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Microbial Activity in a Temperate Forest Soil as Affected by Elevated Atmospheric CO_2 被引量:5

Microbial Activity in a Temperate Forest Soil as Affected by Elevated Atmospheric CO_2
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摘要 Microorganisms play a key role in the response of soil ecosystems to the rising atmospheric carbon dioxide (CO2) as they mineralize organic matter and drive nutrient cycling. To assess the effects of elevated CO2 on soil microbial C and N immobilization and on soil enzyme activities, in years 8 (2006) and 9 (2007) of an open-top chamber experiment that begun in spring of 1999, soil was sampled in summer, and microbial biomass and enzyme activity related to the carbon (C), nitrogen (N) and phosphorus (P) cycling were measured. Although no effects on microbial biomass C were detected, changes in microbial biomass N and metabolic activity involving C, N and P were observed under elevated CO2. Invertase and dehydrogenase activities were significantly enhanced by different degrees of elevated CO2. Nitrifying enzyme activity was significantly (P < 0.01) increased in the August 2006 samples that received the elevated CO2 treatment, as compared to the samples that received the ambient treatment. Denitrifying enzyme activity was significantly (P < 0.04) decreased by elevated CO2 treatments in the August 2006 and June 2007 (P < 0.09) samples. β-N-acetylglucosaminidase activity was increased under elevated CO2 by 7% and 25% in June and August 2006, respectively, compared to those under ambient CO2. The results of June 2006 samples showed that acid phosphatase activity was significantly enhanced under elevated CO2. Overall, these results suggested that elevated CO2 might cause changes in the belowground C, N and P cycling in temperate forest soils. Microorganisms play a key role in the response of soil ecosystems to the rising atmospheric carbon dioxide (CO2) as they mineralize organic matter and drive nutrient cycling. To assess the effects of elevated CO2 on soil microbial C and N immobilization and on soil enzyme activities, in years 8 (2006) and 9 (2007) of an open-top chamber experiment that begun in spring of 1999, soil was sampled in summer, and microbial biomass and enzyme activity related to the carbon (C), nitrogen (N) and phosphorus (P) cycling were measured. Although no effects on microbial biomass C were detected, changes in microbial biomass N and metabolic activity involving C, N and P were observed under elevated CO2. Invertase and .dehydrogenase activities were significantly enhanced by different degrees of elevated CO2. Nitrifying enzyme activity was significantly (P 〈 0.01) increased in the August 2006 samples that received the elevated COs treatment, as compared to the samples that received the ambient treatment. Denitrifying enzyme activity was significantly (P 〈 0.04) decreased by elevated COs treatments in the August 2006 and June 2007 (P 〈 0.09) samples, β-N-acetylglucosaminidase activity was increased under elevated CO2 by 7% and 25% in June and August 2006, respectively, compared to those under ambient CO2. The results of June 2006 samples showed that acid phosphatase activity was significantly enhanced under elevated CO2. Overall, these results suggested that elevated CO2 might cause changes in the belowground C, N and P cycling in temperate forest soils.
机构地区 Forestry Center
出处 《Pedosphere》 SCIE CAS CSCD 2010年第4期427-435,共9页 土壤圈(英文版)
基金 Supported by the National Natural Science Foundation of China (No.90411020)
关键词 大气CO2浓度升高 微生物活性 森林土壤 温带 CO2 enrichment, microbial biomass, soil carbon cycling, soil nitrogen cycling
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  • 1牟守国.温带阔叶林、针叶林和针阔混交林土壤呼吸的比较研究[J].土壤学报,2004,41(4):564-570. 被引量:57
  • 2贾夏,韩士杰,周玉梅.不同二氧化碳浓度条件下红松和长白赤松土壤生化特性研究[J].应用生态学报,2004,15(10):1842-1846. 被引量:7
  • 3Goudriaan J,De Ruiter HE.1983.Plant growth in response to CO2 enrichment at two levels of nitrogen and phosphorus supply I.Dry matter,leaf area and development.Neth J Agric Sci,31:157~169
  • 4Ineson P,Coward Pa,Hartwig UA.1998.Soil gas fluxes of N2O,CH4 and CO2 beneath Lolium perenne under elevated CO2:The Swiss free air carbon dioxide enrichment experiment.Plant Soil,198(1):89~95
  • 5Irvine J,Law BE.2002.Contrasting soil respiration in young and old-growth ponderosa pine forests.Glob Change Biol,8(12):1183~1194
  • 6Janssens IA,Crookshanks M,Taylor G,et al.1998.Elevated atmospheric CO2 increases fine root production,respiration,rhizosphere respiration and soil CO2 efflux in Scots pine seedlings.Glob Change Biol,4(8):871~878
  • 7King JS,Hanson PJ,Bernhardt E,et al.2004.A multiyear synthesis of soil respiration responses to elevated atmospheric CO2 from four forest FACE experiments.Glob Change Biol,10(6):1027~1042
  • 8Lohila A,Aurela M,Regina K,et al.2003.Soil and total ecosystem respiration in agricultural fields:Effect of soil and crop type.Plant Soil,251(2):303~317
  • 9Maier CA,Kress LW.2000.Soil CO2 evolution and root respiration in 11 year-old loblolly pine (Pinus taeda) plantations as affected by moisture and nutrient availability.Can J For Res,30:347~359
  • 10Mielnick PC,Dugas WA.2000.Soil CO2 flux in a tallgrass prairie.Soil Biol Biochem,32:221~228

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