136 resultados para Microcystis aeruginosa


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研究了2.3 mM(ALK2.3)和12.4 mM(ALK12.4)HCO3-对铜绿微囊藻(Microcystis aeruginosaFACHB 927)生长与光合特性的影响。实验结果表明,ALK2.3显著抑制铜绿微囊藻的生长,至培养结束,与对照相比对生物量的抑制率为38%,ALK12.4条件下虽然至培养结束生物量没有显著变化,但碱度增加铜绿微囊藻生物量有一个快速的增殖期,之后其生长速率持续下降。碱度增加强烈抑制光合色素Chla的合成,ALK2.3和ALK12.4条件下对Chla含量抑制率分别为74%和

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研究了不同重碳酸盐(HCO3-)碱度2.3mmol/L(ALK2.3)和12.4mmol/L(ALK12.4)对铜绿微囊藻(Mi-crocystis aeruginosa FACHB 905)生长、光合特性、丙二醛(MDA)含量和超微结构的影响。实验结果表明,与对照相比碱度增加对铜绿微囊藻生物量抑制率分别为7%(ALK2.3)和55%(ALK12.4)。对光合色素Chla含量的抑制率分别为22%(ALK2.3)和88%(ALK12.4)。Chla/PC与对照相比先升高后降低。ALK2.3前期显著抑制光合活

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2001年8月对保安湖大型底栖动物进行调查,共记录动物4门7纲25科54属70种。其中,软体动物为绝对优势类群(占总丰度的81.5%)。而腹足类的纹沼螺(Parafossarulus striatulus)、白旋螺(Gyraulus albus)、长角涵螺(Alocinma longicornis)、方格短沟蜷(Semisulcospira libertina)和铜锈环棱螺(Bellamya aeruginosa)为该湖泊的优势种。样点间平均物种丰富度7.1,平均Shannon-Winner指数1.34。

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迄今为止,全球范围内报道了约50种微囊藻Microcystis,中国记录报道的有19种,但一些描述仍较模糊。最近在云南滇池、武汉东湖和南湖、北京、浙江杭州和绍兴等地野外调查中发现一些微囊藻水华含有较高的多样性,其中有3种微囊藻在中国尚未报道:M.novacekii (Komárek) Compère 1974,M.smithii Komárek & Anagnostidis 1995和M.botrys Teiling 1942。本文对这3个新记录种进行形态特征描述。

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根据中国云南滇池藻类样品的观察结果,对中国分布的淡水微囊藻属Microcystis10个常见种的形态特征进行了描述,同时对它们的分类学进行了讨论,并整理出分类检索表。这10种微囊藻是铜绿微囊藻M.aeruginosa、放射微囊藻M.botrys、坚实微囊藻M.firma、水华微囊藻M.flos-aquae、鱼害微囊藻M.ichthyoblabe、挪氏微囊藻M.novacekii、假丝微囊藻M.pseudofilamentosa、史密斯微囊藻M.smithii、绿色微囊藻M.viridis、惠氏微囊藻M.w

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测定了3种微囊藻水华中的优势种类,即铜锈微囊藻(Microcystis aeruginosaK櫣tz .) ,绿色微囊藻(Microcystis viridis(A. Br .)Lemm) ,惠氏微囊藻(Microcystis wesenbergii(Kom.)Kom.) ,以及微囊藻573(Microcystissp.573)的碳酸酐酶活性;研究了无机碳、pH、温度、光强、N/P比等环境因素和外源葡萄糖对铜锈微囊藻碳酸酐酶活性的影响,发现微囊藻碳酸酐酶活性受环境中碳酸氢根浓度的调节,故推断碳酸氢根是铜锈

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用梯度浓度的微囊藻毒素(6.7μg/L、26.7μg/L、66.7μg/L、166.7μg/L、333.8μg/L、1 335.2μg/L)和人工培养的有毒铜绿微囊藻(Microcystis aeruginosa7806)对澳洲水泡螺(Bulinus australinanus)分别进行急性和亚慢性毒性暴露,观察对螺的毒性效应.急性毒性实验结果表明,澳洲水泡螺对微囊藻毒素有很强的耐受力,试验期间(5 d)未发现螺中毒死亡情况,甚至当微囊藻毒素高达1 335.2μg/L时,仍无死亡.亚慢性口服毒性实验结果发

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研究了微囊藻群体从底泥中释放进入水体的过程及这一过程与水体温度、光照及营养盐的关系 ,并比较了底泥和水体中微囊藻群体的生长特性。同时 ,比较了温度对经低温 (4℃ )处理的和处于对数期的Microcystis.sp .94 0的叶绿素荧光强度的影响。结果表明 ,在 15℃ ,30 μEm-2 s-1光照条件下 ,底泥中的微囊藻群体复苏开始启动 ,并于15d后开始上升到水体中。研究表明 ,存在于底泥中的微囊藻群体从底泥中迁移至上层水体的最适条件为 2 0℃ ,30 μEm-2 s-1。分别培养底泥微囊藻群体

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研究了太平湖水库的浮游藻类与营养类型。共发现藻类175种。绿藻门的种类最多(87种),占种类总数的50%。硅藻和蓝藻次之(分别为34和33种),各占19.4%和18.8%。其它5门藻合计21种,仅占种类总数的11.8%。根据营养型分析结果,太平湖目前水质优良,属中营养型水体;但是藻类的优势种类和总氮含量两项指标已达富营养水平,而且微囊藻(Microcystis)水体较多出现,表明该水体已有向富营养化发展的趋势。含磷量较低(总磷0.012mg/L)是浮游藻类进一步大量繁殖的限制因子。为防止水质恶化,除了应控

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本文用磷矿浮选剂S-808的选矿尾水对铜锈环梭螺(Bellamya aeruginosa)作慢性中毒试验,结果表明选矿尾水对母螺所生仔螺产生明显的影响。通过测量仔螺壳大小的变化,获得的数据应用方差分析,得到的差异非常显著。较好地评价了选矿尾水对软体动物的影响。

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Silver and bighead carp were stocked in a large pen to control the nuisance cyanobacterial blooms in Meiliang Bay of Lake Taihu. Plankton abundance and water quality were investigated about once a week from 9 May to 7 July in 2005. Biomass of both total crustacean zooplankton and cladocerans was significantly suppressed by the predation of pen-cultured fishes. There was a significant negative correlation between the N:P weight ratio and phytoplankton biomass. The size-selective predation by the two carps had no effect on the biomass of green alga Ulothrix sp. It may be attributed to the low fish stocking density (less than 40 g m(-3)) before June. When Microcystis dominated in the water of fish pen, the pen-cultured carps effectively suppressed the biomass of Microcystis, as indicated by the significant decline of chlorophyll a in the >38 mu m fractions of the fish pen. Based on the results of our experiment and previous other studies, we conclude that silver and bighead carp are two efficient biomanipulation tools to control cyanobacterial (Microcystis) blooms in the tropical/subtropical eutrophic waters. Moreover, we should maintain an enough stocking density for an effective control of phytoplankton biomass. (C) 2008 Elsevier B.V All rights reserved

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The temporal and vertical fluctuations of size fractionated alkaline phosphatase activity (APA) and kinetics parameters as well as orthophosphate (o-P) and chlorophyll concentrations were investigated after bloom disappearance in two shallow ponds A and B from 27 October 2001 to 15 April 2002. Pond A (Microcystis) bloomed seriously but pond B did not. The data of o-P and chlorophyll suggested that phosphorus was the principal limiting nutrimental element and its vertical flux should be regarded as an important driving factor for algal growth. In pond A, the accumulation of algae-derived detritus after bloom disappearance in overlying water stimulated excretion of algal fraction APA, mainly produced by attached bacteria responsible for detritus decomposition, whereas bacterial fraction APA preferred to function in surface water. Interestingly, completely contrary phenomena were observed in pond B. In season, even though no obvious difference for size-fractionated APA in both ponds, the total APA in pond A peaked earlier showing higher activity and efficiency (low K-m and high V-max values) as a result of algal-derived detritus input. In summary, it is suggested that the excretion of alkaline phosphatase with strongly catalyzing efficiency and high activity should be taken as important contributor to algal-derived detritus decomposition, further fueling nutrient recycle and accelerating algal development next year. Furthermore, some inhibitors and surfactants were testified to be good tools to identify the origin of dissolved alkaline phosphatase.

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Oxidation-reduction properties of surface sediments are tightly associated with the geochemistry of substances, and reducing organic substances (ROS) from hydrophytes residues may play an important role in these processes. In this study, composition, dynamics, and properties of ROS from anaerobic decomposition of Eichhornia crassipes (Mart.) Solms, Potamogenton crispus Linn, Vallisneria natans (Lour.) Hara, Lemna trisulca Linn and Microcystis flos-aquae (Wittr) Kirch were investigated using differential pulse voltammetry (DPV). The type of hydrophytes determined both the reducibility and composition of ROS. At the peak time of ROS production, the anaerobic decomposition of M. flos-aquae produced 6 types of ROS, among which 3 belonged to strongly reducing organic substance (SROS), whereas there were only 3-4 types of ROS from the other hydrophytes, 2 of them exhibiting strong reducibility. The order of potential of hydrophytes to produce ROS was estimated to be: M. flos-aquae > E. crassipes > L. trisulca > P. crispus approximate to V. natans, based on the summation of SROS and weakly reducing organic substances (WROS). The dynamic pattern of SROS production was greatly different from WROS. The total SROS appeared periodic fluctuation with reducibility gradually weakening with incubation time, whereas the total WROS increased with incubation time. Reducibility of ROS from hydrophytes was readily affected by acid, base and ligands, suggesting that their properties were related to these aspects. In addition to the reducibility, we believe that more attention should be paid to the other behaviors of ROS in surface sediments.

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The endocrine response of crucian carp injected intraperitoneally with extracted microcystins (MC) was investigated in this study. Fish were injected intraperitoneally either with 0.75% NaCl (control) and Microcystis extract corresponding to 150 and 600 mu g microcystins per kg body weight. The plasma levels of triiodothyronine (T-3), thyroxine (T-4), free triiodothyronine (FT3), free thyroxine (FT4), and cortisol were determined at 0, 1, 3, 12, 24. and 48 h post-administration of MC-containing extract. Treated fish displayed abnormal behaviors, Such as a startle response and disoriented swimming, as well as changes in ventilation rates. Plasma cortisol concentrations of fish in both dose groups significantly increased after administration of extracted MC and remained high throughout the experiment, which suggested that MC elicited a stress response in treated fish. The profiles of cortisol changes in treated fish appeared to be dose dependent, indicating that fish in the high dose group experienced greater MC-incluced disturbance. Mortality occurred after 12 h in the high dose group. Plasma levels of T-4, T-3, FT4, and FT3 did not vary significantly between the control fish. In contrast to this, fish exposed to MC-containing extract showed significant declines in T-3, FT4, and FT3 levels in a dose-depenclent manner throughout the experiment. Plasma T4 levels, however, did not vary significantly in the low dose group, whereas they decreased significantly it 48 h post injection in the high dose group. This study demonstrates that administration of microcystins-containing extract causes a stress response and reduces the plasma levels of thyroid hormones in crucian carp. These results illustrate that microcystins exerted potent effects on the endocrine system of crucian carp, through activating their hypothalamus-pituitary- interrenal axis and disturbing thyroid function. (c) 2008 Elsevier Ltd. All rights reserved.

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The aim of this review is to identify problems, find general patterns, and extract recommendations for successful management using nontraditional biomanipulation to improve water quality. There are many obstacles that prevent traditional biomanipulation from achieving expectations: expending largely to remove planktivorous fish, reduction of external and internal phosphorus, and macrophyte re-establishment. Grazing pressure from large zooplankton is decoupled in hypereutrophic waters where cyanobacterial blooms flourish. The original idea of biomanipulation (increased zooplankton grazing rate as a tool for controlling nuisance algae) is not the only means of controlling nuisance algae via biotic manipulations. Stocking phytoplanktivorous fish may be considered to be a nontraditional method; however, it can be an effective management tool to control nuisance algal blooms in tropical lakes that are highly productive and unmanageable to reduce nutrient concentrations to low levels. Although small enclosures increase spatial overlap between predators and prey, leading to overestimates of the impact of predation, microcosm and whole-lake experiments have revealed similar community responses to major factors that regulate lake communities, such as nutrients and planktivorous fish. Both enclosure experiments and large-scale observations revealed that the initial phytoplankton community composition greatly impacted the success of biomanipulation. Long-term observations in Lake Donghu and Lake Qiandaohu have documented that silver carp (Hypophthalmichthys molitrix) and bighead carp (H. nobilis) (two filter-feeding planktivorous species commonly used in management) can suppress Microcystis blooms efficiently. The introduction of silver and bighead carp could be an effective management technique in eutrophic systems that lack macrozooplankton. We confirmed that nontraditional biomanipulation is only appropriate if the primary aim is to reduce nuisance blooms of large algal species, which cannot be controlled effectively by large herbivorous zooplankton. Alternatively, this type of biomanipulation did not work efficiently in less eutrophic systems where nanophytoplankton dominated.