RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2015, Vol. 24 >> Issue (06): 978-986.doi: 10.11870/cjlyzyyhj201506012

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PHYTOPLANKTON COMMUNITY VARIATION AND RELATIONSHIP WITH ENVIROMENTAL FACTORS IN QINGSHANHU RESERVOIR, ZHEJIANG PROVINCE

SHENG Hai-yan1,2, YAO Jia-mei2, HE Jian-bo2, LIU Ming-liang2, HAN Yi-cai2, YU Zuo-ming2   

  1. 1. College of Biology and Environment, Nanjing Forestry University, Nanjing 210037, China;
    2. College of Biology and Environment, Hangzhou Institute of Environmental Protection Science, Hangzhou 310014, China
  • Received:2014-05-09 Revised:2014-07-01 Online:2015-06-20

Abstract: Qingshan Reservoir is an important utilization large reservoir which was built in 1964. Its eco-environment and water management have a great significance on sustainable development of this area. With the fast economical development, the water quality has been declined as an amount of pollutants discharged. To explore the characteristics of the phytoplankton community structure and the response of water quality, a survey was carried out quarterly in Qingshan Reservoir in 2009. Based on the analysis of phytoplankton and water samples from inflow, center and dam in Qingshan Reservoir, the characteristics of community structure and abundance distribution were studied, and the water situation was evaluated. Cell number and species identification were performed by light microscope. The dominant population, species diversity and community structure of phytoplankton were determined as well. A total of 89 species in 40 genera and 7 divisions were identified, which the most abundant group was Chlorophyta, with 33 species that account for 37% of total species, followed by Bacillariophyta (27 species), Cyanophyta (17 species), Euglenophyta (6 species), other alges (6 species). The abundance of phytoplankton cells varied from 6.20×105 to 1.18×107 cells/L (averaging 4.88×107 cells/L). The main physical and chemical indicators results showed that the water quality of Qingshan Reservoir was in the light-middle eutrophic state. The trophic state index was higher in inflow than in center and dam sites. The concentrations of total nitrogen and total phosphorus were higher than the surface water quality standards Ⅳ value. The indices of Shannon-Wiener, Margalef and Pielou Evenness were 1.37-2.23 (averaging 1.79), 0.56-1.52 (averaging 1.05) and 0.45-0.77 (averaging 0.64), respectively. The dominant species of each month were identified and their contribution to the total abundance was analyzed. The seasonal variation of phytoplankton community structure was significant. In spring Bacillariophyta, Cryptophyta and Pyrrophyta dominated, in summer Cyanophyta and Chlorophyta dominated, in autumn Cyanophyta, Bacillariophyta and Cryptophyta, and in winter Bacillariophyta and Cryptophyta. The relationship between phytoplankton and environmental factors were discussed. Correlation analysis showed that there was significant negative correlation between phytoplankton density and transparency, inflow, outflow, and significant positive correlation between phytoplankton density and TP. Canonical correspondence analysis (CCA) showed that the inflow, outflow, water temperature, dissolved oxygen and nutrients were important environmental factors affecting the distribution pattern of phytoplankton. Qingshan Reservoir is located in a typical subtropical monsoon climate area, seasonal changes in the density of phytoplankton communities significantly affected by seasonal changes in watershed hydrology, and in particular, rainfall, temperature and hydraulic retention time are the main factors affecting phytoplankton community.

Key words: phytoplankton, eutrophication, canonical correspondence analysis(CCA), enviromental factors

CLC Number: 

  • Q948.1
[1] 张 婷,李 林,宋立荣.熊河水库浮游植物群落结构的周年变化[J].生态学报,2009,29(6):2971-2979.
[2] 申恒伦,徐耀阳,王 岚.丹江口水库浮游植物时空动态及影响因素[J].植物科学学报,2011,29(6):683-690.
[3] COMIN FA,MENENDEZ M,LUCENA J K.Proposal for macrophyte restoration in eutrophic coastal lagoons[J].Hydrobiologia,1990,200/201:427-436.
[4] 陈立婧,吴竹臣,胡忠军,等.上海崇明岛明珠湖浮游植物群落结构[J].应用生态学报,2011,22(6):1599-1605.
[5] PADISÓK J,REYNOLDS C S.Selection of phytoplankton associations in Lake Balaton,Hungary,in response to eutrophication and restoration measures,with special reference to the cyanoprokaryotes[J].Hydrobiologia,1998,384:41-53.
[6] NASELLI-FLORES L.Phytoplankton assemblages in twenty-one Sicilian reservoirs:relationships between species composition and environmental factors[J].Hydrobiologia,2000,424:1-11.
[7] 赵孟绪,雷腊梅,韩博平.亚热带水库浮游植物群落季节变化及其影响因素分析——以汤溪水库为例[J].热带亚热带植物学报,2005,13(5):386-392.
[8] PADISÓK J,CROSSETTI L O,NASELLI-FLORES L.Use and misuse in the application of the phytoplankton functional classification:a critical review with updates[J].Hydrobiologia,2009,621(1):1-19.
[9] 张 芬,杨长明,潘睿捷.青山水库表层沉积物重金属污染特征及生态风险评价[J].应用生态学报,2013,24(9):2625-2630.
[10] 李 瑾,吴 洁,巩 兵,等.浙江青山水库浮游植物群落结构的研究初报[J].浙江农业学报,1998,10(3):122-127.
[11] 落全富,刘国华.青山水库提高蓄水位研究[J].浙江水利水电专科学校学报,2010,22(1):4-6.
[12] 蔡红娟,叶 萍.青山水库2011年梅雨期洪水调度分析[J].浙江水利水电专科学校学报,2012,24(4):25-29.
[13] 楼 燕,李峻雷,王国龙.青山水库水环境质量调查与保护对策[J].环境监测管理与技术,2000,12:26-28.
[14] 王紫雯,陈昌军,蔡胜利.青山水库底泥磷释放与库区水体磷浓度的关系[J].环境污染与防治,2001,23(4):162-164.
[15] 虞左明.青山水库底栖动物群落初步研究[J].环境污染与防治,2001,23(5):229-231.
[16] 吴 洁,王国龙.西湖与青山水库底栖动物群落的研究[J].环境监测管理与技术,2000,12:17-19.
[17] 李 瑾,虞左明,朱 文,等.青山水库的浮游植物与营养类型评价[J].环境污染与防治,1997,19(4):21-23.
[18] 李 瑾,吴 洁,巩 兵,等.浙江青山水库浮游植物群落结构的研究初报[J].浙江农业学报,1998,10(3):122-127.
[19] 国家环境保护总局《水和废水监测分析方法》编委会.水和废水监测分析方法(第四版)[M].北京:中国环境科学出版社,2002.
[20] 黄祥飞.湖泊生态调查观测与分析[M].北京:中国标准出版社,2000.
[21] 胡鸿钧,魏印心.中国淡水藻类——系统、分类及生态[M].北京:科学出版社,2006:23-948.
[22] 中国环境监测总站.湖泊水库富营养化评价方法及分级技术规定[M].北京:中国环境监测总站,2001.
[23] HABIB O A,TIPPET T R.Seasonal changes in phytoplankton community structure in relation to physic-chemical factors in Loch Lomond[J].Hydrobiologia,1997,350:63-79.
[24] 谭 香,夏小玲,程晓莉,等.丹江口水库浮游植物群落时空动态及其多样性指数[J].环境科学,2011,32(10):2875-2882.
[25] ABRANTES N,ANTUNES S C,PEREIRA M J,et al.Seasonal succession of cladocerans and phytoplankton and their interactions in a shallow eutrophic lake(Lake Vela,Portuga1)[J].Acta Oecologica,2006,29:54-64.
[26] 况琪军,马沛明,胡征宇,等.湖泊富营养化的藻类生物学评价与治理研究进展[J].安全与环境学报,2005,4(2):87-91.
[27] SOMMER U,MACIEJ GZ,LAMPERT M,et al.The PEG model of seasonal succession of planktonic events in freshwaters[J].Hydrobiologia,1986,106:433-471.
[28] SOMMER U,ADRIAN R,DOMIS L D S,et al.Beyond the plankton ecology group (PEG) Model:mechanisms driving plankton succession[J].The Annual Review of Ecology,Evolution,and Systematics,2012,43:429-48.
[29] 杜桂森,王建厅,武殿伟,等.密云水库的浮游植物群落结构与密度[J].植物生态学报,2001,25(4):501-504.
[30] REYNOLDS C S.2006.Ecology of phytoplankton[M].New York:Cambridge University Press.
[31] 张 怡,胡 韧,肖利娟,等.南亚热带两座不同水文动态的水库浮游植物的功能类群演替比较[J].生态环境学报,2012,21(1):107-117.
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