期刊文献+

^(15)N isotope fractionation in an aquatic food chain:Bellamya aeruginosa(Reeve) as an algal control agent 被引量:14

^(15)N isotope fractionation in an aquatic food chain:Bellamya aeruginosa(Reeve) as an algal control agent
下载PDF
导出
摘要 ^ 15N isotope tracer techniques and ecological modeling were adopted to investigate the fractionation of nitrogen, its uptake and transformation in algae and snail (Bellamya aeruginosa Reeve). Different algal species were found to differ in their uptake of nitrogen isotopes. Microcystis aeruginisa Ktitz. demonstrated the greatest ^15N accumulation capacity, with the natural variation in isotopic ratio (δ^15N) and the isotope fractionation factor (ε,‰) being the highest among the species investigated. The transformation and utilization of ^15N by snails differed depending on the specific algae consumed (highest for Chlorella pyrenoidosa Chick., lowest for M. aeruginisa). When snails was seeded in the experimental pond, the algae population structure changed significantly, and total algal biomass as well as the concentration of all nitrogen species decreased, causing an increase in water transparency. A model, incorporating several chemical and biological parameters, was developed to predict algal biomass in an aquatic system when snails was present. The data collected during this investigation indicated that the gastropods such as snails could significantly impact biological community and water quality of small water bodies, suggesting a role for biological control of noxious algal blooms associated with eutrophication. ^ 15N isotope tracer techniques and ecological modeling were adopted to investigate the fractionation of nitrogen, its uptake and transformation in algae and snail (Bellamya aeruginosa Reeve). Different algal species were found to differ in their uptake of nitrogen isotopes. Microcystis aeruginisa Ktitz. demonstrated the greatest ^15N accumulation capacity, with the natural variation in isotopic ratio (δ^15N) and the isotope fractionation factor (ε,‰) being the highest among the species investigated. The transformation and utilization of ^15N by snails differed depending on the specific algae consumed (highest for Chlorella pyrenoidosa Chick., lowest for M. aeruginisa). When snails was seeded in the experimental pond, the algae population structure changed significantly, and total algal biomass as well as the concentration of all nitrogen species decreased, causing an increase in water transparency. A model, incorporating several chemical and biological parameters, was developed to predict algal biomass in an aquatic system when snails was present. The data collected during this investigation indicated that the gastropods such as snails could significantly impact biological community and water quality of small water bodies, suggesting a role for biological control of noxious algal blooms associated with eutrophication.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第2期242-247,共6页 环境科学学报(英文版)
基金 supported by the National Natural Science Foundation of China (No.30870452) the National Chaohu Lake Special Project of China (No.2008ZX07103-005)
关键词 ^15N fractionation algal bloom Bellamya aeruginosa ecological modeling EUTROPHICATION ^15N fractionation algal bloom Bellamya aeruginosa ecological modeling eutrophication
  • 相关文献

参考文献3

二级参考文献37

  • 1Shapiro J,Lamarra V,Lynch M.Biomanipulation:an ecosystem approach to lake restoration[A].In:Brezonik DL,Fox JL,eds.Water quality management through biological ways gainesville[M].Florida:University Press of Florida,1975.85~96.
  • 2Perrow MR,Meijer M,Dawidowicz P,et al.Biomanipulation in shallow lake:state of the art[J].Hydrobiologia,1997,342/343:355~356.
  • 3Boers P,Ballegoojen LV,Unnk J.Changes in phosphorus cyling in a shallow lake due to food web manipulations[J].Freshwater Biol,1991,25:9~20.
  • 4刘健康.高级水生生物学[M].北京:科学出版社,2002.211.
  • 5Altabet M A, Deuser W G, Honjo S et al, 1991. Seasonal and depth-related changes in the source of sinking particles in the North Atlantic. Nature, 354:136-139
  • 6Altabet M A, Franois R, 1994. Sedimentary nitrogen isotopic ratio as a recorder for surface ocean nitrate utilizeation. Glob Biogeochem Cycles, 8: 103-116
  • 7Dortch Q, Clayton J R, Thoresen S S et al, 1984. Species differences in accumulation of nitrate pools in phytoplankton. Mar Biol, 81: 237-250
  • 8Franois R, Altabet M A, Burckle L H, 1992. Glacial to interglacial changes in surface nitrate utilization in the Indian sector of the Southern Ocean as recorded by sediment δ15N. Paleoceanography,7: 589-606
  • 9Goering J, Alexander V, Haubenstock N, 1990. Seasonal variability of stable carbon and nitrogen isotopes ratios of organisms in a North Pacific Bay. Estuarine Coastal Shelf Sci, 30: 239-260
  • 10Handley L L, Raven J A, 1992. The use of natural abundance of nitrogen isotopes in plant physiology and ecology. Plant Cell Environ, 15: 965-985

共引文献34

同被引文献209

引证文献14

二级引证文献76

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部