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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.
浦阳江底栖动物群落特征与水质生物评价   总被引:1,自引:0,他引:1  
调查了浦阳江流域26个样点的水体物理化学属性和大型底栖无脊椎动物群落结构,并采用Shannon-Wiener多样性指数和生物指数(BI)评价浦阳江水质.共获得4门7纲17目56科104属123个底栖动物分类单元,其中水生昆虫的物种丰富度和个体数均最高,细蜉属(Caenis)为第一优势种,集食者与中性类群的物种丰富度和个体数分别在功能摄食类群和耐污-敏感类群中最高.Shannon-Wiener多样性指数与化学需氧量(COD_(Cr))(r=-0.515,P=0.007)、总磷(TP)(r=-0.665,P=0.000)极显著负相关;BI与COD_(Cr)(r=0.406,P=0.040)显著正相关,与TP(r=0.704,P=0.000)极显著正相关.典范对应分析(CCA)结果表明,TP、Zn、COD_(Cr)、水温(WT)和p H是影响浦阳江流域底栖动物群落结构的主要环境变量,蜉蝣目和寡毛类是该地区环境变化的主要指示生物类群.Shannon-Wiener多样性指数和BI评价结果表明,浦阳江水体生态质量总体为轻污染或中污染,干流河段略优于支流河段,其中上游点位为清洁水平,少数重污染点位出现在中下游河段上.本研究表明水污染是决定浦阳江底栖动物群落组成和结构变化的重要环境问题因子,降低水体中TP和COD_(Cr)等污染物浓度将有助于浦阳江底栖动物群落的恢复.  相似文献   

3.
武汉莲花湖是典型的富营养化城市浅水湖泊.通过对其进行16mo的监测后发现,治理后的小莲花湖比大莲花湖水质有明显改善.监测期间小莲花湖底栖动物密度和生物量均值明显高于大莲花湖,Shannon多样性指数与Margalef多样性指数也高于大莲花湖.将大、小莲花湖的10种环境因子和底栖动物密度进行典型相关分析后,发现总磷、温度、总氮、叶绿素a、氨离子是对底栖动物群落具有显著性影响的环境因子.图8表3参20.  相似文献   

4.
入海河口受到海水、淡水以及人类活动的共同影响,生境复杂,其区域的底栖动物群落结构的变化能表征入海河口的环境变化以及人类活动的强度.对2010年4月(春季)、7月(夏季)和10月(秋季)椒江口海域大型底栖动物数量与多样性的分布特征开展研究,并分别用多样性指数法和丰度/生物量曲线比较法(ABC曲线)探讨底栖动物群落受污染扰动的程度.结果显示:椒江口海域3个季节共采集大型底栖动物60种,其中多毛类和软体动物是该海域的主要类群.季节分布上,春季种类数、丰度、生物量以及各项多样性指数均明显低于夏季和秋季.最高丰度(187.11个/m2)和最高生物量(69.82 g/m2)分别出现在夏季和秋季.空间分布上,底栖动物种类数、丰度、多样性指数和丰富度指数各季均呈现近岸站位明显低于大陈岛附近站位的现象;夏季和秋季,生物量在S7和S8号站附近形成一个明显的高值区,其中S8在秋季生物量达到913.63 g/m2;均匀度指数则分布较均匀.本研究表明,椒江口海域大型底栖动物数量与多样性的分布特征与多毛类的分布特点密切相关,多样性指数法和ABC曲线法对群落受污染扰动程度的评价结果截然相反.  相似文献   

5.
2020年12月在深圳市城市区域典型生境特征溪流——城市山区源头溪流金龟河、国家地质公园保护区入海溪流杨梅坑河与黑臭水体治理后溪流石溪河,开展底栖动物多样性与生境质量状况取样,通过多元统计分析探明各溪流底栖动物群落结构差异及其主要环境影响因子.结果表明:(1)金龟河底质异质性(SI)最高;杨梅坑河水质最好且流态异质性(Fr)最优,石溪河水质最差且底质异质性(Fr)最低.(2)共采集鉴定大型底栖动物118个分类单元,隶属于3门6纲14目87科.水生昆虫均占绝对优势,其中金龟河67属(81.7%),杨梅坑河62属(95.4%),石溪河12属(52.2%).金龟河中底栖动物Shannon-Wiener多样性指数、改进的Shannon-Wiener多样性指数、Pielou均匀度均高于杨梅坑河与石溪河.(3)金龟河的主要功能摄食类群是滤食者(45.5%),杨梅坑河(38.3%)与石溪河(58.7%)的主要功能摄食类群均为收集者.(4)冗余分析(RDA)结果显示,氨氮、海拔、湿宽、水温、溶氧、底质异质性(SI)、电导率和流态异质性(Fr)为影响深圳市溪流的大型底栖动物群落结构的主要环境因子.研究表明:(1)深圳市的山区溪流可作为深圳市生物多样性保护的重点区域.(2)在城市溪流生态系统中,水环境化学因子并非为主要影响因子,生境多样性发挥了重要作用.(图6表3参43)  相似文献   

6.
富营养浅湖水生植被重建对底栖动物的影响   总被引:16,自引:1,他引:16  
利用在极富营养型的浅水湖泊所建立的大型实验围隔系统,对水生植被恢复后底栖动物群落的变化作了为期3a的研究.4个围隔和大湖对照点共采集到底栖动物38种,Ⅰ、Ⅱ和Ⅲ号围隔人工恢复沉水植被后,水质得到明显的改善,底栖动物群落结构发生明显的变化:其种类项目、个体密度和生物量增加,软体动物重新出现,生物多样性提高.对底栖动物与水生植物之间的相互关系也作了探讨.  相似文献   

7.
为探究汾河上中游流域大型底栖动物群落特征,研究了汾河上中游流域17个采样点位的大型底栖动物物种组成、空间分布、与水质环境因子的关系及其多样性.研究结果表明,汾河上中游流域共鉴定出大型底栖动物4门6纲25科,共37(属)种,且不同采样点位大型底栖动物的种类、生物密度和生物量具有明显的空间异质性;水质环境因子对汾河上中游流域大型底栖动物的影响大小排序为DOTPCONNH_3-NTNpHBOD_5,不同种类大型底栖动物的主要水质影响因子不同;汾河上中游流域17个采样点中,大型底栖动物多样性最好为"一般"等级,占总采样点位的29%,"较差"等级采样点位占41%,"差"等级采样点位占30%,汾河上中游流域大型底栖动物的多样性综合评价为"较差"等级.  相似文献   

8.
北京河流大型底栖动物空间格局及其环境响应研究   总被引:2,自引:0,他引:2  
大型底栖动物群落结构及多样性对于区域河流环境状况具有重要的指示意义。基于2014年5月—2015年8月间北京市河流大型底栖动物群落结构调查数据,分析底栖动物的生物多样性特征和空间格局。调查共发现大型底栖动物151种(或分类单元),隶属于5门9纲67科127属,水生昆虫占绝对优势。聚类分析表明76个采样点可被分为4组,组1主要包含北部山区的潮白河水系,具有较为典型的山溪型河流底栖动物特征,组2主要包含永定河山峡段和北运河水系的清河,组3主要包含大清河水系和北运河水系的温榆河、北沙河、南沙河等,二者具有城市河流兼有山溪型河流底栖动物的特征,组4主要包含北运河水系,具有典型的城市河流底栖动物特征。优势种分析表明:组1的优势种为热水四节蜉(Baetis thermicus)、秀丽白虾(Exopalaemon modestus)和网栖石蛾(Cheumatopsyche sp.),组2为直突摇蚊(Orthocladius sp.)、钩虾(Gammarus sp.)和长足摇蚊(Tanypus sp.),组3为摇蚊科幼虫(larvae of Chironomidae)和寡毛类(Oligochaeta),组4是以中华摇蚊(Chironomus sinicus)为代表的摇蚊幼虫。功能摄食类群研究表明:组1以收集者和滤食者占绝对优势,相对丰度分别为60%和29.6%;组2、组3、组4均以收集者占绝对优势,相对丰度分别为97.7%、90%、97.5%。物种数、Shannon-Wiener多样性指数、Pielou均匀度指数和Margalef丰富度指数的组间差异性显著(P0.05)。研究表明,北京河流大型底栖动物受河流自然环境变化的影响显著,形成了典型的山区-城市底栖动物空间格局,山区河流中保持了较高的生物多样性,城市河流及其过渡区的大型底栖动物退化明显,大型底栖动物能够明显指示环境状况的变化并可指导河流环境的保护与恢复。  相似文献   

9.
河流水文形貌特征,作为决定物理生境的重要因子,与大型底栖动物群落关系密切。了解水文形貌特征对大型底栖动物的影响,对于完善环境因子对大型底栖动物群落影响研究具有重要意义。论文以滇池流域大型底栖动物群落为研究对象,旨在识别与流域大型底栖动物群落结构变化密切相关的河道水文形貌因子和河岸带水文形貌因子,并解析两类因子对底栖群落的相对影响。基于2012─2013年滇池流域55个河段大型底栖动物群落和水文形貌变量数据,利用典范对应分析(Canonical correspondence analysis,CCA)和偏典范对应分析(Partial canonical correspondence analysis,p CCA)识别影响大型底栖动物群落结构的关键因子并探讨河道水文形貌和河岸带水文形貌因子的相对重要性。结果显示,影响大型底栖动物群落结构的关键河道水文形貌因子为底质组成、河道人工化情况、河道坡降和水温,总解释量为21.6%;影响大型底栖动物群落结构的关键河岸带水文形貌因子为林地比例和其它用地比例,总解释量为9.2%。研究结果表明,河道水文形貌因子比河岸带水文形貌因子对于大型底栖动物群落结构特征的影响更为重要,这对于提高湖泊流域生物监测水平、优化水生态系统健康评价和保护底栖动物多样性具有重要意义。  相似文献   

10.
利用大型底栖动物进行河流生态系统健康评价是一种有效且能够综合反映河流生态系统变化的生物评价方法,对于河流监测、管理与保护具有重要指导作用.2014年7月和2015年7月对新疆伊犁河支流喀什河和巩乃斯河共17个样点的大型底栖动物群落进行调查分析,共采集大型底栖动物19 735头,分10目39科81属(种),其中水生昆虫、软体动物和寡毛类分别占93.8%、2.5%和3.7%.采用Shannon-Wiener指数、Pielou指数、Margalef指数、BMWP记分系统和ASPT记分系统对伊犁河进行水质健康评价.结果表明伊犁河河流健康状况整体较好,但不同河段间的水质健康等级差异较大.其中喀什河水质健康等级为亚健康和健康的河段占35.6%,差与极差的河段占20.0%;巩乃斯河水质健康等级为亚健康和健康的河段占84.0%,不存在健康等级为差和极差的样点.其中ASPT记分系统和Pielou指数评价结果在灵敏度上稍差,ShannonWiener指数、Margalef指数和BMWP记分系统更适合伊犁河地区的水质生物评价.  相似文献   

11.
Macrobenthic communities are an important part of aquatic ecological system in the Yangtze River. Studies on macrobenthic community structure and diversity have important significance for development and protection of water resources in the Yangtze River. In this research, macrobenthic communities and their habitat in the Jiangsu Reach of the Yangtze River were investigated at 17 sites in May and September of 2013. Shannon-wiener diversity index was used to assess the diversity of macrobenthic communities. The results showed that there were 36 species at these 17 sites; the abundance and diversity of macrobenthic community were the highest in the Nanjing Reach and the Changzhou Reach, the lowest in the Nantong Reach of the Yangtze River. Nephthys sp., Grandidierella chaohuensis sp., Gammarus sp., Tubifex sp. and Limnodrilus hoffmeisteri were the dominant taxa in the Jiangsu Reach of the Yangtze River. Cluster analysis based on species abundance yielded four groups among the 17 sites. One-way analysis of similarity (ANOSIM) suggested significant differences in macrobenthic community structure among the four groups (P < 0.05). The results indicated that factors including aquatic plants, water flow velocity, sediment types and channels can influence the distribution and diversity of macrobenthic communities in the Jiangsu Reach of the Yangtze River.  相似文献   

12.
大型底栖无脊椎动物是河流生态系统的重要组成生物,具有活动范围相对固定、生命周期较长、生活习性相对稳定等特点,可有效指示河流水质和水生态系统健康状况。有关大型底栖生物群落结构特征及其与水环境之间的关系研究一直是河流生态系统的研究热点。底栖动物具有较强的地域性,其群落结构特征受当地的自然环境特征和社会经济发展程度的双重因素影响。为研究典型平原河网地区的底栖动物群落结构及对水环境状况的响应特征,在上海市选取了83个河道断面进行大型底栖动物采样分析,共获取底栖动物20个分类单位(种),其中软体动物10种,环节动物6种,节肢动物4种。上海河道底栖动物群落结构总体呈现结构单一、物种丰富度低、高度耐污性等显著特征,环节动物的栖息密度和出现频率均最高。城市化水平的空间差异性直接影响底栖动物空间分布的异质性,由市区至近郊、远郊,物种数从11种逐渐上升至15种,而栖息密度则由8 776.3个/m2下降至690.3个/m2。底栖动物群落结构的空间分布特征与水质理化指标的空间分布特征具有良好的对应性,水质空间变化导致环节动物和软体动物、节肢动物的空间分布存在一定交错性,耐污性较强的环节动物主要分布在有机污染重、溶解氧低的市区河道断面,而喜清洁环境的软体动物和节肢动物主要分布在水质较好的郊区断面。寡毛纲物种的栖息密度与溶解氧质量浓度呈显著负相关性。  相似文献   

13.
The effect of catchment land use on water quality and macroinvertebrate communities was examined by using data gathered during a 2004 reconnaissance of nine sites in the Otara Creek, New Zealand. Data collected included macroinvertebrate, water chemistry and sediments characteristics. Macroinvertebrate data were used in metric and index calculations. A total of 61 macroinvertebrate taxa, with 3032 total individuals, were identified from the macroinvertebrates samples collected from nine sites in Otara Creek. The greatest number of macroinvertebrate taxa was recorded within bush sites (mean>25), while the urban sites had the least number of taxa (mean=10). Pasture sites were intermediate with the mean>17. Taxa number differed significantly across land use. Mean macroinvertebrates abundance varied across the sites and land uses. The highest macroinvertebrates mean abundance was recorded in urban and pasture sites, while bush sites had significantly lower mean abundance. Physico-chemical parameters decreased from bush toward urban streams. Biotic indices were sensitive to changes in macroinvertebrates community structure across land uses with mean scores decreasing from bush to urban and pasture streams. Ordination of biological data showed a clear separation of bush from urban and pastures streams. Analysis of similarities revealed significant differences in macroinvertebrates between both stream groups and land-use groups. The observed macroinvertebrate assemblage pattern was best correlated with a single variable, conductivity, temperature, turbidity, nitrate and dissolved oxygen. The combination of these environmental variables best explained the changes in the macroinvertebrate assemblages between sites. This study demonstrates that catchment land use may significantly affect the water quality and macroinvertebrate communities in an ecosystem.  相似文献   

14.
由于受人类活动干扰的加强以及受与长江干流之间"江湖关系"变化的影响,近年来鄱阳湖水生生态系统的状况及变化受到较多关注。对底栖动物群落结构的研究将有助于了解鄱阳湖生态系统结构现状及影响因子,对鄱阳湖保护对策的制定形成有效支撑。2016年7月,对鄱阳湖湖区(分别于鄱阳湖保护区和南矶山保护区)的底栖动物群落结构及相关环境因子进行了调查。调查共发现大型底栖动物27种,隶属于5门8纲,平均密度为48.40 ind.·m-2,其中主要以软体动物门为主;平均生物量为28.12 g·m-2,亦主要由软体动物门贡献。湖区主要优势种为河蚬(Corbicula fluminea)(优势度y=0.0655)、铜锈环棱螺(Bellamya aeruginosa)(y=0.0336)、霍甫水丝蚓(Limnodrilus hoffmeisteri)(y=0.0268)。底栖动物密度、生物量及多样性指数均呈现出鄱阳湖保护区高于南矶山保护区的格局,且二者在群落组成上有明显差异,鄱阳湖自然保护区主要以腹足纲和寡毛纲为主,南矶山自然保护区主要以瓣鳃纲和腹足纲为主。典范对应分析的结果显示,鄱阳湖保护区主要受到高水深、低浊度及高溶氧的影响;南矶山保护区各样点之间群落相似性较差,分别受不同因子的影响,这表明在各区域内部,局域微生境在局域群落结构的塑造上起主要作用,因此该区域内生态系统的保护应适当考虑空间尺度。  相似文献   

15.
Climate change and associated glacial recession create new stream habitat that leads to the assembly of new riverine communities through primary succession. However, there are still very few studies of the patterns and processes of community assembly during primary succession for stream ecosystems. We illustrate the rapidity with which biotic communities can colonize and establish in recently formed streams by examining Stonefly Creek in Glacier Bay, Alaska (USA), which began to emerge from a remnant glacial ice mass between 1976 and 1979. By 2002, 57 macroinvertebrate and 27 microcrustacea species had become established. Within 10 years of the stream's formation, pink salmon and Dolly Varden charr colonized, followed by other fish species, including juvenile red and silver salmon, Coast Range sculpin, and sticklebacks. Stable-isotope analyses indicate that marine-derived nitrogen from the decay of salmon carcasses was substantially assimilated within the aquatic food web by 2004. The findings from Stonefly Creek are compared with those from a long-term study of a similarly formed but older stream (12 km to the northeast) to examine possible similarities in macroinvertebrate community and biological trait composition between streams at similar stages of development. Macroinvertebrate community assembly appears to have been initially strongly deterministic owing to low water temperature associated with remnant ice masses. In contrast, microcrustacean community assembly appears to have been more stochastic. However, as stream age and water temperature increased, macroinvertebrate colonization was also more stochastic, and taxonomic similarity between Stonefly Creek and a stream at the same stage of development was <50%. However the most abundant taxa were similar, and functional diversity of the two communities was almost identical. Tolerance is suggested as the major mechanism of community assembly. The rapidity with which salmonids and invertebrate communities have become established across an entire watershed has implications for the conservation of biodiversity in freshwater habitats.  相似文献   

16.
Jiang L 《Ecology》2007,88(5):1075-1085
I assembled bacterial communities to explore the effects of bacterial diversity on multiple ecosystem functions, including bacterial community biovolume, decomposition of particulate organic matter, and biomass transfer to the next trophic level. The experiment used a two-way factorial design with four levels of bacterial diversity (one to four species) and the absence/presence of a bacterivorous ciliated protist Tetrahymena pyriformis as two main factors, and all possible combinations of the four bacterial taxa nested within each diversity level. Bacterial community biovolume increased as bacterial diversity increased, a result due largely to positive selection effects. Decomposition and consumer abundance, however, were unaffected by bacterial diversity, though both varied among bacterial composition treatments. Negative selection effects, the dominance of species that do not contribute significantly to ecosystem functioning, accounted for the lack of diversity effects on decomposition and consumer abundance. The presence of Tetrahymena reduced bacterial community biovolume but increased decomposition, without altering the diversity-functioning relationships. Decomposition was strongly linked with consumer abundance such that communities supporting larger consumer biomass exhibited higher decomposition rates. This study suggests that if the negative selection effect is common, as it might be when examining ecosystem variables other than biomass (due to the presence of keystone species that can contribute disproportionably to ecosystem functioning relative to their abundances), basic bacteria-mediated ecosystem processes, such as decomposition and energy transfer to the next trophic level, may not increase with bacterial diversity.  相似文献   

17.
Use of Biotic Community Structure as a Measure of Ecological Degradation   总被引:2,自引:0,他引:2  
The benthic macroinvertebrate communities of two lotic aquatic habitats,namely,the Churni River(C-R)and the Jalangi River(J-R)were compared in this study.One lotic aquatic system(C-R)was polluted by organic pollutants due to discharge of unprocessed sewage water,while the other(J-R)was not affected by such pollution.Evaluations of various physico-chemical properties of water,sediment and different macroinvertebrate communities of the two tropical lotic systems were done in a period from January,2002 to December,2003.A long term temporal change in the macroinvertebrate communities was recorded due to increase in sediment rH value.Sediment redox potential affected by the anthropogenic activities was found to be an important factor for alteration of macroinvertebrate communities in these aquatic ecosystems.A positive correlation has been established between rH and Margalef index in this study.Potassium and the total count of coliform bacteria in water showed significantly higher values for the polluted Churni River than those for the Jalangi River.Fig 3,Tab 4,Ref 34  相似文献   

18.
2003年8月采用半定量采样法调查了常州地区太湖流域上游南河、运南、运北和洮滆水系29个样点的大型底栖无脊椎动物群落多样性,共获得113种大型底栖无脊椎动物,其中,腹足纲18种,瓣鳃纲10种,寡毛纲8种,蛭纲4种,甲壳纲6种,昆虫纲67种.优势种为霍甫水丝蚓(Limnodrilus hoffmeisteri)和梨形环棱螺(Bellamya purificata).该群落平均密度为658 m-2,其中,霍甫水丝蚓密度最高,达400 m-2.观山桥样点大型底栖无脊椎动物群落多样性最高,群落物种数、Shannon-Wiener多样性指数、均匀度和生态优势度分别为54,4.36,0.76和0.08.综合分析结果表明,群落多样性从高到低排序依次为南河水系、洮滆水系、运南水系、运北水系.出现频率在15%以上的24个物种与6种环境因子之间的典范对应分析(CCA)结果显示,总氮、总磷和溶解氧对该地区大型底栖无脊椎动物群落多样性的影响较大.  相似文献   

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