Seasonal changes in the contribution of root respiration to total soil respiration in a cool-temperate deciduous forest

被引:0
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作者
Mi-sun Lee
Kaneyuki Nakane
Takayuki Nakatsubo
Hiroshi Koizumi
机构
[1] Hiroshima University,Department of Environment Studies, Graduate School of Biosphere Sciences
[2] Center for Global Environmental Research,Department of Environmental Dynamics and Management, Graduate School of Biosphere Sciences
[3] National Institute for Environmental Studies,River Basin Research Center
[4] Hiroshima University,undefined
[5] Gifu University,undefined
来源
Plant and Soil | 2003年 / 255卷
关键词
carbon; cool-temperature deciduous forest; decomposition rate; root respiration; soil respiration; soil temperature;
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学科分类号
摘要
A trenching method was used to determine the contribution of root respiration to soil respiration. Soil respiration rates in a trenched plot (Rtrench) and in a control plot (Rcontrol) were measured from May 2000 to September 2001 by using an open-flow gas exchange system with an infrared gas analyser. The decomposition rate of dead roots (RD) was estimated by using a root-bag method to correct the soil respiration measured from the trenched plots for the additional decaying root biomass. The soil respiration rates in the control plot increased from May (240–320 mg CO2 m−2 h−1) to August (840–1150 mg CO2 m−2 h−1) and then decreased during autumn (200–650 mg CO2 m−2 h−1). The soil respiration rates in the trenched plot showed a similar pattern of seasonal change, but the rates were lower than in the control plot except during the 2 months following the trenching. Root respiration rate (Rr) and heterotrophic respiration rate (Rh) were estimated from Rcontrol, Rtrench, and RD. We estimated that the contribution of Rr to total soil respiration in the growing season ranged from 27 to 71%. There was a significant relationship between Rh and soil temperature, whereas Rr had no significant correlation with soil temperature. The results suggest that the factors controlling the seasonal change of respiration differ between the two components of soil respiration, Rr and Rh.
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页码:311 / 318
页数:7
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