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土壤微食物网对旱改水不同稻作年限土地利用变化的响应
作者姓名:L&#; Ying  BAI Wei  WANG Xue-Feng  CAI Qian  LIANG Wen-Ju
摘    要:Land use changes affect belowground ecosystems.During the past few decades,land use in Northeast China has changed considerably,and the area of paddy fields has increased rapidly from upland.In this study,soil characteristics and soil biotic community in paddy fields with different years of rice cultivation were measured to examine the effects of land use change from upland to paddy fields on soil micro-food web.The upland maize fields were selected as control and the microbial community composition was characterized using phospholipid fatty acids (PLFAs) analysis.The microbial biomass (total PLFA),bacteria biomass,and fungi biomass were higher in the 20-40-year (late-stage) than 1-10-year (early-stage) paddy fields.The abundances of total nematodes and bacterivores were lower in the early-stage than late-stage paddy fields.The abundance of herbivores was the highest in the early-stage paddy fields but that of omnivore-predators was the highest in the late-stage paddy fields.Structural equation model indicated that soil food web was developed and structured after 20 years of paddy cultivation.Our results suggested that soil micro-food web may be a good indicator for soil development and stabilization of paddy fields following land use change.

关 键 词:belowground  ecosystem  microbial  community  composition  phospholipid  fatty  acids  soil  nematodes  structural  equation  model

Responses of soil micro-food web to land use change from upland to paddy fields with different years of rice cultivation
L&#; Ying,BAI Wei,WANG Xue-Feng,CAI Qian,LIANG Wen-Ju.Responses of soil micro-food web to land use change from upland to paddy fields with different years of rice cultivation[J].Pedosphere,2017,27(1):155-164.
Authors:L&#; Ying  BAI Wei  WANG Xue-Feng  CAI Qian and LIANG Wen-Ju
Institution:1. Liaoning Key Laboratory of Soil Environmental Quality and Agro-Product Safety, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016 China; University of Chinese Academy of Sciences, Beijing 100049 China;2. Tillage and Cultivation Research Institute, Liaoning Academy of Agricultural Sciences, Shenyang 110161 China;3. Northeast Institute of Geography and Agroecology, Key Laboratory of Wetland Ecology and Environment, Chinese Academy of Sciences, Changchun 130102 China;4. Liaoning Key Laboratory of Soil Environmental Quality and Agro-Product Safety, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016 China
Abstract:Land use changes affect belowground ecosystems. During the past few decades, land use in Northeast China has changed considerably, and the area of paddy fields has increased rapidly from upland. In this study, soil characteristics and soil biotic community in paddy fields with different years of rice cultivation were measured to examine the effects of land use change from upland to paddy fields on soil micro-food web. The upland maize fields were selected as control and the microbial community composition was characterized using phospholipid fatty acids (PLFAs) analysis. The microbial biomass (total PLFA), bacteria biomass, and fungi biomass were higher in the 20--40-year (late-stage) than 1--10-year (early-stage) paddy fields. The abundances of total nematodes and bacterivores were lower in the early-stage than late-stage paddy fields. The abundance of herbivores was the highest in the early-stage paddy fields but that of omnivore-predators was the highest in the late-stage paddy fields. Structural equation model indicated that soil food web was developed and structured after 20 years of paddy cultivation. Our results suggested that soil micro-food web may be a good indicator for soil development and stabilization of paddy fields following land use change.
Keywords:belowground ecosystem  microbial community composition  phospholipid fatty acids  soil nematodes  structural equation model
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