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浙江横山水库浮游植物群落结构特征及其影响因子

杨亮杰1,余鹏飞1,竺俊全1**,徐镇1,吕光汉2,金春华1   

  1. (1宁波大学教育部应用海洋生物技术重点实验室, 浙江宁波 315211; 2宁波市原水集团有限公司横山水库分公司, 浙江宁波 315211)
  • 出版日期:2014-02-18 发布日期:2014-02-18

Community structure characteristics of phytoplankton and related affecting factors in Heng-shan Reservoir, Zhejiang, China.

YANG Liang-jie1, YU Peng-fei1, ZHU Jun-quan1, XU Zhen1, LU Guang-han2, JIN Chun-hua1   

  1. (1Ministry of Education Key Laboratory of Applied Marine Biotechnology, Ningbo University, Ningbo 315211, Zhejiang, China; 2Ningbo Raw Water Group Co., Ltd. Hengshan Reservoir Branch, Ningbo 315211, Zhejiang, China)
  • Online:2014-02-18 Published:2014-02-18

摘要: 为揭示横山水库浮游植物群落结构特征及其与水质环境因子的关系, 于2011年3月至2012年2月, 逐月对横山水库4个站点浮游植物种类组成、丰度与生物量以及12项水质理化指标进行了调查分析.结果表明: 共鉴定出浮游植物246种, 隶属于7门78属, 主要优势种有变异直链藻、颗粒直链藻、梅尼小环藻、美丽星杆藻、尖针杆藻、短小曲壳藻、镰形纤维藻、湖生颤藻、啮蚀隐藻、尖尾蓝隐藻、细胶鞘藻和铜绿微囊藻等, 优势种的季节更替明显. 全年浮游植物丰度及生物量分别为0.51×105~14.22×105 ind·L-1及0.07~1.27 mg·L-1; 全年Margalef指数、Pielou指数及Shannon指数分别为1.10~3.33、0.26~0.81及0.51~2.38. 横山水库浮游植物群落结构变化规律为春季硅-隐藻型、夏季蓝-绿藻型、秋季硅藻型、冬季硅-隐藻型.典范对应分析(CCA)表明, 温度、透明度、化学需氧量和pH与横山水库浮游植物群落结构关系最为密切.水质评价显示, 横山水库水质处于α中污, 营养水平为中营养.

Abstract: In order to reveal the community structure characteristics  of phytoplankton and the relationships with environmental factors in Hengshan Reservoir, the phytoplankton species composition, abundance, biomass and 12 environmental factors at 4 sampling sites were analyzed from March 2011 to February 2012. A total of 246 phytoplankton species were identified, which belong to 78 genera and 7 phyla. The dominant species were Melosira varians, M. granulate, Cyclotella meneghiniana, Asterianella formosa, Synedra acus, Achnanthes exigua, Ankistrodesmus falcatus, Oscillatoria lacustris, Cryptomonas erosa, Chroomonas acuta, Phormidium tenue and Microcystis aeruginosa, etc. Seasonal variations of species were obvious. The annual abundance and biomass of the phytoplankton were 0.51×105-14.22×105 ind·L-1 and 0.07-1.27 mg·L-1, respectively. The values of the Margelef index, Pielou index and Shannon index of the phytoplankton community were 1.10-3.33, 0.26-0.81 and 0.51-2.38, respectively. The phytoplankton community structure was of Bacillariophyta-Cryptophyta type in spring and winter, of Chlorophyta-Cyanophyta type in summer, and of Bacillariophyta type in autumn. Canonical correlation analysis (CCA) showed that temperature, transparency, chemical oxygen demand and pH had the closest relationships with the phytoplankton community structure in the reservoir. Water quality evaluation showed that Hengshan Reservoir was in α secondary pollution with a mesotrophic level.