太湖流域春季底栖动物群落结构特征及水质评价
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上海海洋大学农业部水产种质资源与利用重点开放实验室,北京师范大学生物多样性与生态工程教育部重点实验室 北京,上海海洋大学农业部水产种质资源与利用重点开放实验室,上海海洋大学农业部水产种质资源与利用重点开放实验室,上海海洋大学农业部水产种质资源与利用重点开放实验室,北京师范大学生物多样性与生态工程教育部重点实验室 北京,上海海洋大学农业部水产种质资源与利用重点开放实验室

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国家水体污染控制与治理科技重大专项(2008ZX07526-001);农业部淡水生物多样性保护与利用重点开放实验室开放课题(LFBCUO711);上海高校知识服务平台上海海洋大学水产动物遗传育种中心(ZF1206)


Community structure of zoobenthos in spring and their application to bioassessment of water quality in Taihu Lake Watershed
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Key laboratory of aquatic Genetic Resource and Aquacultural Ecosystem Certificated of Agriculture, Shanghai Ocean University,Key Laboratory for Biodiversity Science and Ecological Engineering, Ministry of Education, College of Life Sciences, Beijing Normal University,Shanghai Ocean University,Key laboratory of aquatic Genetic Resource and Aquacultural Ecosystem Certificated of Agriculture, Shanghai Ocean University,Key laboratory of aquatic Genetic Resource and Aquacultural Ecosystem Certificated of Agriculture, Shanghai Ocean University,Key Laboratory for Biodiversity Science and Ecological Engineering, Ministry of Education, College of Life Sciences, Beijing Normal University,Key laboratory of aquatic Genetic Resource and Aquacultural Ecosystem Certificated of Agriculture, Shanghai Ocean University

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    摘要:

    2010年春季对太湖流域14个湖泊、7座水库及8条河流的底栖动物进行了调查。共调查到底栖动物57种,隶属4门、8纲,其中水生昆虫(17种)和寡毛类(15种)物种数最多。霍甫水丝蚓为整个流域的绝对优势种。聚类分析表明,可将29个水体的底栖动物划分为10种群落类型,其中霍甫水丝蚓在15个水体中占绝对优势,铜锈环棱螺为5个水体的第一优势种。底栖动物平均密度和生物量分别为2 741.2个/m2和47.2 g/m2,寡毛纲在密度中占绝对优势(90.9%),双壳纲和腹足纲在生物量中占93.4%。密度河流最高、水库最低;生物量湖泊最高、水库最低,底栖动物类群数量组成水体类型间差异明显。物种多样性与丰富度和均匀度均显著相关,但更多地受均匀度的影响。水库、湖泊的Shannon多样性、物种丰富度、均匀度指数均显著高于河流,物种数差异接近显著水平。养殖型湖泊底栖动物密度显著高于非养殖型湖泊,生物量、Shannon和均匀度指数相反。Wright指数显示,太湖流域水库水质多处在清洁—轻污染等级,Shannon和BPI指数说明绝大多数湖泊和河流处在中—重污染水平。

    Abstract:

    The macrozoobenthic assemblages in 7 reservoirs,8 rivers,and 14 lakes of Taihu Lake Watershed were investigated in May,2010.Totally,57 species,belonging to 8 classes,representatives of 4 phyla,were collected.Of those,Insecta(17 species)and Oligochaeta(15 species)were the most abundant in species number.As a whole,the zoobenthic assemblage in this watershed was predominated by Limnodrilus hoffmeisteri.According to cluster analysis(CA),there existed 10 community types in the selected 29 water bodies,15 of which were prevailed by L.hoffmeisteri and 5 of which by Bellamya aeruginosa.The mean density and biomass in the whole basin were 2741.2 ind/m2 and 47.2 g/m2,respectively.Oligochaeta was predominant in density(about 91%),and Bivalvia together with Gastropod contributed about 93% of the total biomass.Among the different water body types,there were marginally significant or conspicuous differences in density with the maximum for river and the minimum for reservoir,and in biomass with the maximum for lake and the minimum for reservoir.Meanwhile,the numerical composition of macrozoobenthic groups(i.e.at the taxonomic level of class)differed obviously between the water body types.Although Shannon-Weaver diversity index(H′)was conspicuously correlated with richness(species number,S),H′ was more strongly governed by evenness(J).H′,J,and Margalef species richness(R)in lake and reservoir were all significantly higher than those in river,respectively,and S did marginally conspicuously.The density in lakes with practice of aquaculture was significantly higher than in ones without.The reverse were found for biomass,H′,and J.According to BPI index and H′,the most stations of lake and river were moderately or seriously polluted,and the most reservoirs were clear or slightly polluted based on Wright index.

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陈丽平,高 欣,牛翠娟,何培民,刘其根,孙月娟,胡忠军.太湖流域春季底栖动物群落结构特征及水质评价[J].水产学报,2013,37(11):1679~1688

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  • 收稿日期:2013-03-28
  • 最后修改日期:2013-09-18
  • 录用日期:2013-11-12
  • 在线发布日期: 2013-11-27
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