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Dependence of Soil Respiration on Soil Temperature and Soil Moisture in Successional Forests in Southern China

摘要The spatial and temporal variations in soil respiration and its relationship with biophysical factors in forests near the Tropic of Cancer remain highly uncertain. To contribute towards an improvement of actual estimates, soil respiration rates, soil temperature, and soil moisture were measured in three successional subtropical forests at the Dinghushan Nature Reserve (DNR) in southern China from March 2003 to February 2005. The overall objective of the present study was to analyze the temporal variations of soil respiration and its biophysical dependence in these forests. The relationships between biophysical factors and soil respiration rates were compared in successional forests to test the hypothesis that these forests responded similarly to biophysical factors. The seasonality of soil respiration coincided with the seasonal climate pattern, with high respiration rates in the hot humid season (April-September) and with low rates in the cool dry season (October-March). Soil respiration measured at these forests showed a clear increasing trend with the progressive succession. Annual mean (± SD) soil respiration rate in the DNR forests was (9.0±4.6) Mg CO2-C/hm2 per year, ranging from (6.1±3.2) Mg CO2-C/hm2 per year in early successional forests to (10.7±4.9) Mg CO2-C/hm2 per year in advanced successional forests. Soil respiration was correlated with both soil temperature and moisture. The T/M model, where the two biophysical variables are driving factors, accounted for 74%-82% of soil respiration variation in DNR forests. Temperature sensitivity decreased along progressive succession stages, suggesting that advanced-successional forests have a good ability to adjust to temperature. In contrast, moisture increased with progressive succession processes. This increase is caused, in part, by abundant respirators in advanced-successional forest, where more soil moisture is needed to maintain their activities.

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作者单位 South China Botanical Garden, the Chinese Academy of Sciences, Guangzhou 510650, China;Graduate School of the Chinese Academy of Sciences, Beijing 100039, China [1] South China Botanical Garden, the Chinese Academy of Sciences, Guangzhou 510650, China [2] Science Applications International Corporation ( SAIC), US Geological Survey (USGS) National Center for Earth Resources Observation and Science (EROS), Sioux Falls, South Dakota 57198, USA [3]
分类号 Q94
栏目名称 Ecology and Environmental Biology
发布时间 2006-06-15
基金项目
中国科学院资助项目 中国科学院知识创新工程项目
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植物学报(英文版)

植物学报(英文版)

2006年48卷6期

654-663页

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