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Evaluation of soil fertility under different Cupressus chengiana forests using multivariate approach
作者姓名:PANG Xue-Yong  BAO Wei-Kai  ZHANG Yong-Mei
作者单位:[1]Chengdu Institute of Biology, Chinese Academy of Sciences, P.O. Box416, Chengdu 610041 (China) [2]Graduate School of the Chinese Academy of Sciences, Beijing 100039 (China)
摘    要:The distribution and growing conditions of Cupressus chengiana forests along with the physical and chemical properties of soils in Northwest Sichuan were studied in 2002 to investigate the conditions and characteristics of soil fertility of C. chengiana and to compare and investigate differences of soil fertility for six C. chengiana populations and their relationships with vegetation, climate and disturbance. The results of the study at 0-20 cm soil depth showed that 1) significant differences (P〈0.05) existed among populations for soil bulk density, soil total porosity, capillary porosity, maximum water-holding capacity, capillary water-holding capacity and topsoil natural water content; 2) chemical characteristics of soil organic matter, total N, total P, alkali-hydrolyzable N, available P, available K and cation exchange capacity were significantly different among the populations; and 3) based on the significant effect of soil fertility factors on forest growth, soil physical and chemical characteristics could be selected as an integrated fertility index (IFI) for evaluation of different C. chengiana populations. Principal component and cluster analyses showed significant differences probably due to the difference of vegetation conditions, management measurements, human-induced disturbances and environmental factors. In order to protect the soil ecological functions in fragile ecological regions, C. chengiana could be used in programs enclosing the hill for natural afforestation, natural forest protection programs, and programs replacing agriculture with afforestation measures.

关 键 词:土壤肥力  物理性质  化学性质  四川
收稿时间:2005-12-16
修稿时间:2006-04-24

Evaluation of soil fertility under different Cupressus chengiana forests using multivariate approach
PANG Xue-Yong,BAO Wei-Kai,ZHANG Yong-Mei.Evaluation of soil fertility under different Cupressus chengiana forests using multivariate approach[J].Pedosphere,2006,16(5):602-615.
Authors:PANG Xue-Yong  BAO Wei-Kai and ZHANG Yong-Mei
Institution:Chengdu Institute of Biology, Chinese Academy of Sciences, P.O. Box 416, Chengdu 610041,China.
Abstract:The distribution and growing conditions of Cupressus chengiana forests along with the physical and chemical properties of soils in Northwest Sichuan were studied in 2002 to investigate the conditions and characteristics of soil fertility of C. chengiana and to compare and investigate differences of soil fertility for six C. chengiana populations and their relationships with vegetation, climate and disturbance. The results of the study at 0-20 cm soil depth showed that 1) significant differences (P < 0.05) existed among populations for soil bulk density, soil total porosity, capillary porosity, maximum water-holding capacity, capillary water-holding capacity and topsoil natural water content; 2) chemical characteristics of soil organic matter, total N, total P, alkali-hydrolyzable N, available P, available K and cation exchange capacity were significantly different among the populations; and 3) based on the significant effect of soil fertility factors on forest growth, soil physical and chemical characteristics could be selected as an integrated fertility index (IFI) for evaluation of different C. chengiana populations. Principal component and cluster analyses showed significant differences probably due to the difference of vegetation conditions, management measurements, human-induced disturbances and environmental factors. In order to protect the soil ecological functions in fragile ecological regions, C. chengiana could be used in programs enclosing the hill for natural afforestation, natural forest protection programs, and programs replacing agriculture with afforestation measures.
Keywords:cluster analysis  Cupressus chengiana  dry valley  principal component analysis  soil fertility
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