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龙感湖沉积物泥芯硅藻群落和营养状态的反演
作者姓名:DONG  Xu-Hui  and  YANG  Xiang-Dong
作者单位:Nanjing Institute of Geography & Limnology,the Chinese Academy of Sciences,Nanjing 210008,China
基金项目:the Scientific Innovation Projects of Chinese Academy of Sciences(KZCX1-SW-12)andthe 973 projects(2002CB412300)
摘    要:The importance of aquatic vegetation to the ecologi-cal restoration has been recognized commonly bylimnolo-gists and lake managements1—4].As to the ecologicalrestoration in eutrophicated lakes,it is of great signifi-cance to knowthe dynamic process of the ecosystemevo-lution in a macrophyte-dominated lake under the humanimpacts in historical period,to make it clear whether thecommunitystructure and ecological function would be af-fected bythe extension of the vegetation growth,tofind asolutionto remain ste...

文章编号:1000-3207(2006)06-0702-09
修稿时间:2004年11月22

Diatom community succession and nutrient evolution recorded from a sediment core of the Longgan Lake, a large shallow lake in east China
DONG Xu-Hui and YANG Xiang-Dong.Diatom community succession and nutrient evolution recorded from a sediment core of the Longgan Lake, a large shallow lake in east China[J].Acta Hydrobiologica Sinica,2006,12(6):1-710.
Authors:DONG Xu-Hui  YANG Xiang-Dong
Abstract:The Longgan Lake is a shallow mesotrophic macrophytedominated lake. According to the high-resolution diatom research from its sediment core, the diatom community succession was built, and the total phosphorus (TP) and chlorophyll-a (Chl-a) concentration were quantitatively reconstructed for the past 2000 years, based on the diatom-TP and diatom-Chla transfer functions.The shifts of diatom assemblages also mirrored the developments of aquatic plant, reflecting the characters of aquatic ecosystem evolution. The inferred epilimnetic TP concentration fluctuated within a small range of 36 to 62μg/L, indicating the lake remained a relative stable mesotrophic status in the long historical period. The periodical variations of the diatom assemblage and trophic status suggest a mitigating function of shallow macrophyte-dominated lakes to nutrient input. The changes of lakes' trophic status don't linearly respond to the human disturbance in the catchment. The dynamics mechanism of phosphorus in macrophyte-dominated lakes, as inferred from diatoms, will provide a scientific foundation for the prediction of trophic status change in a shallow lake, as well as the lake ecological restoration and management decisions.
Keywords:Diatom assemblage  Nutrient  Quantitative reconstruction  Aquatic macrophyte  Longgan Lake  
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