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杉木凋落物对土壤有机碳分解及微生物生物量碳的影响
引用本文:王晓峰,汪思龙,张伟东. 杉木凋落物对土壤有机碳分解及微生物生物量碳的影响[J]. 生态学杂志, 2013, 24(9): 2393-2398
作者姓名:王晓峰  汪思龙  张伟东
作者单位:(;1.中国科学院沈阳应用生态研究所森林与土壤生态国家重点实验室, 沈阳 110016; ;湖南会同森林生态系统国家野外科学观测研究站, 湖南会同 418307; 3中国科学院大学, 北京 100049)
摘    要:利用13C稳定同位素示踪技术,研究了杉木凋落物对杉木人工林表层(0~5 cm)和深层(40~45 cm)土壤有机碳分解、微生物生物量碳和可溶性碳动态的影响.结果表明: 杉木人工林中深层土壤有机碳分解速率显著低于表层土壤,但其激发效应却显著高于表层土壤.杉木凋落物添加使土壤总微生物生物量碳和源于原有土壤的微生物生物量碳均显著增加,但对土壤可溶性碳没有显著影响.深层土壤被翻到林地表层,可能加速杉木人工林土壤中碳的损失.

关 键 词:杉木人工林  凋落物  激发效应  土壤有机质矿化  微生物生物量碳

Effects of Chinese fir litter on soil organic carbon decomposition and microbial biomass carbon.
WANG Xiao-feng,WANG Si-long,ZHANG Wei-dong. Effects of Chinese fir litter on soil organic carbon decomposition and microbial biomass carbon.[J]. Chinese Journal of Ecology, 2013, 24(9): 2393-2398
Authors:WANG Xiao-feng  WANG Si-long  ZHANG Wei-dong
Affiliation:(;1.State Key Laboratory of Forest and Soil Ecology, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China; ;Huitong National Research Station of Forest Ecosystem, Huitong 418307, Hunan, China; ;University of Chinese Academy of Sciences, Beijing 100049, China)
Abstract:By using 13C stable isotope tracer technique, this paper studied the effects of Chinese fir litter addition on the soil organic carbon (SOC) decomposition, microbial biomass carbon, and dissolved organic carbon in 0-5 cm and 40-45 cm layers. The decomposition rate of SOC in 40-45 cm layer was significantly lower than that in 0-5 cm layer, but the priming effect induced by the Chinese fir litter addition showed an opposite trend. The Chinese fir litter addition increased the soil total microbial biomass carbon and the microbial biomass carbon derived from native soil significantly, but had less effects on the soil dissolved organic carbon. Turning over the subsoil to the surface of the woodland could accelerate the soil carbon loss in Chinese fir plantation due to the priming effect induced by the litters.
Keywords:Chinese fir plantation  litter  priming effect  soil organic carbon mineralization  microbial biomass carbon.
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