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1.
Brachionus havanaensis is a common planktonic rotifer sometimes found together with Brachionus calyciflorus in Microcystis-infected waterbodies in México. Here, we evaluate the impact of mixed diets (dry weight basis, 0%, 25%, 50%, 75% and 100% Microcystis or Chlorella) on the growth of and competition between B. calyciflorus and B. havanaensis. In general, a higher proportion of Microcystis aeruginosa in the diet resulted in decreased population growth rate of both rotifer species. Whether grown separately or together, B. havanaensis was always numerically more abundant than B. calyciflorus, regardless of the proportion of Microcystis in the diet. However, when both species were grown together, the impact of M. aeruginosa in the diet had a more adverse effect on B. calyciflorus than on B. havanaensis. When grown alone, both rotifer species showed better population growth on a diet of 75% Chlorella and 25% Microcystis than either 100% Chlorella or Microcystis.  相似文献   

2.
风生紊流导致微囊藻群体破碎和形态变化   总被引:1,自引:0,他引:1  
微囊藻群体大小和形态决定其垂向迁移能力,从而影响着水华的形成.为了探讨湖泊中风生紊流对微囊藻群体大小和形态的影响,本研究于2012年8月26日至9月7日在太湖梅梁湾的围隔内进行了12 d的昼夜不间断的高频采样(采样间隔每2小时一次).研究期间,水面微囊藻密度呈现4次周期性消涨,藻密度变化范围为4×104~2671×104 cells/mL.而整个水柱中的藻密度变化范围仅为3×104~18×104 cells/mL.皮尔逊相关性分析表明微囊藻的原位生长速率与表面藻密度呈负相关而与风速呈正相关.强风速使微囊藻在水柱中均匀分散,增强了透光性,促进了微囊藻的生长.微囊藻群体粒径随着风速的增大逐渐减小,反之亦然.其中值粒径(D50)变化范围为66.2~768.0 μm.在此期间微囊藻群体形态主要以鱼害微囊藻、不规则的惠氏微囊藻、球状的惠氏微囊藻和铜绿微囊藻群体形态为主,其占比也呈现出波动状态.皮尔逊相关分析结果显示微囊藻群体大小与风速呈负相关,说明湖泊中风生紊流会影响微囊藻群体大小.当紊流强度为2.33×10-5 m2/s3时,微囊藻群体会发生破碎现象,该紊流强度相当于5 m/s的风在30 m深的水库或湖泊中所产生的紊流强度.微囊藻群体被风生紊流破碎后最大粒径与该风速下紊流的最小涡旋尺度相近,表明紊流的最小涡旋尺度决定了微囊藻所能形成群体的最终大小.监测期间,整水柱中不同群体形态的微囊藻占比发生了明显变化,在监测初期以鱼害微囊藻群体形态为主,随后不规则的惠氏微囊藻和铜绿微囊藻群体形态的比例不断增加,最后鱼害微囊藻群体形态又占据主导地位.球状的惠氏微囊藻群体形态在整个监测期中的比例随时间的增加而逐渐降低.不同群体形态微囊藻之间比例的大幅变化无法用微囊藻生长演替来解释.而皮尔逊相关分析结果显示鱼害微囊藻与惠氏微囊藻(不规则的和球状的惠氏微囊藻之和)群体形态之间存在负相关,且惠氏微囊藻与铜绿微囊藻群体形态呈负相关.但在今后研究中需进一步关注在微囊藻群体形态的动态变化过程中细胞大小、胶被、产毒特性和基因序列等特征,从而验证不同种微囊藻群体是否存在形态转换这一猜想.总而言之,普通强度的风生紊流能够破碎微囊藻群体,而气候变化导致的内陆湖泊周边风速下降会促使微囊藻形成更大的群体,从而有利于水华的形成.  相似文献   

3.
2017年7月—2018年4月在洱海南部近岸开展了4个季度的野外调查,利用细胞分裂频率法研究微囊藻原位增殖的季节变化及影响因子,结果显示:微囊藻细胞分裂频率的变化范围为6.13%~29.23%,白天显著大于夜间,但两个点位间和表中底3层间的差异均不显著;经计算,微囊藻原位生长速率的均值为(0.36±0.06)d-1,总体高于其它有相关研究的湖泊。同时,微囊藻细胞分裂频率和原位生长速率具有显著的季节变化,表现为冬季最大(1月,19.65%±4.10%、(0.39±0.01)d-1),秋季(10月,14.48%±4.73%、(0.36±0.02)d-1)和夏季(7月,12.77%±3.81%、(0.37±0.07)d-1)次之,春季(4月,10.37%±2.64%、(0.30±0.06) d-1)最小,其中营养盐浓度的作用不明显,而地表太阳辐射和水温等影响较大。进一步分析发现,除地表太阳辐射外,影响细胞分裂频率昼夜变化的其它因子具有一定的季节异质性。研究结果可为深入研究洱海微囊藻水...  相似文献   

4.
太湖3种优势微囊藻对不同形态磷的吸收利用   总被引:1,自引:0,他引:1  
岳涛  张德禄  胡春香 《湖泊科学》2014,26(3):379-384
微囊藻(Microcystis)是最常见的淡水水华蓝藻,它们对磷营养盐的竞争力是其成为优势种的最主要影响因素.本文以太湖水华中的3种优势微囊藻(Microcystis flos-aquae,Microcystis wesenbergiiMicrocystis aeruginosa)为材料,比较研究了它们对正磷酸盐(K2HPO4)、三聚磷酸盐(Na5P3O10)、小分子溶解态有机磷(葡萄糖-6-磷酸,G-6-P)和大分子溶解态有机磷(卵磷脂)的吸收和利用能力.结果发现,3种微囊藻对4种磷形态有明显的嗜好.当磷浓度为0.2 mg/L时,M. flosaquae只在正磷酸盐下生长最快,M. wesenbergii在三聚磷酸盐和大、小分子有机磷下生长最快,M. aeruginosa在所有磷形态下生长都最慢.而当磷浓度为2.0 mg/L时,M. flos-aquae在所有形态磷下生长都最快.在2种磷浓度下M. wesenbergii都表现出最高的溶解态无机磷比例和光合活性Fv/Fm.以上结果说明,3种藻在磷形态利用方面存在明显的互补性差异,即低磷浓度下M. wesenbergii适宜利用的磷形态更多,高磷浓度下M. flos-aquae适宜利用的磷形态更多,而不论磷浓度高低,M. aeruginosa对4种形态磷的适应性最差.由此可知,可利用磷形态的丰富性只是部分优势微囊藻的竞争策略.  相似文献   

5.
三峡水库澎溪河典型优势藻原位生长速率的初步研究   总被引:3,自引:2,他引:1  
本文提出了两种原位培养装置(培养笼、培养桶)并采用这两种装置在澎溪河高阳平湖断面进行原位培养实验,旨在研究澎溪河典型优势藻的原位生长速率.研究期间主要生境特征为营养物丰足、光热条件优越、生境条件相对稳定,适宜于藻类生长,为水华形成的敏感期;在此期间代表CR型生长策略的湖北小环藻和兼具C、R、S生长策略的卵形隐藻的原位生长速率总体呈逐渐下降趋势,代表CS型生长策略的水华鱼腥藻和空球藻的原位生长速率则先增加后又有所下降,代表S型生长策略的铜绿微囊藻的原位生长速率虽然前期都为负,但总体呈现逐渐增加的趋势;并测得培养笼和培养桶中各藻种的最大比生长速率分别为湖北小环藻0.31、0.21 d-1;铜绿微囊藻0.09、0.03 d-1;空球藻0.16、0.42 d-1;水华鱼腥藻0.30、0.26 d-1;卵形隐藻0.49、0.95 d-1.本研究中,不同生长策略藻种生长速率的变化在一定程度上体现了不同生长策略藻种的生长趋势.另外,就装置性能实验及原位培养实验结果综合分析,认为两种原位培养装置均能够满足对天然水域藻类原位生长速率的测试要求,但装置的构造对藻类实际生长过程仍存在一定影响.  相似文献   

6.
为了了解后生浮游动物的摄食作用在太湖夏季微囊藻水华形成中的作用,2009年7月15日至8月14日取太湖梅梁湾湖水开展了后生浮游动物对微囊藻水华形成作用的野外模拟实验.实验期间,未过滤掉后生浮游动物的对照组出现了漂浮在水面、肉眼可见的微囊藻水华,而过滤掉后生浮游动物的实验组没有出现微囊藻水华.结果显示,对照组整个实验期间都有后生浮游动物存在,共发现了9种后生浮游动物;而实验组在实验第6 d发现有后生浮游动物出现,整个实验期间共发现了3种后生浮游动物.浮游动物生物多样性分析显示对照组显著高于实验组.实验后期(21~30 d),对照组微囊藻平均密度显著高于实验组.整个实验期间,惠氏微囊藻(Microcystis wesenbergii)和水华微囊藻(Microcystis flos-aquae)密度均显著高于实验组,且惠氏微囊藻密度占对照组微囊藻总密度的60.79%.研究结果表明,太湖夏季后生浮游动物摄食并不能控制太湖蓝藻水华,相反,后生浮游动物特别是大型浮游动物能促进蓝藻水华的形成.同时表明,后生浮游动物群落结构可能是影响微囊藻水华形成的重要因素.  相似文献   

7.
孟艳艳  王芳  梁霞  李建宏 《湖泊科学》2015,27(6):1115-1123
为研究附生细菌对蓝藻水华细胞微环境的影响,从微囊藻水华中分离出34株藻附生细菌,研究其产酶能力.对氮代谢相关的酶活性测定结果显示:其中13株菌具有蛋白酶活性,5株菌具有较强的氨氮脱除能力,1株菌具有强烈的硝酸还原酶活性;4株菌具有较高的碱性磷酸酶活性;11株菌具有产脂酶的活性.通过菌和藻共同培养的方法,观察菌对微囊藻生长的影响,结果显示,有11株菌表现出较明显的促藻生长作用,占总筛选菌株总数的32%;有3株菌表现出较显著的抑制藻生长的作用,占总筛选菌株总数的9.9%.附生菌产酶能力与生长相关性的分析显示,促进微囊藻生长的附生菌都具有蛋白酶或脂酶活性.  相似文献   

8.
9.
Abstract

In discrete water quality surveys, riverine fluxes are associated with unknown uncertainties (biases and imprecisions). Annual flux errors have been determined from the generation of discrete surveys by Monte Carlo sorting for monthly sampling, from 10 years of daily records (120 records). Eight calculation methods were tested for suspended particulate matter, dissolved solids and dissolved and total nutrients in medium to large basins (103 to 106 km2) covering a wide range of hydrological conditions and riverine biogeochemistry. The performance of each method was analysed first by type of riverine material, which appeared to be much less pertinent than the flux variability matrix. The latter combines the river flow duration in two percent of time (W2%) and the truncated exponent (b50sup) defining the relationship of concentration vs discharge (CQ) at higher flows (C = aQb50sup). As flux variability increases (high W2% and/or high b50sup), averaging and rating curve methods become less efficient compared to hydrograph separation methods. Flux biases and imprecisions were plotted in the [W2%, b50sup] matrix for discrete monthly surveys.

Editor Z. W. Kundzewicz

Citation Raymond, S., Moatar, F., Meybeck, M., and Bustillo, V., 2013. Choosing methods for estimating dissolved and particulate riverine fluxes from monthly sampling. Hydrological Sciences Journal, 58 (6), 1326–1339.  相似文献   

10.
三峡水库香溪河库湾蓝藻水华暴发特性及成因探析   总被引:5,自引:1,他引:4  
杨敏  张晟  胡征宇 《湖泊科学》2014,26(3):371-378
2008年夏季,香溪河库湾自三峡水库建库以来第1次暴发蓝藻水华,水华波及整个库湾,持续时间达1个月之余.为了解这次水华暴发特性及发生原因,本文对蓝藻水华的发生发展过程进行了跟踪调查,6-7月水华发生期间每周采样1次.调查表明本次蓝藻水华的优势种为鱼腥藻(Anabaena sp.)、铜绿微囊藻(Microcystis aeruginosa)、惠氏微囊藻(Microcystis wesenbergii)等,细胞密度高达3.82×108 cells/L,蓝藻相对密度达到90%以上.本文将2008年5-7月与2007年同期理化指标比较发现,2007年5月的N:P为18.6,而2008年5月的N:P较低,为6.2,据文献报道N:P < 8有利于微囊藻的复苏,因此2008年水华前期的低N:P利于微囊藻的复苏,为微囊藻在适宜条件下的大量增殖提供了种源基础.方差分析表明,2008年5-7月各采样点真光层深度显著高于2007年同期,使得底泥中的微囊藻获得一定强度的光照而复苏,这可能是2008年蓝藻水华在香溪河库湾暴发的原因之一.综上所述,在具备充足的营养盐基础、较强的水体稳定性以及较高水温的前提下,香溪河库湾水华发生前期较低的N:P以及较高强度的光照可能是微囊藻复苏的诱导因子,为蓝藻水华暴发提供了种源基础.  相似文献   

11.
Data on riverine fluxes are essential for calculating element cycles (carbon, nutrients, pollutants) and erosion rates from regional to global scales. At most water‐quality stations throughout the world, riverine fluxes are calculated from continuous flow data (q) and discrete concentration data (C), the latter being the main cause of sometimes large uncertainties. This article offers a comprehensive approach for predicting the magnitude of these uncertainties for water‐quality stations in medium to large basins (drainage basin area > 1000 km²) based on the commonly used discharge‐weighted method. Uncertainty levels – biases and imprecisions – for sampling intervals of 3 to 60 days are correlated first through a nomograph with a flux variability indicator, the quantity of riverine material discharged in 2% of time (M2%). In turn, M2% is estimated from the combination of a hydrological reactivity index, W2% (the cumulative flow volume discharged during the upper 2% of highest daily flow) and the truncated b50sup exponent, quantifying the concentration versus discharge relationship for the upper half of flow values (C = a q b50sup, for q > q50, where q50 is the median flow): M2% = W2% + 27.6b50sup. W2% can be calculated from continuous flow measurements, and the b50sup indicator can be calculated from infrequent sampling, which makes it possible to predict a priori the level of uncertainty at any station, for any type of riverine material either concentrated (b50sup > 0) or diluted (b50sup > 0) with flow. A large data base of daily surveys, 125 station variables of suspended particulate matter (SPM), total dissolved solids (TDS) and dissolved and particulate nutrients, was used to determine uncertainties from simulated discrete surveys and to establish relationships between indicators. Results show, for example, that for the same relatively reactive basin (W2% > 25%), calculated fluxes from monthly sampling would yield uncertainties approaching ±100% for SPM (b50sup > 1.4) fluxes and ±10% for TDS (b50sup = ?0.2). The application to the nitrate survey of the river Seine shows significant trends for the 1972–2009 records. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

12.
Bloom‐forming cyanobacteria are known to negatively affect their herbivores, but the possible reasons leading to the foraging inhibition of different cladoceran species are uncertain and controversial so far. Hence, in order to understand how cyanobacteria affect the feeding behavior of cladocerans with different body sizes, feeding rates (FR) of zooplankton cladocerans Daphnia carinata and Moina macrocopa on the mixture of toxic or non‐toxic Microcystis aeruginosa with Scenedesmus quadricauda during a 24‐h period was investigated. FR of M. macrocopa was found generally low in the mixed toxic Microcystis diets, except for the sudden increase after 8 h of exposure, while FR of D. carinata decreased continuously in the mixed toxic diets. The dynamics of FR of both cladocerans on specific algae was similar to that of the total FR. There is no apparent selectivity displayed for either of the two cladoceran species on the mixed diets. There is no significant difference between the strains of Microcystis, suggesting that the feeding pattern of M. macrocopa maybe more of avoiding Microcystis rather than feeding inhibition resulted from the toxicity of algae. Unlike M. macrocopa, there was a significant difference in D. carinata between the strains of Microcystis over time. The reason for feeding inhibition of D. carinata might be toxicity after continuous exposure to the toxic cyanobacteria.  相似文献   

13.
大量微囊藻群体的形成和聚集是微囊藻水华形成的重要条件.光照强度是影响微囊藻生长的重要因素之一.为了了解光照强度对水华微囊藻(Microcystis flos-aquae)群体大小增长的影响,以太湖微囊藻水华优势种之一的水华微囊藻作为研究对象,开展了不同光照强度对水华微囊藻群体大小增长的影响研究.共设置5个不同光强处理组,依次为G1:2000 lx;G2:4000 lx;G3:8000 lx;G4:16000 lx;G5:变化光照强度(模拟野外光强).实验期间,G1~G5组大于100细胞群体的平均大小分别为255、480、630、763和662 cells/群体.胞外多糖含量分析显示水华微囊藻形成的群体越大,胞外多糖含量越高.结果表明,低光照强度不利于太湖水华微囊藻群体大小的增长,而变化光照强度和高光照强度有利于水华微囊藻群体大小的增长.研究结果解释了太湖夏季野外变化光照强度和高光照强度有利于微囊藻水华形成的原因.  相似文献   

14.
高艳  周丰  张巍  张树才  王学军 《湖泊科学》2007,19(3):261-268
本研究将地物高光谱遥感技术应用于室内实验,从而得到小球藻和铜绿微囊藻的高光谱特征.通过多种半经验方法,如单波段、波段比值和微分法,建立了两藻种最优的Chl-a高光谱定量模型,并与室外情况进行了对比.结果表明:小球藻的最优定量模型为Chl-a=174.6 1138292(R703) 2.3(109[(R703)]2(p<0.01),相应的方法适宜性为:一阶微分法>单波段法>波段比值法;铜绿微囊藻的最优定量模型为Chl-a=5299164(R757)1.9773(p<0.01),相应的方法适宜性为:单波段法>波段比值法>一阶微分法;从高光谱特征来看,小球藻在540 nm和700 nm附近存在明显的特征波峰,其位置随Chl-a浓度增大而向长波方向偏离,铜绿微囊藻在530 nm、660 nm和700 nm附近存在3个较强的特征波峰,在610 nm和680 nm附近存在明显的波谷;与以往室外研究不同的是铜绿微囊藻的反射率在400-500 nm之间的R值并不低,是因为没有非藻类颗粒物的影响,总吸收明显降低.  相似文献   

15.
大量微囊藻群体的形成和聚集是微囊藻水华形成的重要条件.氮、磷浓度是影响微囊藻群体生长的重要因素之一.为了探讨氮、磷浓度对微囊藻群体生长的影响,本研究以太湖微囊藻水华优势种之一的水华微囊藻作为研究对象,开展了不同氮、磷浓度对水华微囊藻群体生长的影响研究.以近几年太湖微囊藻水华暴发最严重的梅梁湾氮磷比的平均值作参考,氮、磷浓度设置为5个水平组,依次是T1(TN=0.1 mg/L,TP=0.005 mg/L)、T2(TN=1 mg/L,TP=0.05 mg/L)、T3(TN=10 mg/L,TP=0.5 mg/L)、T4(TN=100 mg/L,TP=5 mg/L)和T5(TN=250 mg/L,TP=5.44 mg/L)(BG-11培养基中氮、磷的浓度).结果显示,T1、T2、T3和T4 4组微囊藻群体均增大,且都发现有大于100个细胞的群体形成,群体大小分别为151、217、437和160 cells,而T5组微囊藻群体实验初期增大,实验后期变小,T5整个实验期间未发现有大于100个细胞的群体形成.研究结果表明相对低的氮、磷浓度有利于水华微囊藻群体的生长,而过高的氮、磷浓度则会抑制微囊藻群体生长.本研究结果也表明目前太湖氮、磷浓度有利于水华微囊藻群体的生长,从而有利于微囊藻水华形成.  相似文献   

16.
The relative abundance of the different picoplankton components (eukaryotic picophytoplankton (Peuk), picocyanobacteria (Pcy) and bacterioplankton), and their relationships with the lake conditions were studied in three types of shallow lakes from the Pampa Plain (Argentina) that differ in their optical properties: clear-vegetated, phytoplankton-turbid and inorganic-turbid. All the selected lakes, but one, are characterized by their different alternative steady state (clear-vegetated and phytoplankton-turbid water phases) following the model proposed by Scheffer et al. (1993).Autotrophic and heterotrophic picoplankton abundances were analyzed seasonally in relation to environmental variables. All the lakes presented high concentrations of total nitrogen (TN) (>229 μg L−1), total phosphorus (TP) (>46 μg L−1) and dissolved organic carbon (DOC) (>13.7 mg L−1). Clear-vegetated lakes were characterized by vertical diffuse PAR (photosynthetic active radiation) attenuation coefficient (kdPAR) lower than 11 m−1, whereas inorganic-turbid lake always showed values higher than 21.1 m−1. The euphotic zone depth (Z1%) was wider in clear-vegetated lakes (40–140 cm) and thinner in the inorganic-turbid (10–20 cm). The phytoplankton-turbid lakes presented a wide range in the values of these variables (kdPAR: 5.2–35.8 m−1; Z1%: 10–90 cm). Phytoplankton chlorophyll-a (Chl-a) strongly differed, ranging from 1.6 to 334.6 μg L−1. Picophytoplankton was mainly represented by phycocianine-rich (PC-rich) Pcy in all cases, dominating over Peuk algae. The total and relative abundances of eukaryotic picophytoplankton, Pcy and bacterioplankton, as well as the size structure of the phytoplankton community differed among the water bodies. In general, clear-vegetated water bodies exhibited similar abiotic characteristics, picophytoplankton/bacterioplankton ratios, and phytoplankton size structure. Contrarily, no clear trend was identified for the group of turbid lakes. The contrasting results obtained for the importance of the picoplankton components in phytoplankton-turbid shallow lakes evidence that the availability of the energetical and nutrient resources cannot be solely considered to predict their relative importance in this type of shallow lake.  相似文献   

17.
Commercial antifouling formulations containing TBT are the major source of organotin contamination in coastal waters. In view of the persisting TBT residues (13 ng Sn l−1) in the coastal waters of South Korea, an attempt has been made to evaluate the growth response and biochemical composition of laboratory-cultured Nannochloropsis oculata to TBT toxicity. It is evident that the persisting concentration level of TBT is high enough to cause adverse effect on the microalgal species. The EC50 (24 h) was found to be at 0.89 nM level of TBT for this marine eustigmatophyte N. oculata. Photosynthetic pigment content was significantly affected. At elevated TBT concentrations of 1.0 nM, especially pronounced changes in biochemical composition was found. TBT tolerance of N. oculata and its growth as well as biochemical responses are discussed.  相似文献   

18.
《水文科学杂志》2013,58(1):253-265
Abstract

Measurements of dielectric permittivity and electrical conductivity were taken in a saline gypsiferous soil collected from southern Tunisia. Both time domain reflectometry (TDR) and the new WET sensor based on frequency domain reflectometry (FDR) were used. Seven different moistening solutions were used with electrical conductivities of 0.0053–14 dS m?1. Different models for describing the observed relationships between dielectric permittivity (K a ) and water content (θ), and bulk electrical conductivity (EC a ) and pore water electrical conductivity (EC p ) were tested and evaluated. The commonly used K a –θ models by Topp et al. (1980) and Ledieu et al. (1986) cannot be recommended for the WET sensor. With these models, the RMSE and the mean relative error of the predicted θ were about 0.04 m3 m?3 and 19% for TDR and 0.08 m3 m?3 and 54% for WET sensor measurements, respectively. Using the Hilhorst (2000) model for EC p predictions, the RMSE was 1.16 dS m?1 and 4.15 dS m?1 using TDR and the WET sensor, respectively. The WET sensor could give similar accuracy to TDR if calibrated values of the soil parameter were used instead of standard values.  相似文献   

19.
由于严重的水体富营养化,太湖长期暴发蓝藻水华,这些蓝藻在代谢及消亡过程中大量释放包括腐植酸在内的有机物,不仅影响供水水质,并且进一步加重了水华程度.以太湖水华优势藻种——水华微囊藻(Microcystis flos-aquae T34)为研究对象,对藻株生长周期中的藻细胞、浮游细菌进行计数,并使用TOC仪与三维荧光光谱对培养液中提取的腐殖酸进行定量与定性分析,探究水华微囊藻在生长过程中藻细胞密度、浮游细菌密度与腐殖酸浓度的变化规律.结果表明,培养液中腐殖酸浓度的变化趋势与细菌数量变化趋势一致,但与细菌数量曲线拐点相比,腐殖酸浓度曲线拐点出现两周的延迟.腐殖酸产量在藻细胞对数期较低,当水华微囊藻进入稳定期与衰亡期后,腐殖酸大量产生,其浓度迅速增加,最高可达到28.6 mg/L.根据三维荧光光谱分析,水华微囊藻所产生的腐殖酸特征峰出现在(235~245 nm)/(380~425 nm),属于类富里酸荧光峰.本研究初步探究蓝藻与水体腐殖酸之间的关系,为水体腐殖酸来源的研究提供了新的思路.  相似文献   

20.
群体微囊藻附生细菌特性   总被引:1,自引:0,他引:1       下载免费PDF全文
附生细菌在微囊藻水华暴发过程中可能发挥了重要作用,但是,缺少关于微囊藻附生细菌特性的研究报道.本文从4种群体微囊藻(铜绿微囊藻、惠氏微囊藻、水华微囊藻和坚实微囊藻)中分离得到了18种附生细菌,分别隶属于六大类群:α-变形菌纲、β-变形菌纲、γ-变形菌纲、放线菌纲、纤维粘网菌纲和黄杆菌纲.BIOLOG板分析显示除了α-变形菌纲中的2种细菌以及放线菌纲中的1种细菌以外,其余细菌都能够利用10种以上的碳源.18种附生细菌中有12种具有趋化性,12种具有疏水性,14种具有自聚能力.除了黄杆菌纲菌株都具有亲水性外,其余5大类群菌株都含有疏水性种类.六大类群中都含有具有趋化性和自聚能力的种类.每种微囊藻中的大多数附生细菌种类都能利用10种以上的碳源,都具有疏水性.每种微囊藻中至少有一组细菌表现出共聚能力.除了水华微囊藻外,其余3种微囊藻中附生细菌的大多数种类都具有趋化性.除了惠氏微囊藻外,其余3种微囊藻的附生细菌中大多数种类都具有自聚能力.结果显示细菌旺盛的代谢潜力、趋化性、疏水性、自聚能力和共聚能力可能有利于附生细菌定殖于微囊藻群体.  相似文献   

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