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1.
海州湾潮间带大型底栖动物多样性研究   总被引:3,自引:0,他引:3       下载免费PDF全文
2015年10月和11月调查了海州湾潮间带A、B 2个断面的大型底栖动物,共发现大型底栖动物29种,其中A断面发现19种,B断面23种;潮间带大型底栖动物的总平均丰度为1 790 m~(-2),总平均生物量185.11 g/m~2。A、B 2断面的丰度生物量差异较大,主要是由于2个断面底质类型不同造成的。潮间带Shannon-Wiener多样性指数平均值为2.90,波动为2.44~3.45,其沉积物环境存在轻度有机质污染。  相似文献   

2.
连云港市泥砂质潮间带大型底栖动物群落调查   总被引:1,自引:0,他引:1       下载免费PDF全文
于2013年9月对连云港市某泥砂质潮间带3个站位的大型底栖动物进行调查,结果表明,有大型底栖动物57种,其中多毛类23种,甲壳类18种,软体动物10种,其他类群6种。该潮间带大型底栖动物的总平均丰度为2 119.1 m-2,总平均生物量为66.34 g/m2,其中光滑狭口螺(Stenothyra glabar)在高潮带的丰度高达3 082.7 m-2,整个潮间带丰度呈现由高潮带向低潮带逐渐降低的趋势。潮间带Shannon-Wiener多样性指数平均值3.26;整个调查潮间带的沉积物环境较清洁。  相似文献   

3.
于2015—2016年在秦山岛海域开展4个航次的大型底栖动物调查,用优势度指数法和多样性指数法对底栖动物优势种和多样性状况进行评价。结果显示,四季共采集鉴定底栖动物7门69种,其中环节动物25种,软体动物19种,节肢动物16种,棘皮动物3种,脊索动物、纽形动物和腔肠动物各2种;优势种共14种。大型底栖动物种数和密度均值均为春季>秋季>夏季>冬季,生物量均值为夏季>冬季>春季>秋季,密度和生物量的空间分布无明显规律。多样性评价结果表明,秦山岛海域底栖动物群落受到轻度干扰,底栖环境处于轻度污染状态;除人为干扰和环境因子外,种间关系及生活史特征也是影响底栖动物群落结构变化的重要因素。  相似文献   

4.
为了解海州湾潮间带大型底栖动物群落结构,分析人类养殖活动对其影响,于2012-2017年对该区域大型底栖动物进行调查。结果表明:6年间共发现120种大型底栖动物,依据种类组成进行聚类分析可分为4组;调查中总平均丰度为3 495.9 ind./m2,范围为506.7~17 864.0 ind./m2;总平均生物量为197.26 g/m2,范围为1.58~489.17 g/m2。光滑河蓝蛤(Potamocorbula laevis)为第一优势种,其繁殖盛期在每年9-10月。调查期间生物多样性整体呈下降趋势,人类的养殖活动主导着海州湾潮间带大型底栖动物群落结构的变化。  相似文献   

5.
为了探究流溪河大型底栖动物的群落结构特征和关键影响因素,于2016年4月(平水期)、7月(丰水期)和11月(枯水期)对流溪河的14个采样断面进行了生态调查,共鉴定出133种大型底栖动物,隶属于55科127属。大型底栖动物平均密度和生物量分别为213 ind./m2和20.02 g/m2,寡毛类和水生昆虫的密度占优势,软体动物的生物量占优势。此外,结果表明流溪河大型底栖动物群落结构具有明显的时空变化。在空间方面,从上游至下游大型底栖动物种类数呈现逐渐减少的趋势,并且支流的大型底栖动物种类数高于干流;从上游至下游大型底栖动物密度和生物量变化无规律,支流大型底栖动物的密度明显高于干流,而生物量却明显低于干流;上游的大型底栖动物Shannon-Wiener多样性指数和Margalef丰富度指数均高于下游,支流的大型底栖动物Shannon-Wiener多样性指数和Margalef丰富度指数均高于干流,而Pielou均匀度指数是支流低于干流。在时间方面,平水期至枯水期大型底栖动物种类数呈现逐渐增加的趋势;密度分布为平水期>枯水期>丰水期,生物量分布规律与密度相似;Shannon-Wiener多样性指数和Margalef丰富度指数均为枯水期最高,平水期最低。流溪河大型底栖动物群落可划分为干流群落和支流群落,群落间物种组成存在显著性差异。综上结果表明:流溪河支流大型底栖动物群落结构较干游更加稳定,下游断面群落受到了较大程度的干扰,生态环境质量状况较差,影响大型底栖动物群落结构的主要因素为有机质、总磷和溶解氧。  相似文献   

6.
2015年8月,对秦山岛周边的10个站位进行大型底栖动物定量调查。采用生物多样性指数法和丰度生物量比较法对大型底栖动物群落健康状况进行评价。结果显示,共鉴定大型底栖动物7大类31种,其中软体动物、环节动物各10种,节肢动物5种,脊索动物和棘皮动物各2种,纽虫类和腔肠动物各1种;密度优势类群为软体动物,占总密度的35.00%,生物量优势类群为脊索动物,占总生物量的49.35%;优势种分别为红狼牙虾虎鱼(Odontamblyopus rubicundus)、棘刺锚参(Protankyra bidentata)、内卷原盒螺(Eocylichna involuta)和微角齿口螺(Odostomia subangulata)。大型底栖动物密度为站位St.6最大,为115 ind./m2,St.2最小,为20 ind./m2,平均值为70 ind./m2;生物量St.3最大,为197.25 g/m2,St.9最小,为2.56 g/m2,平均值为54.04 g/m2。秦山岛受污染压力、人为活动干扰和生境限制能因素影响,多样性偏低,优势种为耐污的软体动物、脊索动物和棘皮动物,但其主要为K对策种类,大型底栖动物群落受到了轻度干扰,但群落结构仍较为稳定。  相似文献   

7.
长江源区位于青藏高原腹地,对气候变化敏感,存在河流径流增加、湖泊扩张淡化的趋势,研究该区域的水生生物有助于理解气候变化对该区域生态系统的影响。该研究于2017年夏季对长江西源沱沱河、南源当曲以及周围5个典型湖泊(班德湖、雅西措、玛章错钦、格勒措、昂错钦)的底栖动物群落开展调查。湖泊水体盐度为0.96‰~14.72‰,pH为8.89~9.63。结果表明,共采集到大型底栖动物25种,隶属于5纲7目10科。河流的底栖动物平均密度和生物量分别为36个/m2和0.22 g/m2,优势种为恩非摇蚊属;湖泊的底栖动物平均密度和生物量分别为674个/m2和5.35 g/m2,优势种为直突摇蚊属,83.33%的物种为单一湖泊特有。蒙特卡罗置换检验结果表明,影响底栖动物群落的水体环境变量主要包括碱度、总悬浮性固体、浊度、pH、总溶解性固体、盐度和叶绿素a。典范对应分析排序图显示,在长江源区的湖泊水体中,底栖动物较多分布在酸碱度相对低、清澈程度高、盐度低、叶绿素高的环境中。在未来的气候变化背景下,河流径流增加可能导致水体...  相似文献   

8.
于2019-2021年春、秋季在长江干流南京段设置6个调查点位对水体理化因子、底栖动物群落特征开展调查研究。采用典范对应分析方法(CCA)分析了底栖动物与环境因子的响应关系。结果表明,共检出35种底栖动物,分属3门6纲12目19科30属,昆虫纲为优势纲。各监测点位的底栖动物检出种类数相差较大,最多检出21种,最少检出11种。春季优势种为霍甫水丝蚓,秋季优势种为齿吻沙蚕。底栖动物物种密度为2~176个/m^(2),春季的底栖动物平均密度(139个/m^(2))略高于秋季(125个/m^(2)),底栖动物平均密度年度排序为:2019年>2020年>2021年。各监测点位的香农威纳(Shannon-Wiener)多样性指数为2.9~3.5,水质状况处于良好和优秀之间。CCA分析结果表明,高锰酸盐指数和溶解氧对南京段底栖动物群落结构物种时空分布影响较大且大部分群落特征物种分布在含氮营养盐较低的水域,高浓度的含氮营养盐已经对南京段底栖动物产生了负面影响。  相似文献   

9.
于2011年3、6、8、10、12月在昌邑海洋生态特别保护区内对潮间带大型底栖动物进行采样,共采集到潮间带动物55种,以多毛类、软体动物和甲壳动物为主。各潮带间密度、生物量及多样性指数(H')差异极显著(P0.01),月份间差异均不显著。Bray-Curtis相似性聚类分析显示,该潮间带大型底栖动物可划分为3个群落(P0.01),潮汐与季节是影响大型底栖动物分布的主要因子。  相似文献   

10.
根据2017年渤海海域47个站位大型底栖动物的调查资料,对该海域大型底栖动物进行了群落特征分析。调查共采集到大型底栖动物107种,研究海域大型底栖动物的平均密度为82 个/m2。优势种类分别为彩虹明樱蛤、不倒翁虫、长叶索沙蚕。聚类结果显示,渤海海域大致可按地理位置分为4个群落。与历史数据的对比显示,传统的较大个体的底栖种类,如棘皮动物、双壳类,已经被更小个体的多毛类、软体动物所取代,底栖动物的种类结构表现出了小型化的特征,这与近年来渤海海域底栖动物研究结果一致。研究表明,近年来受人类活动影响,渤海海域大型底栖动物群落结构已经发生了变化。  相似文献   

11.
Water levels of Lake Sevan (Armenia) were artificially lowered by nearly 20?m between 1949 and 1997. Lowered water levels, combined with increased eutrophication, were associated with seasonally anoxic conditions (lasting 1-4?months) near the bottom of the profundal zone each year during 1976-2004. In addition, the extents of the macrophyte zone and of certain substrate types were severely reduced following drawdown. Maximal depth of occurrence decreased by 2-44?m for at least for 50 species of benthic macroinvertebrates between 1982 and 2004 compared to 1937-1961. Species richness of benthic macroinvertebrates declined from 25 to three species at depths where seasonal anoxia occurred. Total biomass increased by a factor of 10 from the period 1928-1948 to 1976-1979 then declined by a factor of 3 to 4 between 1987 and 2004. Energy flow through detritivores was more than tripled during 1976-2004 compared to 1928-1971, a result of increased plankton primary production. In contrast, energy flow through herbivorous benthic macroinvertebrates decreased by a factor of nearly 5, due to reduced areal coverage of macrophytes. Energy flow through filter feeders did not change over the time period examined, but energy flow through the entire zoobenthos community was nearly tripled. The biomasses of Oligochaeta, Chironomidae, and total zoobenthos showed a delayed response to changes in primary production of 7-9, 2, and 2-4?years, respectively. These patterns may provide a basis to predict results of restoration efforts based on the abundance of the zoobenthos in future years as the level of the lake is restored and water quality improves.  相似文献   

12.
滇池浮游藻类群落构成调查   总被引:3,自引:2,他引:1       下载免费PDF全文
对滇池浮游藻类群落组成和空间分布开展了2次调查,鉴定出藻类8门66属159种及变种,绿藻种类最多,蓝藻次之。5、12月滇池全湖平均藻类密度分别为1.398×108、2.180×108个/升,蓝藻门微囊藻属为优势藻类。5月的调查中滇池外海藻类生物量呈北高南低的格局,而12月则呈现南部和中部高,北部低。外海的藻类生物量明显高于草海,草海藻类群落构成与外海明显不同,主要表现为绿藻门藻类所占比例较高。12月滇池外海及全湖藻类生物量都显著高于5月。与上一次(2006—2007年)滇池浮游藻类的系统调查相比,滇池(主要是外海)浮游藻类在物种数量、常见藻类、优势藻类及生物量水平方面与之接近。  相似文献   

13.
松花江下游底栖动物组成及其环境指示作用   总被引:2,自引:1,他引:1       下载免费PDF全文
2005—2010年对松花江佳木斯江段3个断面进行大型底栖动物生态调查,共发现大型底栖动物51种,其中水生昆虫33种,软体动物9种,甲壳动物3种,环节动物6种。3个断面均以水生昆虫的种类数为最多,其次为软体动物,两者在各断面的年度监测中均能被观测到,且出现频率较高;环节动物与甲壳动物的种类数较少,且出现频率较低。底栖动物群落特征和水质生物学评价显示,佳木斯江段水质虽呈波动状态,但整体呈不断改善趋势,主要与溶解氧、氨氮以及总磷等指标的不断改善相关。  相似文献   

14.
This work exemplifies how a given lake (Lake Huljesjön, Sweden) would likely respond to changes in pH-values and to liming (a standard measure against anthropogenic acidification). The basic questions are: How would a liming influence pH? How long would the changes last? How would the changes influence the structure and function of lake ecosystems? The work uses a comprehensive lake ecosystem model, LakeWeb, which accounts for production, biomasses, predation, abiotic/biotic interactions of nine key functional groups of organisms, phytoplankton, bacterioplankton, two types of zooplankton (herbivorous and predatory), two types of fish (prey and predatory), zoobenthos, macrophytes and benthic algae. LakeWeb is a dynamic model and gives weekly variations. It has been critically tested using empirical data and regressions from many lakes. Those tests are not presented here but have shown that the model can capture typical functional and structural patterns in lakes very well. This gives credibility to the results presented in this work, which would be very costly to obtain in the traditional manner by extensive field studies in one or a few lakes. This work presents for the first time predictions at the ecosystem level of how functional groups of organisms (and not individual species) are likely to respond to acidification and liming. Two existing dynamic models, one for liming, the other for Hg-concentrations in fish, have been added to the LakeWeb-model. These two models have previously been tested and proven to yield good predictions. The results presented here indicate that there are several probable changes in the structure and function of the lake foodweb related to acidification and liming. The predicted changes in macrophyte cover will influence the predation pressure on fish, and thereby the fish biomass. Reductions in primary production at low pH-values will cause reductions in fish biomass. There are several interesting compensatory effects between factors that increase fish biomass and factors that tend to decrease the biomass. Such matters can be handled quantitatively by the LakeWeb-model.  相似文献   

15.
温榆河底栖大型无脊椎动物与水质评价   总被引:5,自引:2,他引:3  
2006年10月对北京市温榆河12个采样点底栖大型无脊椎动物调查,并设立十三陵水库为对照点.结果表明,温榆河底栖大型无脊椎动物有三大类组成:水栖寡毛类、水生昆虫幼虫和软体动物等13种,水栖寡毛类中的颤蚓科种类和水生昆虫中的羽摇蚊幼虫为优势种,这些均为耐污种类,耐污染指数都在5以上,平均耐污值为8.底栖动物数量也很高,说明温榆河水体受有机污粢较为严重.通过1HB指数评价结果,认为对照点水质为一般水体,温榆河为污染水体到严重污染水体.  相似文献   

16.
Phytoplankton variation in large shallow eutrophic lakes is characterized by high spatial and temporal heterogenity. Understanding the pattern of phytoplankton variation and the relationships between it and environmental variables can contribute to eutrophic lakes management. In this study Taihu Lake, one of the largest eutrophic fresh water lake in China, was taken as study area. The water body of Taihu Lake was divided into five regions viz. Wuli bay (WB), Meilian Bay (MB), West Taihu Lake (WTL), Main Body of Taihu Lake (MBTL) and East Taihu Lake (ETL). Concentrations of chlorophyll-a and the related environmental variables were determined in each region in the period 2000–2003. Factor analysis and multivariate analysis were applied to evaluate the interactions between phytoplankton variation and environmental variables. Results showed that the highest average concentrations of TN, TP and Chl-a were observed in WB, followed in a descending order by MB and WTL, and the lowest concentrations of TN, TP and Chl-a were observed in MBTL and ETL. Chl-a and TP concentrations in most regions (except ETL) declined during the study period. It suggested that to some extent the lake was recovering from eutrophication. However, persistent ascending of TN and NH4–N in all five regions indicated the deteriorating of water quality in the study period. Results of multivariate showed that the relationships between phytoplankton biomass and environmental variables varied among regions. TP illustrated itself a controlling role on phytoplankton in WB, MB, WTL and MBTL according to the significant positive relations to phytoplankton biomass in these regions. Nitrogen could be identified as a limiting factor to phytoplankton biomass in ETL in view of the positive correlations between TN and phytoplankton and between NH4–N and phytoplankton. Spatial variation of interactions between phytoplankton and environmental parameters suggested proper eutrophication control measures were needed to restore ecological system in each region of Taihu Lake.  相似文献   

17.
松花江底栖动物分布规律及与理化评价差异研究   总被引:1,自引:0,他引:1  
2012—2015年对松花江干流11个断面21个点位进行底栖动物群落监测,在7种单一指数评价的基础上运用简单的叠加法进行综合评价,并与常规理化监测与评价进行了比较。结果显示,与2012年相比,2013年松花江干流底栖动物物种较丰富,各点位评价结果有所提升;2015年摆渡镇-同江段多为清洁等级,水环境生态质量稳中趋好,下游改善明显。结果显示,生物学评价与理化评价存在明显的差异,在水质改善的过程中生物学评价更灵敏、更显著。  相似文献   

18.
2013年6月至2014年5月逐月对洞庭湖水体叶绿素a质量浓度和主要环境因子进行测定,分析洞庭湖水体叶绿素a质量浓度的时空分布特征,探讨洞庭湖水体叶绿素a质量浓度与环境因子的相关性。结果表明,洞庭湖水体叶绿素a质量浓度为0.11~8.62 mg/m~3,年均值为(1.89±1.23)mg/m~3,属贫营养;叶绿素a质量浓度随季节变化明显,总体呈现夏、秋季明显大于冬、春季的规律;在空间上,总体表现为西洞庭湖和东洞庭湖明显大于南洞庭湖。全湖叶绿素a质量浓度与水温、电导率、COD和TP呈极显著正相关,与DO、NH3-N、TN和TN/TP呈极显著负相关,与NO-3-N呈显著负相关,与p H和透明度无显著相关性。全湖TN/TP的年均值为28.5,磷可能是洞庭湖水体浮游植物生长的限制性营养盐。  相似文献   

19.
西湖与青山水库底栖动物群落的研究   总被引:4,自引:0,他引:4  
通过对杭州市的两个主要水体西湖和青山水库的底栖动物群落包括种类组成、优势种群、生物量等的比较研究。西湖和青山水库底栖动物群落主要由寡毛类和摇蚊幼虫组成 ,存在适应低溶氧、耐有机污染的种群。从底栖动物群落生态学角度评价了西湖和青山水库水体的营养化程度。  相似文献   

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