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1.
大型底栖动物是湖泊生态系统的重要生物类群,在生态系统物质循环和能量流动中起着重要作用。底栖动物具有生命周期长、迁移能力较弱、对环境变化反应敏感等特点,可有效指示湖泊生态系统的健康状况。湖北省是我国淡水湖泊分布最密集的区域之一,湖泊总面积为3025 km2。近年来,伴随着工农业、养殖业及城市化的快速发展,富营养化已成为本地区湖泊面临的一个主要环境问题,并可能直接影响大型底栖动物的群落结构。目前关于本地区湖泊大型底栖动物群落的研究还较少,为此本研究对湖北省27个浅水湖泊底栖动物进行了调查,并对水质状况进行生物学评价。共采集到底栖动物40种,隶属于4门7纲18科,其中寡毛类5种,摇蚊幼虫16种,软体动物双壳类4种、腹足类8种。霍甫水丝蚓(Limnodrilus hoffmeisteri)、苏氏尾鳃蚓(Branchiura sowerbyi)、花翅前突摇蚊(Procladius choreus)、中国长足摇蚊(Tanypus chinensis)、多巴小摇蚊(Microchironomus tabarui)及铜锈环棱螺(Bellamya aeruginosa)是本地区湖泊最常见的种类。所调查湖泊底栖动物平均密度为32~1243 ind·m-2,其中12个湖泊密度低于200 ind·m-2,摇蚊幼虫和寡毛类对密度的贡献较大,以摇蚊幼虫占优势的湖泊有19个。底栖动物平均生物量为0.034~460.7 g·m-2,生物量低于50 g·m-2的湖泊数量最多(19个),软体动物占优势的湖泊有16个,摇蚊幼虫和寡毛类占优势的湖泊数量共11个。各湖泊底栖动物物种数为3~14种,Margalef指数为0.71~2.33,Simpson指数为0.69~0.85,Shannon-Wiener为0.78~2.13,Spearman相关性分析结果显示物种丰富度和三种多样性指数与湖泊面积呈显著正相关。BI(Hilsenhoff生物指数)评价结果显示共11个湖泊为一般和轻度污染(6.01~7.44),中度污染湖泊数量为13个(7.57~8.47),长湖(8.52)、上津湖(8.65)和玉湖(8.50)处于重污染状态。  相似文献   
2.
宁波东钱湖大型底栖动物群落动态及水质生物学评价   总被引:1,自引:0,他引:1  
2009年4月—2010年1月,对东钱湖大型底栖动物群落结构及空间分布格局进行了季度调查,并对其环境状况进行生物学评价.共记录底栖动物3门4纲28属30种,其中寡毛类5种、水生昆虫18种、软体动物7种.底栖动物密度、生物量和群落周年次级生产量分别为1 233 m-2、8.0 g/m2(以湿质量计)和35.3 g/(m2.a)(P/B系数法估算),单因素方差分析显示,秋、冬季显著高于春、夏季.东钱湖底栖动物优势种为红裸须摇蚊、长跗摇蚊、菱跗摇蚊和霍甫水丝蚓,红裸须摇蚊为冬季单一优势种.依据底栖动物密度的多维序列分析,可将东钱湖分为4个湖区.基于GIS平台,运用克里格插值法,构建动物参数及BI(Hilsenhoff生物指数)的空间分布格局,显示东钱湖底栖动物群落具有较强的空间异质性:摇蚊幼虫多分布在谷子湖及中部湖区,而软体动物主要聚集在中部偏西南及北部湖区.BI评价结果表明,东钱湖的整体水质为中度污染(BI为7.58),其在时空上有较大差异.其中,2009年4、7、9月为轻度污染(BI为6.66~7.33),2009年11月—2010年1月为中度污染(BI为8.32~8.39);在空间尺度上,中部及北湖偏东部湖区污染较轻,其次为谷子湖及五里塘湖区,南湖偏南部湖区污染较重.  相似文献   
3.
Armoring of streambanks is a common management response to perceived threats to adjacent infrastructure from flooding or erosion. Despite their pervasiveness, effects of reach‐scale bank armoring have received less attention than those of channelization or watershed‐scale hydromodification. In this study, we explored mechanistic ecosystem responses to armoring by comparing conditions upstream, within, and downstream of six stream reaches with bank armoring in Southern California. Assessments were based on four common stream‐channel assessment methods: (1) traditional geomorphic measures, (2) the California Rapid Assessment Method for wetlands, (3) bioassessment with benthic macroinvertebrates, and (4) bioassessment with stream algae. Although physical responses varied among stream types (mountain, transitional, and lowland), armored segments generally had lower slopes, more and deeper pools and fewer riffles, and increased sediment deposition. Several armored segments exhibited channel incision and bank toe failure. All classes of biological indicators showed subtle, mechanistic responses to physical changes. However, extreme heterogeneity among sites, the presence of catchment‐scale disturbances, and low sample size made it difficult to ascribe observed patterns solely to channel armoring. The data suggest that species‐level or functional group‐level metrics may be more sensitive tools than integrative indices of biotic integrity to local‐scale effects.  相似文献   
4.
本研究尝试采用我国已有的季风气候区底栖动物观测值(O)/期望值(E)比值模型,在无足够数量参照样点的情况下,建立淮河流域O/E指数健康评价指标体系,评价淮河流域典型水体底栖动物物种组成完整性现状.于2014年夏季(8月)和秋季(11月)分别调查了淮河流域20和25个典型水体的底栖动物和水质指标.O/E模型评价结果表明,监测点位在PC(Probabilities of Capture)0和PC≥0.5条件下,夏季和秋季的物种期望丰富度分别约为25和9.所有25个点位中,仅1个点位为健康,其余为一般或较差;模型控制自然梯度后O/E0和O/E50值均没有显著的季节性差异(p=0.565和0.229).环境胁迫因子(TN、EC、CODCr和p H)和土地覆盖数据(水体比例、湿地比例、裸地比例、森林比例和草地比例)对秋季O/E50和O/E50-null的解释量高于夏季,TN是能够解释淮河流域典型水体夏季O/E指数变异最多的环境因子,p H和CODCr是能够解释秋季O/E指数变异最多的环境因子.研究表明,在缺少有效参照点位构建评价指标体系的情况下,在淮河流域应用已经构建的季风气候区底栖动物O/E指数模型进行健康评价是比较可靠的方法.  相似文献   
5.
The condition of 25 stream sites in the Yakima River Basin, Washington, were assessed by the U.S. Geological Survey's National Water-Quality Assessment Program. Multimetric condition indices were developed and used to rank sites on the basis of physical, chemical, and biological characteristics. These indices showed that sites in the Cascades and Eastern Cascades ecoregions were largely unimpaired. In contrast, all but two sites in the Columbia Basin ecoregion were impaired, some severely. Agriculture (nutrients and pesticides) was the primary factor associated with impairment and all impaired sites were characterized by multiple indicators of impairment. All indices of biological condition (fish, invertebrates, and algae) declined as agricultural intensity increased. The response exhibited by invertebrates and algae suggested a threshold response with conditions declining precipitously at relatively low levels of agricultural intensity and little response at moderate to high levels of agricultural intensity. This pattern of response suggests that the success of mitigation will vary depending upon where on the response curve the mitigation is undertaken. Because the form of the community condition response is critical to effective water-quality management, the National Water-Quality Assessment Program is conducting studies to examine the response of biota to gradients of land-use intensity and the relevance of these responses to water-quality management. These land-use gradient pilot studies will be conducted in several urban areas starting in 1999.  相似文献   
6.
Abstract: A predictive model (RIVPACS‐type) for benthic macroinvertebrates was constructed to assess the biological condition of 1,087 streams sampled throughout the eastern United States from 1993‐2003 as part of the U.S. Geological Survey’s National Water‐Quality Assessment Program. A subset of 338 sites was designated as reference quality, 28 of which were withheld from model calibration and used to independently evaluate model precision and accuracy. The ratio of observed (O) to expected (E) taxa richness was used as a continuous measure of biological condition, and sites with O/E values <0.8 were classified as biologically degraded. Spatiotemporal variability of O/E values was evaluated with repeated annual and within‐site samples at reference sites. Values of O/E were regressed on a measure of urbanization in three regions and compared among streams in different land‐use settings. The model accurately predicted the expected taxa at validation sites with high precision (SD = 0.11). Within‐site spatial variability in O/E values was much larger than annual and among‐site variation at reference sites and was likely caused by environmental differences among sampled reaches. Values of O/E were significantly correlated with basin road density in the Boston, Massachusetts (p < 0.001), Birmingham, Alabama (p = 0.002), and Green Bay, Wisconsin (p = 0.034) metropolitan areas, but the strength of the relations varied among regions. Urban streams were more depleted of taxa than streams in other land‐use settings, but larger networks of riparian forest appeared to mediate biological degradation. Taxa that occurred less frequently than predicted by the model were those known to be generally intolerant of a variety of anthropogenic stressors.  相似文献   
7.
We used invertebrate bioassessment, habitat analysis, geographic information system analysis of land use, and water chemistry monitoring to evaluate tributaries of a degraded northeast Nebraska, USA, reservoir. Bimonthly invertebrate collections and monthly water chemistry samples were collected for two years on six stream reaches to identify sources contributing to reservoir degradation and test suitability of standard rapid bioassessment methods in this region. A composite biotic index composed of seven commonly used metrics was effective for distinguishing between differentially impacted sites and responded to a variety of disturbances. Individual metrics varied greatly in precision and ability to discriminate between relatively impacted and unimpacted stream reaches. A modified Hilsenhoff index showed the highest precision (reference site CV = 0.08) but was least effective at discriminating among sites. Percent dominance and the EPT (number of Ephemeroptera, Plecoptera, and Trichoptera taxa) metrics were most effective at discriminating between sites and exhibited intermediate precision. A trend of higher biotic integrity during summer was evident, indicating seasonal corrections should differ from other regions. Poor correlations were evident between water chemistry variables and bioassessment results. However, land-use factors, particularly within 18-m riparian zones, were correlated with bioassessment scores. For example, there was a strong negative correlation between percentage of rangeland in 18-m riparian zones and percentage of dominance in streams (r 2 = 0.90, P < 0.01). Results demonstrate that standard rapid bioassessment methods, with some modifications, are effective for use in this agricultural region of the Great Plains and that riparian land use may be the best predictor of stream biotic integrity.  相似文献   
8.
利用大型底栖动物的群落结构及其行为反应对有毒化合物——浮选剂污染河段水质进行评价,并提出了受浮选剂污染的污水生物系统评价标准.结果表明,主要污染物丁基磺药对涡虫(Dugesia gonocephala)的24h LC_51为78ppm.根据受污河段底栖动物群落的变化和涡虫在各断面河水中的行为反应,浮选剂污水生物系统可以划分成α-多污带,β-多污带,α-中污带,β-中污带和寡污带。并对所提出的浮选剂污水生物系统进行了讨论。  相似文献   
9.
松花江下游底栖动物群落结构与水质生物学评价   总被引:10,自引:6,他引:10  
1999-2005年对松花江下游江南屯断面及支流梧桐河断面进行了11次底栖动物生态调查.调查期间共发现底栖动物39种,其中水生昆虫21种,软体动物12种,环节动物4种,甲壳动物2种.江南屯与梧桐河底栖动物的种类组成呈现显著差异,在发现的39种底栖动物中,仅有14种于两断面都有分布.分布于江南屯断面的主要底栖动物及其出现率为:纹石蚕100%,箭蜓80%,黑龙江短沟蜷80%,钩虾80%,二尾蜉60%,细蜉60%,灯蛾蜉60%,东北田螺60%.分布于梧桐河断面的主要底栖动物及其出现率为:黑龙江短沟蜷100%,东北田螺100%,扁蛭100%,珍珠蚌60%.从栖息密度来看,梧桐河断面中软体动物密度最大, 优势种为东北田螺,江南屯断面则以水生昆虫占优势.此外,两断面的底栖动物数量在不同年份也存在显著变化.水质生物学评价结果表明,梧桐河断面多年处于中污染状态,江南屯断面的污染状况在总体上较梧桐河断面轻,这主要是由于梧桐河断面高负荷的耗氧有机物引起水体中溶解氧含量匮乏,从而导致底栖动物的生存条件严重恶化.  相似文献   
10.
庐山地区底栖大型无脊椎动物耐污值与水质生物学评价   总被引:33,自引:0,他引:33  
自1996年至1999年,对庐山自然保护区22个采样点的底栖大型无脊椎动物进行了调查.完成了庐山底栖大型无脊椎动物大多数科与部分属的耐污值核定工作,在Hilsenhoff(1988)与Lenat(1993)工作基础上,新增73科的耐污值.首次提出了蜚蠊目B1attodea、脉翅目Neuroptera、半翅目Hemiptera及鞘翅目Coleoptera水生类群的耐污值.其它主要水生昆虫11个目,凡在中国有分布记录或可能在中国及邻近地区有分布的科均收入并提出耐污值.摇蚊科中国常见的16属引用了Lenat(1994)推荐的耐污值,增加了甲壳纲Crustacea、寡毛纲O1igochaeta、腹足纲Gastropoda、腮瓣纲Lemellibranchia、蛭纲Hirudinea、涡虫纲Turbellria与蜱螨纲Acarina水螨总科Hydrachnoidea等的耐污值.利用上述耐污值系统,对22个采样点中的13个进行了连续水质生物监测,对其余9个采样点水质进行了评估.1996年5月至1999年9月期间,13个采样点水质由重污染至极清洁排序可分6类:如琴湖、东谷溪流、电站水库属重污染水体;天桥由轻污染至重污染;2级站、1级站、3级站由很清洁或清洁至一般;芦林湖、电站水库南支流很清洁;黄龙潭由很清洁至轻污染;三叠泉、第四纪冰川遗址、大月山水库为极清洁.多数采样点1996年11月水质好于5月份的水质.1999年所有采样点水质均比1996年2次调查时差,说明庐山水质污染呈加重趋势.图2表2参18  相似文献   
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