Search results for "Microcystis aeruginosa"

showing 7 items of 7 documents

Effect ofMicrocystis aeruginosa andNodularia spumigena on survival ofEurytemora affinis and the embryonic and larval development of the Baltic herrin…

2003

Laboratory experiments were carried out to investigate the effect of two strains of Microcystis aeruginosa and a strain of Nodularia spumigena on the survival of Eurytemora affinis (Copepoda) and on the embryonic and larval development of the Baltic spring-spawning herring Clupea harengus membras. The trials were made in water taken from Parnu Bay, at a salinity of 3.7–5.1 psu, a constant temperature (15°C ± 1°C in trials with Eurytemora and herring embryos; 18°C ± 2°C with herring larvae), and an oxygen concentration of 8.8–10.4 ppm. The strains tested had a negative impact on the survival of Eurytemora, as well as on the embryonic development and hatching regime of the Baltic herring. In …

Baltic StatesMicrocystisMicrocystinsOceans and SeasHealth Toxicology and MutagenesisZoologyManagement Monitoring Policy and LawCyanobacteriaToxicologyPeptides CyclicCopepodaHerringAnimalsMicrocystis aeruginosaLarvabiologyHatchingEcologyfungiFishesGeneral MedicineClupeabiology.organism_classificationCrustaceanClupeidaeBayEnvironmental Toxicology
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Temperature-related changes in polar cyanobacterial mat diversity and toxin production

2012

This study documents the effects of warming on cyanobacterial mats from the Arctic and Antarctica. It describes toxin production in such mats and provides experimental evidence that increased temperatures could shift mat cyanobacterial species diversity from cold-loving species towards predominance of cold-tolerant and toxin-producing species.

EcologyToxinmedicineSpecies diversityMicrocystis aeruginosaEnvironmental Science (miscellaneous)Biologybiology.organism_classificationmedicine.disease_causeBiological sciencesSocial Sciences (miscellaneous)The arcticNature Climate Change
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Toxic cyanobacterial blooms in reservoirs under a semiarid Mediterranean climate: the magnification of a problem

2007

Sicilian reservoirs constitute the most important water resources available on the island. During summer 2001, the intense water utilization of Lake Arancio reservoir reduced the water level significantly. This coincided with the formation of intense blooms formed by the microcystin-producing cyanobacterium Microcystis aeruginosa. During summer 2003, Lake Arancio was continuously filled and the vertical stratification of the water column was maintained, resulting in 5-6 fold lower cell numbers of Microcystis aeruginosa. For both years a significant linear relationship between microcystin net production and Microcysytis cell division was observed, implying that Microcystis cell numbers can b…

Mediterranean climatemicrocystinMicrocystisMicrocystinsHealth Toxicology and MutagenesisClimateBacterial ToxinsFresh WaterMicrocystinManagement Monitoring Policy and LawToxicologyCyanobacteriaArticleenvironmental managementWater columnMicrocystispolycyclic compoundsMicrocystis aeruginosaMicrocystis aeruginosaSicilychemistry.chemical_classificationbiologyEcologyMediterranean Regionrisk assessmentPlanktothrix rubescenGeneral Medicinebiology.organism_classificationWater levelWater resourceschemistryEnvironmental scienceSeasonsBloomEnvironmental Monitoring
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Water residence time and the dynamics of toxic cyanobacteria

2012

SUMMARY 1. Climate change affects aquatic ecosystems differently depending on local conditions. In the Mediterranean region, predicted drier seasons could especially affect lake water residence time and in consequence cyanobacteria and cyanotoxin dynamics. 2. We carried out a 3-year study of a shallow, Mediterranean lake (Lake Albufera, Spain), to study the effects of water residence time and other drivers on the dynamics of harmful cyanobacteria and microcystin concentrations (MCYST). 3. Longer water residence time in dry years and dry seasons increased total cyanobacteria biomass, Microcystis aeruginosa populations and MCYST concentrations in the lake water and seston. Droughts increased …

chemistry.chemical_classificationeducation.field_of_studybiologyEcologySestonPopulationMicrocystinAquatic ScienceCyanotoxinbiology.organism_classificationAnimal scienceHydrology (agriculture)Water columnchemistryMicrocystisEnvironmental scienceMicrocystis aeruginosaeducationFreshwater Biology
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Effect of a cyanobacterial diet on the competition between rotifers: a case study in Lake Albufera of Valencia, Spain

2019

espanolBrachionus havanaensis se distribuye predominantemente en las regiones Neartica y Neotropical. Ahora se encuentra incluso en las regiones Paleartica y Oriental. Durante el verano de 2015, encontramos altas densidades (> 500 ind./l) de esta especie y bajas abundancias de Brachionus angularis en la laguna de la Albufera, donde la cianobacteria (Microcystis aeruginosa) fue dominante en la comunidad de fitoplancton. Nuestra hipotesis fue que la cianobacteria era toxica para B. angularis pero no para B. havanaensis, por lo que este ultimo superaria al primero en presencia de dicha cianobacteria. Para probar la hipotesis, realizamos experimentos de competencia entre estas dos especies de r…

education.field_of_studyEcologybiologyPopulationBrachionus angularisAquatic Sciencebiology.organism_classificationBrachionus havanaensisMicrocystisBotanyNannochloropsis oculataMicrocystis aeruginosaeducationWater Science and TechnologyMixed dietLimnetica
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Data from: The importance of phytoplankton biomolecule availability for secondary production

2018

The growth and reproduction of animals is affected by their access to resources. In aquatic ecosystems, the availability of essential biomolecules for filter-feeding zooplankton depends greatly on phytoplankton. Here, we analyzed the biochemical composition, i.e., the fatty acid, sterol and amino acid profiles and concentrations as well as protein, carbon, nitrogen, and phosphorus content of 17 phytoplankton monocultures representing the seven most abundant phytoplankton classes in boreal and sub-arctic lakes. To examine how the differences in the biochemical composition between phytoplankton classes affect their nutritional quality for consumers, we assessed the performance of Daphnia, on …

freshwater food websMallomonas kalinaeDaphnia magnaSynura peterseniiRhodomonas minutasterolsNavicula pelliculosaStephanodiscus hantzschiiEuglena sp.medicine and health careAcutodesmus sp.Pediastrum privumCyclotella meneghinianaCryptomonas 336Peridinium sp.Microcystis aeruginosaSelenastrum sp.Cryptomonas ozoliniifungiLife sciencesMonoraphidium griffithiiMedicineAmino acidscryptophytesChlamydomonas reinhardtiiPseudanabaena tremula
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Temperature effects explain continental scale distribution of cyanobacterial toxins

2018

Insight into how environmental change determines the production and distribution of cyanobacterial toxins is necessary for risk assessment. Management guidelines currently focus on hepatotoxins (microcystins). Increasing attention is given to other classes, such as neurotoxins (e.g., anatoxin-a) and cytotoxins (e.g., cylindrospermopsin) due to their potency. Most studies examine the relationship between individual toxin variants and environmental factors, such as nutrients, temperature and light. In summer 2015, we collected samples across Europe to investigate the effect of nutrient and temperature gradients on the variability of toxin production at a continental scale. Direct and indirect…

light climate0106 biological sciencesthermoclineBacterial toxinstoksiinitlimit of quantitationToxines bacterianesMicrocystin-LRToxicology01 natural sciencesAnatoxin-aanalogs and derivativesBLOOMSDirect EffectsuracilWater Pollutantschemistry.chemical_classificationTemperaturesFRESH-WATERlatitudemaximum buoyancy frequency6. Clean waterclimate changeIndirect effectsEUTROPHICATIONmicrocystin RRarticlesGROWTHlämpötilaLAKESmicrocystin; anatoxin; cylindrospermopsin; temperature; direct effects; indirect effects; spatial distribution; European Multi Lake Surveyepilimnetic temperatureta1172cyanobacteria lakes climate warming microcystin; anatoxin; cylindrospermopsin; temperature; direct effects; indirect effects; spatial distribution; European Multi Lake SurveyZoologyArticlewater pollutantMICROCYSTIS-AERUGINOSAAlkaloidsSettore BIO/07 - ECOLOGIANATURAL SCIENCES. Biology.Spatial distributionMicrocystis aeruginosaUracillakesyanobakteeritIndirect Effectsliquid chromatography-mass spectrometry1172 Environmental sciencesEkologinutrient010604 marine biology & hydrobiologylcsh:RmicrobiologyClimatic changesmicrocystin LRAnatoxinLakesSpatial Distributionchemistrynodularinmicrobial diversityphytoplanktonta1181CylindrospermopsinTropanesCyanobacteriaAquatic Ecology and Water Quality ManagementanalysisHealth Toxicology and Mutagenesislcsh:Medicineenvironmental parameters010501 environmental sciencesmedicine.disease_causenitrogenchemistry.chemical_compoundsea surface temperatureenvironmental factorddc:550Canvi climàticphosphorusPRIRODNE ZNANOSTI. Biologija.limit of detectionEcologyCyanobacteria ToxinsbiologyTemperaturelevinneisyysmicrocystin ; anatoxin ; cylindrospermopsin ; temperature ; direct effects ; indirect effects ; spatial distribution ; European Multi Lake SurveyNodularintropane derivativeEuropeDAPHNIA-MAGNAİndirect EffectsCylindrospermopsinDirect effectsmicrobial communityEnvironmental Monitoringhigh performance liquid chromatographyMicrocystinsClimate ChangeBacterial ToxinsMicrocystinMicrocystinCyanobacteriavälittömät oikeusvaikutuksetcyanobacteriumddc:570geographic distributionmedicinebacterial toxincontrolled studyddc:610Institut für Biochemie und Biologie0105 earth and related environmental sciencesnonhumanWIMEKToxinlongitudePHYTOPLANKTON ASSEMBLAGESEuropean Multi Lake SurveyAquatic EcologyNITROGEN AVAILABILITYanatoxin aAquatische Ecologie en Waterkwaliteitsbeheerbiology.organism_classificationClimatic changeCLIMATE13. Climate actionresponse variableCanvis climàtics
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