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退化喀斯特植被恢复与土壤微生物特征的关系
引用本文:WEI Yuan,YU Li-Fei,ZHANG Jin-Chi,YU Yuan-Chun,D. L. DEANGELIS. 退化喀斯特植被恢复与土壤微生物特征的关系[J]. 土壤圈, 2011, 21(1): 132-138
作者姓名:WEI Yuan  YU Li-Fei  ZHANG Jin-Chi  YU Yuan-Chun  D. L. DEANGELIS
作者单位:WEI Yuan(School of Resources and Environmental Management,Guizhou College of Finance and Economics,Guiyang 550004 China;College of Forestry,Guizhou University,Guiyang 550025 China;College of Forest and Environment,Nanjing Forestry University,Nanjing 210037,China);YU Li-Fei(College of Forestry,Guizhou University,Guiyang 550025,China);MANG Jin-Chi,YU Yuan-Chun(College of Forest and Environment,Nanjing Forestry University,Nanjing 210037,China);D.L.DEANGELIS(Department of Biology,University of Maimi,P.O.Box 249118,Coral Gables,FL 33124,USA)
基金项目:Supported by the National Basic Research Program(973 Program)Science & Technology Pillar Program in the Eleventh Five-year Plan of China,the Key Project in the National Period of China,the National Natural Science Foundation of China
摘    要:The mechanism of vegetation restoration on degraded karst regions has been a research focus of soil science and ecology for the last decade.In an attempt to preferably interpret the soil microbiological characteristic variation associated with vegetation restoration and further to explore the role of soil microbiology in vegetation restoration mechanism of degraded karst regions,we measured microbial biomass C and basal respiration in soils during vegetation restoration in Zhenfeng County of southwestern Guizhou Province,China.The community level physiological profiles(CLPP) of the soil microbial community to were estimated determine if vegetation changes were accompanied by changes in functioning of soil microbial communities.The results showed that soil microbial biomass C and microbial quotient(microbial biomass C/organic C) tended to increase with vegetation restoration,being in the order arboreal community stage > shrubby community stage > herbaceous community stage > bare land stage.Similar trend was found in the change of basal respiration(BR).The metabolic quotient(the ratio of basal respiration to microbial biomass,qCO 2) decreased with vegetation restoration,and remained at a constantly low level in the arboreal community stage.Analyses of the CLPP data indicated that vegetation restoration tended to result in higher average well color development,substrate richness,and functional diversity.Average utilization of specific substrate guilds was highest in the arboreal community stage.Principle component analysis of the CLPP data further indicated that the arboreal community stage was distinctly different from the other three stages.In conclusion,vegetation restoration improved soil microbial biomass C,respiration,and utilization of carbon sources,and decreased qCO 2,thus creating better soil conditions,which in turn could promote the restoration of vegetation on degraded karst regions.

关 键 词:basal respiratory  community level physiological profile  functional diversity  metabolic quotient  microbial biomass C

Relationship between vegetation restoration and soil microbial characteristics in degraded karst regions
WEI Yuan,YU Li-Fei,ZHANG Jin-Chi,YU Yuan-Chun and D. L. DEANGELIS. Relationship between vegetation restoration and soil microbial characteristics in degraded karst regions[J]. Pedosphere, 2011, 21(1): 132-138
Authors:WEI Yuan  YU Li-Fei  ZHANG Jin-Chi  YU Yuan-Chun  D. L. DEANGELIS
Affiliation:School of Resources and Environmental Management, Guizhou College of Finance and Economics, Guiyang 550004 (China);College of Forestry, Guizhou University, Guiyang 550025 (China);College of Forest and Environment, Nanjing Forestry University, Nanjing 210037 (China);College of Forestry, Guizhou University, Guiyang 550025 (China);College of Forest and Environment, Nanjing Forestry University, Nanjing 210037 (China);School of Resources and Environmental Management, Guizhou College of Finance and Economics, Guiyang 550004 (China);Department of Biology, University of Maimi, P. O. Box 249118, Coral Gables, FL 33124 (USA)
Abstract:The mechanism of vegetation restoration on degraded karst regions has been a research focus of soil science and ecology for the last decade. In an attempt to preferably interpret the soil microbiological characteristic variation associated with vegetation restoration and further to explore the role of soil microbiology in vegetation restoration mechanism of degraded karst regions, we measured microbial biomass C and basal respiration in soils during different vegetation restoration in Zhenfeng County of southwestern Guizhou Province, China Also, we estimated the community level physiological profiles (CLPP) of the soil microbial community to determine if vegetation changes were accompanied by changes in functioning of soil microbial communities. The results showed that soil microbial biomass C and microbial quotient (microbial biomass C/organic C) tended to increased with vegetation restoration stage, being in the order arboreal community stage > shrubby community stage > herbaceous community stage>bare land stage.. Similar trend was found in the change of basal respiration (BR). The metabolic quotient (the ratio of basal respiration to microbial biomass, qCO2) decreased with vegetation restoration, and remained at a constantly low level in the arboreal community stage. Analyses of the CLPP data indicated that vegetation restoration tended to result in higher average well color development, substrate richness, and functional diversity. Average utilization of specific substrate guilds was highest in the arboreal community stage. Principle component analysis of the CLPP data further indicated that the arboreal community stage was distinctly different from the other three stages. In conclusion, vegetation restoration improved soil microbial biomass C, respiration, and utilization of carbon sources, and decreased qCO2, thus creating better soil conditions, which in turn could promote the restoration of vegetation on degraded karst regions.
Keywords:basal respiratory   community level physiological profile   functional diversity   metabolic quotient   microbial biomass C
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