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^15N isotope fractionation in an aquatic food chain: Bellamya aeruginosa (Reeve) as an algal control agent
作者姓名:Shiqun Han  Shaohua Yan  Kaining Chen  Zhenhua Zhang  Rengel Ze  Jianqiu Zhang  Wei Song  Haiqin Liu
作者单位:School;Earth;Environment;University;Western;Australia;
基金项目:supported by the National Natural Science Foundation of China (No.30870452);;the National Chaohu Lake Special Project of China (No.2008ZX07103-005)
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 Ktz.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.

关 键 词:藻类生物量  同位素分馏  铜锈环棱螺  水生  控制剂  食物链  同位素示踪技术  氮同位素
收稿时间:4/1/2009 12:00:00 AM
修稿时间:31 May 2009

15N isotope fractionation in an aquatic food chain: Bellamya aeruginosa (Reeve) as an algal control agent
Shiqun Han,Shaohua Yan,Kaining Chen,Zhenhua Zhang,Rengel Ze,Jianqiu Zhang,Wei Song,Haiqin Liu.15N isotope fractionation in an aquatic food chain: Bellamya aeruginosa (Reeve) as an algal control agent[J].Journal of Environmental Sciences,2010,22(2):242-247.
Authors:Shiqun Han  Shaohua Yan  Kaining Chen  Zhenhua Zhang  Rengel Ze  Jianqiu Zhang  Wei Song and Haiqin Liu
Institution:1. Institute of Agricultural Resources and Environments, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China
2. Nanjing Institute of Geography Limnology, Chinese Academy of Sciences, Nanfing 210014, China
3. School of Earth and Environment, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia
Abstract:~(15)N 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 ~(15)N accumulation capacity, with the natural variation in isotopic ratio (δ~(15)N) and the isotope fractionation factor (ε, ‰) being the highest among the species investigated. The transformation and utilization of ~(15)N 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.
Keywords:15N fractionation  algal bloom  Bellamya aeruginosa  ecological modeling  eutrophication  
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