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Spatial Distribution and Environmental Determinants of Denitrification Enzyme Activity in Reed-Dominated Raised Fields 被引量:2

Spatial Distribution and Environmental Determinants of Denitrification Enzyme Activity in Reed-Dominated Raised Fields
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摘要 Denitrification is an important process of nitrogen removal in lake ecosystems.However,the importance of denitrification across the entire soil-depth gradients including subsurface layers remains poorly understood.This study aims to determine the spatial pattern of soil denitrification enzyme activity(DEA) and its environmental determinants across the entire soil depth gradients in the raised fields in Baiyang Lake,North China.In two different zones of the raised fields(i.e.,water boundary vs.main body of the raised fields),the soil samples from 1.0 m to 1.1 m depth were collected,and the DEA and following environmental determinants were quantified:soil moisture,p H,total nitrogen(TN),ammonia nitrogen(NH4+-N),nitrate nitrogen(NO3–-N),total organic carbon(TOC),and rhizome biomass of Phragmites australis.The results showed that the soil DEA and environmental factors had a striking zonal distribution across the entire soil depth gradients.The soil DEA reached two peak values in the upper and middle soil layers,indicating that denitrification are important in both topsoil and subsurface of the raised fields.The correlation analysis showed that the DEA is negatively correlated with the soil depth(p < 0.05).However,this phenomenon did not occur in the distance to the water edge,except in the upper layers(from 0.2 m to 0.7 m) of the boundary zone of the raised fields.In the main body of the raised fields,the DEA level remained high;however,it showed no significant relationship with the distance to the water edge.The linear regression analysis showed significant positive correlation of the DEA with the soil TN,NO3–-N,NH4+-N,and TOC;whereas it showed negative correlation with soil p H.No significant correlations with soil moisture and temperature were observed.A positive correlation was also found between the DEA and rhizome biomass of P.australis. Denitrification is an important process of nitrogen removal in lake ecosystems.However,the importance of denitrification across the entire soil-depth gradients including subsurface layers remains poorly understood.This study aims to determine the spatial pattern of soil denitrification enzyme activity(DEA) and its environmental determinants across the entire soil depth gradients in the raised fields in Baiyang Lake,North China.In two different zones of the raised fields(i.e.,water boundary vs.main body of the raised fields),the soil samples from 1.0 m to 1.1 m depth were collected,and the DEA and following environmental determinants were quantified:soil moisture,pH,total nitrogen(TN),ammonia nitrogen(NH4^+-N),nitrate nitrogen(NO3^–-N),total organic carbon(TOC),and rhizome biomass of Phragmites australis.The results showed that the soil DEA and environmental factors had a striking zonal distribution across the entire soil depth gradients.The soil DEA reached two peak values in the upper and middle soil layers,indicating that denitrification are important in both topsoil and subsurface of the raised fields.The correlation analysis showed that the DEA is negatively correlated with the soil depth(p 〈 0.05).However,this phenomenon did not occur in the distance to the water edge,except in the upper layers(from 0.2 m to 0.7 m) of the boundary zone of the raised fields.In the main body of the raised fields,the DEA level remained high;however,it showed no significant relationship with the distance to the water edge.The linear regression analysis showed significant positive correlation of the DEA with the soil TN,NO3^--N,NH4^+-N,and TOC;whereas it showed negative correlation with soil pH.No significant correlations with soil moisture and temperature were observed.A positive correlation was also found between the DEA and rhizome biomass of P.australis.
机构地区 School of Environment
出处 《Chinese Geographical Science》 SCIE CSCD 2015年第4期438-450,共13页 中国地理科学(英文版)
基金 Under the auspices of National Science Fund for Distinguished Young Scholars(No.51125035) National Science Foundation for Innovative Research Group(No.51121003) Major Science and Technology Program for Water Pollution Control and Treatment(No.2009ZX07209-008)
关键词 denitrification enzyme activity(DEA) nitrate removal raised fields Baiyang Lake rhizomes 反硝化脱氮 环境因素 酶活性 空间分布 芦苇 土壤深度 土壤水分 湖泊生态系统
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  • 1Akatsuka T, Mitamura O, 2011. Response of denitrification rate associated with wetting and drying cycles in a littoral wetland area of Lake Biwa, Japan. Limnology, 12(2): 127-135. doi: 10.1007/s10201-010-0329-x.
  • 2Al Ghadban A N, Uddin S, Maltby E et al., 2012. Denitrification potential of the Northern Arabian Gulf—An experimental study. Environmental Monitoring and Assessment, 184(12): 7103-7112. doi: 10.1007/s10661-011-2483-y.
  • 3Arce M I, Gómez R, Suárez M L et al., 2013. Denitrification rates and controlling factors in two agriculturally influenced temporary Mediterranean saline streams. Hydrobiologia, 700(1): 169-185. doi: 10.1007/s10750-012-1228-4.
  • 4Bai J, Ouyang H, Deng W et al., 2005. Spatial distribution characteristics of organic matter and total nitrogen of marsh soils in river marginal wetlands. Geoderma, 124(1-2): 181-192. doi: 10.1016/j.geoderma.2004.04.012.
  • 5Bai J, Wang J, Yan D et al., 2012. Spatial and temporal distributions of soil organic carbon and total nitrogen in two marsh wetlands with different flooding frequencies of the Yellow River Delta, China. Clean-Soil, Air, Water, 40(10): 1137-1144. doi: 10.1002/clen.201200059.
  • 6Bandy M S, 2005. Energetic efficiency and political expediency in Titicaca Basin raised field agriculture. Journal of Anthropological Archaeology, 24(3): 271-296. doi: 10.1016/j.jaa. 2005.03.002.
  • 7Bastviken S K, Eriksson P G, Premrov A et al., 2005. Potential denitrification in wetland sediments with different plant species detritus. Ecological Engineering, 25(2): 183-190. doi: 10.1016/j.ecoleng.2005.04.013.
  • 8Batson J A, Mander U, Mitsch W J, 2012. Denitrification and a nitrogen budget of created riparian wetlands. Journal of Environmental Quality, 41(6): 2024-2032. doi: 10.2134/jeq2011. 0449.
  • 9Burford R A, Bremner J M, 1975. Relationships between the denitrification capacities of soils and total, water-soluble and readily decomposable soil organic matter. Soil Biology and Biochemistry, 7(6): 389-394. doi: 10.1016/0038-0717(75) 90055-3.
  • 10Burgin A J, Groffman P M, Lewis D N, 2010. Factors regulating denitrification in a riparian wetland. Soil Science Society of America Journal, 74(5): 1826-1833. doi: 10.2136/sssaj2009. 0463.

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