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《Acta Pedologica Sinica》 2006-01
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SOIL HETEROTROPHIC RESPIRATION IN NATIVE CASTANOPSIS KAWAKAMII FOREST AND MONOCULTURE CASTANOPSIS KAWAKAMII PLANTATIONS IN SUBTROPICAL CHINA

Yang Yusheng~1 Chen Guangshui~1 Xie Jinsheng~2 Wang Xiaoguo~2Niu Zhipeng~2 Han Yonggang~2 Zhang Youli~2(1 Key Laboratory of Subtropical Resources and Environments of Fujian Province,College of Geography Sciences,Fujian Normal University,Fuzhou 350007,China)(2 College of Forestry,Fujian Agricuture and Forestry University,Fuzhou 350002,China)  
Soil heterotrophic respiration(HR) was investigated in one tract of native Castanopsis kawakamii forest(NF),a 33-year-old Castanopsis kawakamii plantation(CK) and a Cunninghamia lanceolata(Chinese fir,CF) plantation of the same age in Sanming,Fujian Province,China.Soil CO_2 efflux was measured in situ in a 2-year period with the alkali sorption(technique.) Respirations of root-free soils(R_(RF)) and litter layer(R_L) were measured separately by trenching and removing litter,respectively.Both R_(RF) and R_L in the three forests showed a similar seasonal pattern with one single peak occurring during May or June and a valley during December or January.R_L averaged CO_2 79.88,44.37 and 21.02 mg m~(-2) h~(-1),and R_(RF) averaged CO_2 217.4,85.85 and 94.04 mg m~(-2) h~(-1) in NF,CK and CF,respectively.The model R =ae~(bT)W~c(R stands for soil CO_2 efflux,T for soil temperature and W for soil water content at 0~10 cm soil depth,and a,b,c for the constants) indicated that soil(temperature) and soil water content together could explain 82%~85% and 85%~92% of R_L and R_(RF),respectively,with soil(temperature) being the dominating factor affecting soil respiration rate in 2002 and soil humidity in a dry year of 2003.R_L was(more) sensitive to variation in soil temperature and humidity than R_(RF).Annual R_L averaged C 3.76,2.63 and 1.23 t hm~(-2) a~(-1),and annual R_(RF) averaged C 3.44,2.79 and 1.49 t hm~(-2) a~(-1),respectively,in the NF,CK,and CF.Differences in soil(heterotrophic) respiration between forests were associated with differences in quantity and quality of organic inputs,biomass and(activity) of roots,and content and components of soil organic carbon.R_L in CF showed higher sensitivity to drought than in CK and NF,and the sensitivity of soil organic C to drought was higher in the plantations(CK and CF) than in the native forest(NF).
【Fund】: 教育部高校优秀青年教师奖项目;; 福建省重大基础研究项目(2000F004);; 教育部重点科研项目
【CateGory Index】: S714
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