and due to high peat decomposition rates these soils still loose carbon to the atmosphere. (c) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1592 / 1600
页数:9
相关论文
共 57 条
[2]
Micro-scale CO2 and CH4 dynamics in a peat soil during a water fluctuation and sulfate pulse [J].
Blodau, C ;
Moore, TR .
SOIL BIOLOGY & BIOCHEMISTRY, 2003, 35 (04) :535-547
[3]
Roots exert a strong influence on the temperature sensitivity of soil respiration [J].
Boone, RD ;
Nadelhoffer, KJ ;
Canary, JD ;
Kaye, JP .
NATURE, 1998, 396 (6711) :570-572
[4]
CONTRIBUTIONS OF ABOVEGROUND LITTER, BELOWGROUND LITTER, AND ROOT RESPIRATION TO TOTAL SOIL RESPIRATION IN A TEMPERATURE MIXED HARDWOOD FOREST [J].
BOWDEN, RD ;
NADELHOFFER, KJ ;
BOONE, RD ;
MELILLO, JM ;
GARRISON, JB .
CANADIAN JOURNAL OF FOREST RESEARCH, 1993, 23 (07) :1402-1407
[5]
Biotic and abiotic factors controlling soil respiration rates in Picea abies stands [J].
Buchmann, N .
SOIL BIOLOGY & BIOCHEMISTRY, 2000, 32 (11-12) :1625-1635
[6]
Influence of water table levels on CO2 emissions in a Colorado subalpine fen:: an in situ microcosm study [J].
Chimner, RA ;
Cooper, DJ .
SOIL BIOLOGY & BIOCHEMISTRY, 2003, 35 (03) :345-351
[7]
On the variability of respiration in terrestrial ecosystems:: moving beyond Q10 [J].
Davidson, EA ;
Janssens, IA ;
Luo, YQ .
GLOBAL CHANGE BIOLOGY, 2006, 12 (02) :154-164
[8]
Soil water content and temperature as independent or confounded factors controlling soil respiration in a temperate mixed hardwood forest [J].
Davidson, EA ;
Belk, E ;
Boone, RD .
GLOBAL CHANGE BIOLOGY, 1998, 4 (02) :217-227
[9]
SOIL CO2 EVOLUTION IN FLORIDA SLASH PINE PLANTATIONS .2. IMPORTANCE OF ROOT RESPIRATION [J].
EWEL, KC ;
CROPPER, WP ;
GHOLZ, HL .
CANADIAN JOURNAL OF FOREST RESEARCH-REVUE CANADIENNE DE RECHERCHE FORESTIERE, 1987, 17 (04) :330-333
[10]
Similar response of labile and resistant soil organic matter pools to changes in temperature [J].
Fang, CM ;
Smith, P ;
Moncrieff, JB ;
Smith, JU .
NATURE, 2005, 433 (7021) :57-59