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Fertilization regimes affect the soil biological characteristics of a sudangrass and ryegrass rotation system 被引量:2

Fertilization regimes affect the soil biological characteristics of a sudangrass and ryegrass rotation system
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摘要 The sudangrass (Sorghum sudanense) and ryegrass (Lolium multiflorum L.) rotation is an intensive and new cropping system in Central China.Nutrient management practices in this rotation system may influence soil fertility,the important aspects of which are soil biological properties and quality.As sensitive soil biological properties and quality indicators,soil microbial community activity,microbial biomass,enzyme activities,soil organic matter (SOM) and total N resulting from different fertilization regimes in this rotation system were studied through a four-year field experiment from April 2005 to May 2009.Treatments included control (CK),fertilizer phosphorus and potassium (PK),fertilizer nitrogen and potassium (NK),fertilizer nitrogen and phosphorus (NP) and a fertilizer nitrogen,phosphorus and potassium combination (NPK).Soil microbial community activities in the NK,NP and NPK treatments were significantly lower than those in the CK and PK treatments after the sudangrass and ryegrass trial.The highest microbial biomass C,microbial biomass N,SOM,total N,sucrase and urease activities were found in the NPK treatment,and these soil quality indicators were significantly higher in the NK,NP and NPK treatments than in the PK and CK treatments.Soil microbial biomass and enzyme activities were positively associated with SOM in the sudangrass and ryegrass rotation system,indicating that fertilization regimes,especially N application,reduced microbial community activity in the soil.Proper fertilization regimes will increase microbial biomass,enzyme activity and SOM and improve soil fertility. The sudangrass (Sorghum sudanense) and ryegrass (Lolium multiflorum L.) rotation is an intensive and new cropping system in Central China.Nutrient management practices in this rotation system may influence soil fertility,the important aspects of which are soil biological properties and quality.As sensitive soil biological properties and quality indicators,soil microbial community activity,microbial biomass,enzyme activities,soil organic matter (SOM) and total N resulting from different fertilization regimes in this rotation system were studied through a four-year field experiment from April 2005 to May 2009.Treatments included control (CK),fertilizer phosphorus and potassium (PK),fertilizer nitrogen and potassium (NK),fertilizer nitrogen and phosphorus (NP) and a fertilizer nitrogen,phosphorus and potassium combination (NPK).Soil microbial community activities in the NK,NP and NPK treatments were significantly lower than those in the CK and PK treatments after the sudangrass and ryegrass trial.The highest microbial biomass C,microbial biomass N,SOM,total N,sucrase and urease activities were found in the NPK treatment,and these soil quality indicators were significantly higher in the NK,NP and NPK treatments than in the PK and CK treatments.Soil microbial biomass and enzyme activities were positively associated with SOM in the sudangrass and ryegrass rotation system,indicating that fertilization regimes,especially N application,reduced microbial community activity in the soil.Proper fertilization regimes will increase microbial biomass,enzyme activity and SOM and improve soil fertility.
出处 《Science China(Life Sciences)》 SCIE CAS 2011年第6期572-579,共8页 中国科学(生命科学英文版)
基金 supported by the International Plant Nutrition Institute (Grant No. Hubei-22) the National Key Technologies R&D Program of China (Grant No. 2008BADA4B08) the National Department Public Benefit Research Foundation (Grant No. 200803029)
关键词 土壤微生物群落 生物学特性 施肥制度 轮作制度 黑麦草 苏丹草 土壤质量指标 微生物量氮 microbial activity microbial biomass carbon and nitrogen enzyme fertilization regimes
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  • 1范昊明,蔡强国,王红闪.中国东北黑土区土壤侵蚀环境[J].水土保持学报,2004,18(2):66-70. 被引量:101
  • 2王洋,齐晓宁,王其存.施用秸秆堆腐肥对黑土农田养分及玉米产量的影响研究[J].中国生态农业学报,2004,12(4):132-134. 被引量:21
  • 3李春格,李晓鸣,王敬国.大豆连作对土体和根际微生物群落功能的影响[J].生态学报,2006,26(4):1144-1150. 被引量:163
  • 4[1]Nowak R S,Ellsworth D S,Smith S D.Functional responses of plants to elevated atmospheric CO2-Do photosynthetic and productivity data from FACE experiments support early predictions? New Phytol,2004,162:253-280
  • 5[2]Amthor J S.Terrestrial higher-plant response to increasing atmospheric CO2 in relation to the global carbon cycle.Glob Change Biol,1995,1:243-274
  • 6[3]Craine J M,Reich P B,Tilman D,et al.The role of plant species in biomass production and response to elevated CO2 and N.Ecol Lett,2003,6:623-630
  • 7[4]Diaz S,Grime J P,Harris J,et al.Evidence of a feedback mechanism limiting plant response to elevated carbon dioxide.Nature,1993,363:616-617
  • 8[5]Field C B,Chapin Ⅲ F S,Chiariello N R,et al.The Jasper Ridge CO2 experiment:Design and Motivation.In:Koch G W,Mooney H A,eds.Carbon Dioxide and Terrestrial Ecosystems.San Diego:Academic Press,1996.121-145
  • 9[6]Hu S,Chapin Ⅲ F S,Firestone M K,et al.Nitrogen limitation of microbial decomposition in a grassland under elevated CO2.Nature,2001,409:188-190
  • 10[7]Lüscher A,Hendrey G R,N(o)sberger J.Long-term responsiveness to free air CO2 enrichment of functional types,species and genotypes of plants from fertile permanent grassland.Oecologia,1998,113:37-45

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