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1.
为研究于桥水库浮游植物群落结构及其与环境因子的关系,于2014年春夏季进行采样分析。两季共鉴定出浮游植物6门99种,其中绿藻门(Chlorophyta)62种,硅藻门(Diatoms)21种,蓝藻门(Cyanophyta)7种,裸藻门(Euglenophyta)4种,甲藻门(Pyrrophyta)2种,隐藻门(Cryptophyta)2种。春季浮游植物6门86种,第一优势种为绿藻门的四尾栅藻(Scenedesmus quadricauda);夏季浮游植物5门62种,第一优势种为蓝藻门的铜绿微囊藻(Microcystis aeruginosa)。春季浮游植物密度低于夏季,于桥水库浮游植物群落结构具有明显的季节变化规律。RDA分析结果表明,春季采样点的相似性高于夏季,透明度、水温、溶解氧和营养盐是影响于桥水库浮游植物群落组成的关键环境因子。  相似文献   

2.
为研究抚仙湖浮游植物群落结构及其与环境因子的关系。基于2017年4月(春季)、7月(夏季)、11月(秋季)和2018年2月(冬季)抚仙湖浮游植物和部分水质理化指标的监测数据,分析了浮游植物群落结构特征,通过冗余分析(RDA)研究了影响浮游植物群落结构的主要环境因子,同时运用藻类生物学法和综合营养状态指数法TLI(∑)对抚仙湖水质进行综合评价。结果表明,共鉴定出浮游植物7门54属,绿藻在种类组成上占绝对优势。不同季节浮游植物细胞密度存在明显变化,春季细胞密度最高(401.74×10~4 cells/L),其次为夏季(247.31×10~4 cells/L)和秋季(143.41×10~4 cells/L),冬季最低(88.98×10~4 cells/L)。浮游植物优势属在不同季节有所不同,各季节绝对优势属为伪鱼腥藻属(春季)、转板藻属(夏秋季)、小环藻属和蓝隐藻属(冬季)。Shannon-Wiener多样性指数(H′)和Pielou均匀度指数(J)变化趋势一致,夏季值最高,分别为2.76和0.64,冬季值最低,分别为2.13和0.50。Berger-Parker优势度指数(D)变化与H′和J相反,冬季最高(0.945),夏季最低(0.922)。RDA表明,水温、溶解氧和高锰酸盐指数是影响抚仙湖浮游植物群落结构的主要环境因子。综合评价认为,抚仙湖水质处于贫中营养状态。  相似文献   

3.
根据1998-2003年长江口邻近水域(30°-32°N,121°27′-122°30′E),丰水期和枯水期10个航次、20个点位的海洋监测结果,对浮游植物动态变化及其环境影响因子进行了研究。6年内共检出浮游植物238种,其中大部分为硅藻。研究结果表明,深水航道附近水域中,浮游植物种类、丰度和生物多样性均呈下降趋势。相反,航道内浮游植物总丰度呈直线上升(R=0.81,P<0.05)。对航道内12个环境因子做主成分分析,盐度、溶解氧、硅酸盐和浊度为主要环境主要因子。其中浊度和硅酸盐与浮游植物群落变化关系密切,是影响浮游植物群落动态变化的关键因子,并受深水航道工程影响。  相似文献   

4.
烟台西港倾倒区海域浮游生物的群落特征   总被引:1,自引:0,他引:1  
分析了倾倒活动结束后烟台西港倾倒区海域浮游生物的群落结构特征。结果表明,浮游植物群落具有硅藻为主、甲藻为次的特征,生态性质以温带近岸性物种为主。倾倒区停用后,硅藻数量大幅增加。桡足类、浮游幼虫及毛颚类的强壮箭虫是浮游动物群落的主要组成。浮游动物丰度、生物量与浮游植物丰度变化趋势大体一致。多样性分析表明,浮游生物群落结构比较稳定,倾倒区海域生态环境质量尚好。  相似文献   

5.
通过2018—2019年夏冬季在鄱阳湖布设17个采样点,采样检测浮游藻类和水质参数,并采用典范对应分析法研究该湖浮游藻类群落结构特征及其与环境因子的相互关系。结果表明,两次调查共检测出浮游藻类7门31科58属,浮游藻类丰度范围为3.5×105 L-1~1.15×107 L-1,主要由绿藻门、硅藻门和蓝藻门组成,绿藻门为夏、冬季主要优势种群。典范对应分析结果显示,鄱阳湖冬季湖区水环境空间差异较大,而夏季差异较小;夏季氮磷营养盐和DO是影响浮游藻类群落时空分布的主要环境因子,冬季氮磷营养盐、BOD5和IMn是影响浮游藻类群落时空分布的主要环境因子。  相似文献   

6.
官厅水库浮游植物功能群季节演替及其驱动因子   总被引:3,自引:0,他引:3  
官厅水库是北京市重要的水源地,其生态环境问题一直深受社会关注。以浮游植物功能群调查为基础,于2010年春夏秋三季对官厅水库进行生态调查,根据水库水环境特征,在永1000、妫1018+1、河口3个不同生境区域设置采样点,进行浮游植物水样采集。共鉴定出浮游植物112种(包括变种),分属于6门52属。浮游植物种类组成:绿藻门23属49种,占种类总数的43.75%;硅藻门12属34种,占30.36%;蓝藻门10属19种,占16.96%;裸藻门4属7种,占6.25%;甲藻门2属2种,占1.79%;隐藻门1属1种,占0.89%。浮游植物丰度秋季(8 889.97×10~4个/L)夏季(7 157.39×10~4个/L)春季(868.97×10~4个/L),三季均值为5 638.78×10~4个/L。3个季节里浮游植物划分为18个功能群,代表性功能群的季节演替为春季(F/MP/H1/C/D/G/W1)→夏季(Tc/M/Wo/C/N/X3/LM)→秋季(Tc/H1/C/D/W1/P)。利用典范对应分析方法,对同步取得的p、TN、TP、WT等环境因子与浮游植物功能群分之间的相关性进行分析。结果显示,WT、p、TP、NH_4-N是官厅水库浮游植物功能群演替的主要驱动因子。  相似文献   

7.
新安江水库浮游植物群落特征及影响因素分析   总被引:4,自引:2,他引:2       下载免费PDF全文
为了解新安江水库浮游植物群落特征及影响因素,于2008年1月—2009年12月,对其浮游植物和相关理化因子进行了单月1次的采样。共检测到浮游植物103种(属),浮游植物密度为1.46×106~2.55×107cells/L,年平均密度为6.09×106cells/L,春、秋季出现2个密度峰值;浮游植物组成随季节变化有所不同,春、冬季硅藻、隐藻占优势,夏季蓝藻、绿藻占优势,秋季蓝藻、硅藻占优势;浮游植物密度与TP、Chl-a及上月降水量均呈显著正相关,与透明度呈显著负相关,与TN相关性不明显;水库的水文形势季节性变化显著影响浮游植物结构和密度的变化,浮游植物生长短期效应明显受流域降水和温度双重影响;从大尺度生态效应角度看,食物网的下行效应可能是目前影响新安江水库浮游植物密度的主导因素,大规模滤食性的杂食性鱼类对浮游动物造成较高的捕食压力,间接促进了浮游植物种群的增长;磷是关键的营养盐因子,保持水体低磷浓度和氮磷比大于100,对降低浮游植物密度有现实意义。  相似文献   

8.
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   

9.
库里泡是黑龙江省大庆市重要的排污、泄洪湖库之一。近年来,由于大庆市生活及工业污水排放总量逐年增加,库里泡水体质量有所下降。为掌握库里泡浮游植物群落结构特征及水环境状况,于2019年春、夏、秋3季在库里泡共设置了13个采样点,对浮游植物群落及其与水环境变量的相关关系进行了研究。利用群落相似性分析(ANOSIM)检验浮游植物群落的组间及组内差异;采用相似性百分比(SIMPER)分析辨别对群落时空格局有显著影响的物种;通过冗余分析(RDA)确认环境变量及浮游植物优势种的生态分布特征,并对主要影响因子进行辨别。结果显示:研究期间共鉴定出浮游植物106种,隶属于6门8纲13目23科49属。库里泡的浮游植物群落组成为绿藻-硅藻型,而蓝藻、隐藻、甲藻、裸藻种类相对较少,占比仅为25%。其中,优势种有15种,主要为狭形纤维藻(Ankistrodesmus angustus)、四尾栅藻(Scenedesmus quadricauda)和梅尼小环藻(Cyclotella meneghiniana)等。ANOSIM和SIMPER分析结果表明,季节差异和生境差异对库里泡浮游植物群落结构的构建具有一定的驱动作用。RDA结果表明,影响库里泡浮游植物群落时空格局的主要环境变量为水温、总磷和总氮。营养状态指数评价结果显示,库里泡水质为中度富营养。经与近10年间的库里泡相关研究对比发现,库里泡水体浮游植物群落结构较为稳定,浮游植物优势类群略有改变。  相似文献   

10.
浙江北部海域春季浮游动物的群落结构研究   总被引:2,自引:0,他引:2  
根据2007年春季在浙江北部海域所采集的浮游动物样品,对该调查海域浮游动物的种类组成、丰度、生物量和生物多样性进行了探讨,采用多元统计软件PRIMER 5分析了该海域浮游动物的群落结构。研究结果表明,调查海域共鉴定各类浮游动物62种、浮游幼虫12种,合计74种。经统计共有2种优势种,分别是中华哲水蚤(Calanus sinicus)和五角水母(Muggiaea atlantica)。浮游动物生物量和丰度的平面分布比较相似,主要分布在调查海域的东部和东南部,并存在着向东南方向呈递增的趋势,而在杭州湾内的值比较小。调查海域浮游动物生物多样性比较低,平均值为1.54。根据对本次调查获得的浮游动物群落结构的聚类分析,主要存在着两个生态类群,群落Ⅰ为沿岸低盐群落,群落Ⅱ为暖温带近海群落。  相似文献   

11.
东平湖是南水北调东线工程的重要调蓄湖泊,在防洪、灌溉、休闲旅游、水产养殖及水资源供应等方面发挥着至关重要的作用.为了解南水北调东线调水后的东平湖浮游植物群落结构及水体健康状态,于2016年4月(春季)、7月(夏季)、10月(秋季)及2017年1月(冬季)对东平湖不同空间区域(根据调水路线划分为进水区、湖中区和出水区)的...  相似文献   

12.
Fine spatial and temporal phytoplankton variability in Mali Ston Bay has been observed for the first time based on physicochemical properties and small herbivorous zooplankton. Extensive year-through research was conducted during 2002 at Usko station which is traditionally an area of intensive shellfish farming. The Neretva River inflow, submarine springs (“vruljas”) and precipitation are additional sources of nutrients in the bay. Temperature and salinity, combined with total inorganic nitrogen (TIN) were observed to be the most important environmental factors driving the succession of phytoplankton communities. Orthophosphate was a potential limiting factor for phytoplankton development. The nanophytoplankton abundances, as well as the microphytoplankton diatoms are controlled by herbivorous zooplankton grazing (‘top-down’ control) more than other groups of microphytoplankton. Nanophytoplankton dominated phytoplankton abundance and its most intensive development was recorded in winter and spring, while increase in microphytoplankton abundance occurred in spring and autumn. Diatoms dominated microphytoplankton abundance mostly in winter and autumn, while dinoflagellates dominated in spring and summer. Considering the number of taxa and abundance, dinoflagellates were the dominant microphytoplankton group during the year and were the main component of the spring blooms. At that time, in conditions of elevated temperature (>16 °C), decreased salinity (34–36) and increased concentrations of TIN, blooms of harmful dinoflagellate Prorocentrum minimum were recorded for the first time in the bay. The results showed a significant difference in environmental conditions, as well as in the annual phytoplankton succession and community structure, as compared with studies carried out more than 20 years ago in this area.  相似文献   

13.
Following the completion of the Three-Gorges Dam, there was a strong spring phytoplankton bloom in Xiangxi Bay of Three-Gorges Reservoir. However, our knowledge of relationship between spring phytoplankton bloom and environmental factors was still limited. In this study, phytoplankton species composition, biomass, chlorophyll a concentration and environmental factors at two sampling sites in Xiangxi Bay were investigated during 25 March to 18 May 2007. The Xiangxi Bay was eutrophic with the lowest values of total nitrogen and total phosphorus being 0.80 and 0.07?mg/L, respectively. A total of 66 algal taxa belonging to seven phyla and 45 genera were identified. Peridiniopsis niei Liu was the most abundant species which preferred standing water. Canonical correspondence analysis and correlation analysis revealed that nitrate was significantly associated with phytoplankton growth. The phytoplankton chlorophyll a concentration was correlated significantly negatively with nitrate concentration, and nitrate concentration was very low during bloom periods. Heavy rainfall was the main reason of phytoplankton chlorophyll a concentration and biomass decreasing and blooms disappearing. In addition, heavy rainfall also brought more nitrate into the Bay which provided sufficient nitrogen source for blooms occurring again.  相似文献   

14.
Dongping Lake is the final adjusting and storing lake in the east route of the South-to-North Water Diversion Project in China, and there has been serious concern regarding the water quality. Understanding the process of phytoplankton variation can be particularly useful in water quality improvement and management decisions. In this study, the phytoplankton taxonomic composition, abundance, temporal variations, spatial distribution, and diversity were studied based on a monthly sampling campaign from three sampling stations between May 2010 and May 2011. A total of 132 species (8 phyla, 72 genera), including 64 species of Chlorophyta, 26 species of Bacillariophyta, 21 species of Cyanophyta, 12 species of Euglenophyta, 3 species of Cryptophyta, 2 species of Xanthophyta, 1 species of Pyrrophyta, and 3 species of Chrysophyta were identified. Average phytoplankton diversity index and evenness values were 3.83 and 0.77, respectively, revealing a high biodiversity of phytoplankton community. The phytoplankton abundance averaged 5.11?×?106 cells/L, with Bacillariophyta dominant in winter and spring, but Cyanophyta in summer and autumn. There were 14 predominant species including Pseudanabaena limnetica, Chlamydomonas simplex, Cyclotella stelligera, and Chroomonas acuta. Phytoplankton community structure and water quality variables changed substantially over the survey period; redundancy analysis, Pearson correlations, and regression analysis as an integrated approach were applied to analyze the relationships among them. Total phosphorus and ammonium played governing roles in the phytoplankton dynamics of Dongping Lake during all periods investigated.  相似文献   

15.
为探明太阳山湿地浮游植物优势功能群季节演替规律及其主要驱动因子,于2019年4月(春季)、7月(夏季)、10月(秋季)和2020年1月(冬季)采样分析了太阳山湿地浮游植物的种类组成、优势种、丰度、生物量及季节变化,同时测定了水环境理化因子指标,采用冗余分析方法研究了浮游植物优势功能群的优势度、丰度与水环境因子之间的关系。结果表明:太阳山湿地浮游植物可分为22个功能类群;优势功能群的季节演替和空间分异特征明显,存在一定的规律性。春、秋、冬3个季节的浮游植物以硅藻门为主,夏季以绿藻门和蓝藻门为主。春季优势功能群主要为D、C、P,以硅藻门种类为主;夏季优势功能群主要为J、Lo、TC、M、H1,以硅藻门、绿藻门、蓝藻门种类为主;秋季优势功能群主要为D、S1、MP,以硅藻门、绿藻门种类为主;冬季优势功能群主要为D、X3,以硅藻门种类为主。影响太阳山湿地浮游植物优势功能群季节演替的水环境因子有水温(WT)、pH、溶解氧(DO)、透明度(SD)、盐度(Sal)、氮磷营养元素含量、化学需氧量(CODCr)和高锰酸盐指数(CODMn)。4个湖区浮游植物优势功能群的时空差异与水环境因子密切相关,其中,西湖区浮游植物优势功能群的季节演替驱动因子为pH、DO、WT、总磷(TP),东湖区为pH、DO、WT、氮磷营养元素含量,南湖区为pH、DO、CODCr、五日生化需氧量(BOD5),小南湖区为pH、DO、WT、BOD5、CODCr、TP。pH、DO、WT、BOD5、SD等水环境因子的季节差异以及TP、TN、氨氮(NH3-N)、CODMn等水环境因子的湖区差异是太阳山湿地浮游植物优势功能群出现季节演替的主要原因。  相似文献   

16.
Due to the close proximity of the Bay of Bengal and the freshwater inflow of Bhagirathi-Hooghly, Diamond Harbour appeared as an important coastal station of the Bhagirathi-Hooghly estuary. The spatial and temporal composition and abundance of microphytoplankton species was examined in relation to physical and chemical surface water variables (i.e., salinity, nutrient, and temperature).The primary objective of the study was to observe the variations in phytoplankton species assemblages as a response to environmental variables. Hierarchical cluster analysis and non-metric multidimensional scaling were used to find out distinct seasonal groups based on the composition of phytoplankton. The results indicate that several key environmental factors like temperature, DIN content, and molar ratio of nutrients like DIN-DIP and DIN-DSi influenced seasonal phytoplankton assemblages within the estuary. The distribution of phytoplankton population showed two main groups where the blue-green and green algal populations favored the warmer conditions of summer and monsoon months, whereas the diatom population primarily flourished in the cooler months of autumn and winter.  相似文献   

17.
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   

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