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A change of zooplankton community after dredging in the West Lake, Hangzhou |
LI Gong-guo1, YU Mei-fang1, WU Zhi-ying2, YU Zuo-ming3 |
1. Zhejiang Wanli University, Ningbo, 315100; 2. Water area management of the West Lake, Hangzhou 310002; 3. Institute of Environmental Protection Science, Hangzhou, 310008 China |
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Abstract Ecology of zooplankton community, including dominant species composition, density, biomass, and regression analysis amomg zooplankton biomass and the water quality factors were studied at four sampling stations (Ⅰ-Ⅳ) of the West Lake, Hangzhou, a shallow eutrophic lake.After dredging, Tintinnopsis sp., which was the first dominant species of Protozoa replaced by Tintinnidium sp., and Trichocerca pusilla replaced by Polyarthra trigla at stations Ⅲ-Ⅳ.Diaphanosoma leuchtenbergianum, which was the first dominant species of Cladocera replaced by Bosmina longirostris at Station Ⅰ and by Moina micrura at Station Ⅲ.Thermocyclops dybowskii dominated the Cyclopida, and Sinocalanus dorrii dominated the Calanoida after dredging.The annual average density of zooplankton increased 80.5%, of which 57.3% was contributed by protozoans.And the annual average biomass of zooplankton increased 49.7%, of which 36.5% was contributed by rotifers.There had a positive linear relationship between biomass of zooplankton and Chlorophyll-a, CODMn and total phosphorus content in the West Lake, Hangzhou after dredging.The relative degrees of the biomass and environmental factors were differed in each sampling station of the West Lake with an order of: Ⅳ>Ⅲ>Ⅰ>Ⅱ.The influence degrees of environmental factors on zooplankton was coincidence with appearance of dominant species changes.The relative degrees of the biomass and environmental factors were differed in each group of zooplankton with an order of: Cladocera>Rotifer>Copepoda>Protozoa.
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Received: 25 June 2005
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[1] 马玖兰.1996.西湖引流钱塘江水9年后的水质分析[J].环境污染与防治,18(5):31-33.
[2] 裴洪平,王维维,何金土,等.1998.杭州西湖引水后生态系统中磷循环模型[J].生态学报,18(6):648-653.
[3] 魏崇德,俞大维.1983.杭州西湖浮游动物的研究[J].杭州大学学报,自然科学版(增刊),10:1-17.
[4] 李共国,魏崇德.1994.钱塘江水对杭州西湖水生态的影响[J].杭州大学学报(自然科学版),21(增刊),41-45.
[5] Li G G, wei C. D., Zhou H. et al. 1999. Ecological studies on zooplanktin of the West Lake and the inflows[J]. Report of the Suwa Hydrobiological Station Shinshu University, 11, 41-49.
[6] 章宗涉,黄祥飞.1991.淡水浮游生物研究方法[M].北京:科学出版社,358-362.
[7] 蒋燮治.1956.江苏安徽淡水沙壳纤毛虫的调查报告[J].水生生物学集刊,(1):61-87.
[8] 王家楫编.1961.中国淡水轮虫志[M].北京:科学出版社.
[9] 黄祥飞.1981.简易测重法在武汉东湖轮虫常见种中的应用[J].水生生物学集刊,7(3):409-416.
[10] 蒋燮治,堵南山.1979.中国动物志(淡水枝角类)[M].北京:科学出版社.
[11] 中国科学院动物研究所甲壳动物研究组编.1979.中国动物志(淡水桡足类)[M].北京:科学出版社.
[12] 黄祥飞,胡春英.1986.淡水常见枝角类体长-体重回归方程式[A].见:甲壳动物学论文集编委会编.甲壳动物学论文集[C].1.北京:科学出版社,147-157
[13] 陈雪梅.1981.淡水桡足类生物是的测算[J].水生生物学集刊,7(3):397-408.
[14] 陈昌齐.1991.湖、库有效营养因子统计分析[J].湛江水产学院学报,11(2):11-14.
[15] 李传红,黄水祥,彭俊杰,等.2004.惠州西湖富营养化现状评价及治理对策[J].生态科学,23(2):156-制湖泊富营养化吗[J]?湖泊科学,12(3):269-279. |
[1] |
. [J]. Ecological Science, 2019, 38(2): 199-205. |
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