0000000000434971

AUTHOR

Nico Salmaso

showing 9 related works from this author

A European Multi Lake Survey dataset of environmental variables, phytoplankton pigments and cyanotoxins

2018

Under ongoing climate change and increasing anthropogenic activity, which continuously challenge ecosystem resilience, an in-depth understanding of ecological processes is urgently needed. Lakes, as providers of numerous ecosystem services, face multiple stressors that threaten their functioning. Harmful cyanobacterial blooms are a persistent problem resulting from nutrient pollution and climate-change induced stressors, like poor transparency, increased water temperature and enhanced stratification. Consistency in data collection and analysis methods is necessary to achieve fully comparable datasets and for statistical validity, avoiding issues linked to disparate data sources. The Europea…

Ecologia dels llacsData DescriptorWater resourcesAquatic Ecology and Water Quality Managementthermocline010504 meteorology & atmospheric sciencesvesien tilaphytoplankton pigments010501 environmental sciences01 natural sciencesEcosystem servicesympäristön tilaBU Contaminants & ToxinsEnvironmental monitoringLimnologylakesddc:550Canvi climàticGeosciences MultidisciplinarySurveyComputingMilieux_MISCELLANEOUSddc:333.7-333.9Climate-ChangeEurope LakesEnvironmental resource management[Belirlenecek]Climate-change ecologyplanktonEutrophication6. Clean waterComputer Science ApplicationsEuropeDisparate systemdatainternationalBloomStatistics Probability and UncertaintyEuropaEnvironmental MonitoringInformation Systemsenvironmental variablesStatistics and ProbabilityBiological pigmentsFitoplànctonClimate ChangeCyanotoxinsta1172BU Contaminanten & ToxinesClimate changeobservation designLibrary and Information SciencesCyanobacteriajärvetEducationEuropean Multi Lakecyanotoxinsddc:570Life ScienceEcosystem14. Life underwaterdatabase creation objectivesyanobakteerit0105 earth and related environmental sciencesWIMEKbusiness.industrydata analysis objectivenutrientmuuttujatPigments Biological15. Life on landClimatic changesdataset ; environmental variables ; phytoplankton ; pigments ; cyanotoxinsmikrolevätAquatische Ecologie en WaterkwaliteitsbeheerEnvironmental variablesPhytoplankton pigmentsMultidisciplinär geovetenskapClimatic changeWater resourcesLakes13. Climate actionNutrient pollutionPhytoplanktonEnvironmental science[SDE.BE]Environmental Sciences/Biodiversity and EcologybusinessEutrophicationLake ecologyCanvis climàticsWatersScientific Data
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Impairing the largest and most productive forest on our planet: how do human activities impact phytoplankton?

2012

This article summarizes the outcomes of the 16th Workshop of the International Association for Phytoplankton Taxonomy and Ecology. Four major issues dealing with the impact exerted by human activities on phytoplankton were addressed in the articles of this special volume: climate change and its impacts on phytoplankton, the role of land use in shaping composition and diversity of phytoplankton, the importance of autecological studies to fully understand how phytoplankton is impacted by stressors and the role of ecological classification to evaluate community changes due to the different impacts. Case studies from different types of aquatic environments (rivers, deep and shallow lakes, reser…

Land useEcologyAquatic ecosystemClimate change Eutrophication Land use Functional classification Autoecology ModellingClimate changeFunctional classificationSubtropicsAquatic ScienceEutrophicationModellingOverexploitationSettore BIO/07 - ECOLOGIAPhytoplanktonLand useSettore BIO/03 - Botanica Ambientale E ApplicataTemperate climateEnvironmental scienceClimate changeEutrophicationAutoecology
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Stratification strength and light climate explain variation in chlorophyll a at the continental scale in a European multilake survey in a heatwave su…

2021

The authors acknowledge COST Action ES 1105 "CYANOCOST Cyanobacterial blooms and toxins in water resources: Occurrence impacts and management" and COST Action Global Change Biology ES 1201 NETLAKE -Networking Lake Observatories in Europe" for contributing to this study through networking and knowledge sharing with European experts in the field. We acknowledge the members of the Global Lake Ecological Observatory Network (GLEON) for their collaborative spirit and enthusiasm that inspired the grassroots effort of the EMLS. E.M. was supported by a grant from the Swiss State Secretariat for Education, Research and Innovation to Bas Ibelings and by supplementary funding from University of Geneva…

0106 biological sciencesTemperateAquatic Ecology and Water Quality Management010504 meteorology & atmospheric sciencesChlorophyll aCYANOBACTERIAL BLOOMSMediterraneanOceanography01 natural sciencesFilamentous cyanobacteriaPHYTOPLANKTON DYNAMICSKlimatforskningPhotosystem-IIClimate changePhytoplankton biomasschlorophyllTemperature anomalyPhytoplankton Dynamicsmedia_commonFilamentous CyanobacteriaEcologyplanktonTEMPERATEDissolved Organic-MatterPlan_S-Compliant_NOArtEutrophicationBiological Sciences6. Clean waterEuropekesäinternationalEUTROPHICATION1181 Ecology evolutionary biologyarticleslämpötilaGREEN-ALGAENatural SciencesLAKESSHALLOWklorofylliThermal stratificaitonClimate Researchmedia_common.quotation_subjectmultilake surveyCyanobacterial BloomsAquatic Sciencephytoplankton ; European lakes ; climate change ; large scale ; light ; stratification ; nutrientsjärvetstratificationHeat wavelimnologiaPHOTOSYSTEM-IISettore BIO/07 - ECOLOGIAddc:570Life Sciencebiomassa (ekologia)0105 earth and related environmental sciencesEkologiGreen-AlgaeWIMEKFILAMENTOUS CYANOBACTERIA010604 marine biology & hydrobiologyilmastonmuutoksetmikrolevätAquatische Ecologie en WaterkwaliteitsbeheerSurface temperatureLakesShallow13. Climate actionDISSOLVED ORGANIC-MATTER; CYANOBACTERIAL BLOOMS; PHYTOPLANKTON DYNAMICS; FILAMENTOUS CYANOBACTERIA; PHOTOSYSTEM-II; GREEN-ALGAE; LAKES; EUTROPHICATION; SHALLOW; TEMPERATEPhytoplanktonDISSOLVED ORGANIC-MATTERkerrostuneisuusHumanitiesvalo
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Functional classifications and their application in phytoplankton ecology

2015

SUMMARY 1. Ecologists often group organisms based on similar biological traits or on taxonomic criteria. However, the use of taxonomy in ecology has many drawbacks because taxa may include species with very different ecological adaptations. Further, similar characters may evolve independently in different lineages. 2. In this review, we examine the main criteria that have been used in the identification of nine modes of classifying phytoplankton non-taxonomically. These approaches are based purely on morphological and/or structural traits, or on more complex combinations including physiological and ecological features. 3. Different functional approaches have proved able to explain some frac…

EcotypeEcologyFunctional classificationsAquatic ScienceBiologyEcological redundancyTaxonomical classificationsEcological indicatorsEcological indicatorTaxonecological indicators ecological redundancy functional classifications phytoplankton taxonomical classificationsSingle speciesSettore BIO/07 - ECOLOGIAPhytoplanktonPhytoplanktonSettore BIO/03 - Botanica Ambientale E Applicata
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Studies on the zooplankton of the deep subalpine Lake Garda

1999

The specific composition and seasonal dynamics of the zooplankton of Lake Garda have been studied through monthly surveys in two annual cycles (December 1994-November 1995 and January-December 1997). The assemblage is largely dominated by Copipo-diaptomus steueri, a typical calanoid presently identified in deep (Garda, Iseo) and shallow lakes of NE Italy and in the hinterland of the central Adriatic region (Dalmatia and Marche Region). Cladocerans and the smaller rotifers represent a significant component of the zooplankton from spring to autumn. A re-examination of the results obtained in previous studies does not seem to demonstrate substantial shifts in the composition of the dominant sp…

lcsh:GE1-350Sida crystallinaEcologyEcologyFragmentation (computing)lcsh:Geography. Anthropology. RecreationBiologyAquatic ScienceZooplanktonZooplanktonOceanographylcsh:GLake gardaAquatic scienceSeasonal dynamicMontane ecologyzooplankton seasonal dynamics Lake Garda deep lakesDeep lakelcsh:GB3-5030lcsh:Physical geographylcsh:Environmental sciencesTrophic levelWater Science and Technology
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Phytoplankton assemblages respond differently to climate warming and eutrophication : A case study from Pyhäjärvi and Taihu

2016

Abstract Long-term monitoring data from two lakes located at different latitudes were used to test the hypothesis that phytoplankton communities respond differently to environmental changes (e.g., global warming and anthropogenic activities, mainly eutrophication). Lake Pyhajarvi (temperate area) and Lake Taihu (subtropical area) are both shallow and productive lakes. Presence/absence data indicated that phytoplankton taxa present did not change significantly in the two lakes over the last two decades. However, biomass data showed that dominance relationships of species changed in both lakes. Results of assemblage ordination indicated that climate change played a vital role in mediating phy…

0106 biological sciencesLake warmingClimate change010501 environmental sciencesAquatic ScienceCyanobacteriaglobal warming01 natural sciencesPlanktothrixSettore BIO/07 - ECOLOGIAPhytoplanktonTemperate climateDominance (ecology)14. Life underwaterEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesLake PyhäjärviEcologybiologyEcology010604 marine biology & hydrobiologyshallow lakesGlobal warming15. Life on landPlanktonbiology.organism_classificationeutrophicationLake Taihu13. Climate actionEnvironmental scienceta1181EutrophicationJournal of Great Lakes Research
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Phytoplankton responses to human impacts at different scales

2012

This book: Deals with eutrophication impact on ecosystem functioning with a different focus and broader perspective. Takes into account the effects of multiple stressors on microalgal assemblages. Includes specific contributions on the autoecology and taxonomy of dinoflagellates and cyanobacteria. Features examples of applications of the morphology-, morpho-functional and functional groups (FG), (MFG) and (MBFG) Phytoplankton responses to human impact at different scales provides a state-of-the-art review of changes in the phytoplankton assemblages determined by human alterations of lakes and rivers. A wide spectrum of case studies describe the effects due to eutrophication and climate chan…

OceanographyEcologyPhytoplanktonSettore BIO/03 - Botanica Ambientale E ApplicataEnvironmental scienceAnthropogenic Impacts Climate Change Effects Phytoplankton Functional Groups Phytoplankton Molecular Taxonomy Phytoplankton Responses
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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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Tracking management-related water quality alterations by phytoplankton assemblages in a tropical reservoir

2015

Water quality improvement and suppression of cyanobacterial blooms were planned in a eutrophic reservoir in southern China through ecological engineering measures from 2006 to 2011. This consisted in (i) a hydraulic resetting of inflows and outflows to increase the distance between inlet and outlet and the water residence time in the reservoir, and in (ii) the installation of floating frames hosting wetland vegetation to promote an alteration in phytoplankton composition. The environmental changes were therefore followed through the analysis of biotic responses in phytoplankton assemblages. Ecological engineering was effective in reducing phytoplankton total biomass, in re-establishing more…

0106 biological sciencesGeneralized additive modellingContext (language use)Aquatic Science010603 evolutionary biology01 natural sciencesMorpho-functional groupsC–S–R-modelSettore BIO/07 - ECOLOGIAPhytoplanktonRuderal speciesReservoirTrophic levelHydrologyPhytoplankton Morpho-functional groups C–S–R-model Generalized additive modelling Ecological engineering Reservoirgeographygeography.geographical_feature_categoryEcology010604 marine biology & hydrobiologyEcological engineeringInletEcological engineeringPhytoplanktonSettore BIO/03 - Botanica Ambientale E ApplicataEnvironmental scienceWater qualityEutrophication
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