Search results for "TROPHIC POSITION"

showing 7 items of 7 documents

Environmental and biological factors are joint drivers of mercury biomagnification in subarctic lake food webs along a climate and productivity gradi…

2021

Subarctic lakes are getting warmer and more productive due to the joint effects of climate change and intensive land-use practices (e.g. forest clear-cutting and peatland ditching), processes that potentially increase leaching of peat- and soil-stored mercury into lake ecosystems. We sampled biotic communities from primary producers (algae) to top consumers (piscivorous fish), in 19 subarctic lakes situated on a latitudinal (69.0-66.5 degrees N), climatic (+3.2 degrees C temperature and +30% precipitation from north to south) and catchment land-use (pristine to intensive forestry areas) gradient. We first tested how the joint effects of climate and productivity influence mercury biomagnific…

010504 meteorology & atmospheric sciencesBiomagnificationTROPHIC POSITIONmaankäyttö010501 environmental sciencesMETHYLMERCURY01 natural sciencesFood chainBiological FactorsONTARIO LAKESCHAIN STRUCTUREClimate changeympäristömyrkytWaste Management and DisposalLand-useApex predatorTrophic levelkalatStable isotopes2. Zero hungerFRESH-WATEREcologyFishesvesiekosysteemitBIOACCUMULATIONselkärangattomatPollutionSubarctic climateclimate changeProductivity (ecology)Environmental MonitoringFood chain lengthEnvironmental EngineeringFood Chainelohopeachemistry.chemical_elementstable isotopeskasautuminenWHITEFISHland-useEnvironmental ChemistryAnimalsravintoketjutEcosystem1172 Environmental sciences0105 earth and related environmental sciencesfishfood chain lengthLake ecosystemMercury15. Life on landilmastonmuutoksetCHARR SALVELINUS-ALPINUSinvertebratesInvertebratesMercury (element)LakesFishchemistryisotooppianalyysi13. Climate actionEnvironmental scienceMARINEWater Pollutants Chemical
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From clear lakes to murky waters – tracing the functional response of high-latitude lake communities to concurrent ‘greening’ and ‘browning’

2019

Climate change and the intensification of land use practices are causing widespread eutrophication of subarctic lakes. The implications of this rapid change for lake ecosystem function remain poorly understood. To assess how freshwater communities respond to such profound changes in their habitat and resource availability, we conducted a space-for-time analysis of food-web structure in 30 lakes situated across a temperature-productivity gradient equivalent to the predicted future climate of subarctic Europe (temperature +3 degrees C, precipitation +30% and nutrient +45 mu g L-1 total phosphorus). Along this gradient, we observed an increase in the assimilation of pelagic-derived carbon from…

0106 biological sciencesDYNAMICSIMPACTSFood Chainecological stable statesClimate ChangeTROPHIC POSITION010603 evolutionary biology01 natural sciencesjärvetspace-for-time114 Physical sciencesFISHhabitat couplingstable isotope analysisVDP::Mathematics and natural scienses: 400::Zoology and botany: 480FOR-TIME SUBSTITUTIONSPACEEcosystem14. Life underwaterHABITATEcology Evolution Behavior and SystematicsEcosystemIsotope analysisTrophic levelCLIMATE-CHANGEEcology010604 marine biology & hydrobiologyrehevöityminencryptic energetic pathwaysLake ecosystemSHIFTSPelagic zoneeliöyhteisöt15. Life on landSubarctic climateFood webEuropetrophic nicheLakes13. Climate actionBenthic zoneVDP::Matematikk og naturvitenskap: 400::Zoologiske og botaniske fag: 4801181 Ecology evolutionary biologyEnvironmental scienceta1181FOOD-WEBympäristönmuutoksetravintoverkot
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Ontogenetic shift in the trophic role of the invasive killer shrimp Dikerogammarus villosus: a stable isotope study

2021

AbstractThe introduction of the amphipod Dikerogammarus villosus in European fresh waters is to date recognized as a threat to the integrity of invaded communities. Predation by D. villosus on native benthic invertebrates is assumed as the key determinant of its ecological impact, yet available information describe the species as a primary consumer as well as a carnivore depending on local conditions. Here, we assessed the trophic position (TP) of D. villosus in Lake Trasimeno, a recently invaded lentic system in central Italy, using the CN isotopic signatures of individuals captured in winter spanning two orders of magnitude in body size. TP estimations were compared with those characteriz…

0106 biological sciencesEcologybiologyEcologyConsumer010604 marine biology & hydrobiologymedia_common.quotation_subjectLake ecosystemDikerogammarus villosusErpobdella octoculataBody sizeTrophic positionbiology.organism_classification010603 evolutionary biology01 natural sciencesCompetition (biology)PredationBody size Killer shrimp Ontogeny Stable isotopes Trophic positionKiller shrimpOntogenyEcology Evolution Behavior and SystematicsTrophic levelInvertebratemedia_commonStable isotopes
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Different trophic positions among social vespid species revealed by stable isotopes

2021

The social vespid wasps are common insect predators and several species behave in unison in the same biotopes. It is commonly accepted that social wasps are mainly opportunistic generalist predators without differences in prey selection and hence they compete for the same food resources. Trophic positions of six vespid wasp species and their potential prey from four sites in Finland and one in the UK were evaluated using carbon and nitrogen stable isotopes (δ13C and δ15N). The difference in isotope values indicated different trophic positions among species. In general, Dolichovespula spp. showed higher δ15N values than Vespula spp., which suggests that Dolichovespula forage on higher trophi…

Ecology Conservation and Global Change BiologyhiilicarbonScienceQDolichovespulayhteiskuntahyönteisetnitrogentrophic positionekologinen lokerotyppiisotooppianalyysihyönteisetinsectVespulaampiaisetravintoketjutResearch ArticlesRoyal Society Open Science
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An individual-based dataset of carbon and nitrogen isotopic data of Callinectes sapidus in invaded Mediterranean waters

2022

The characterisation of functional traits of non-indigenous and invasive species is crucial to assess their impact within invaded habitats. Successful biological invasions are often facilitated by the generalist diet of the invaders which can modify their trophic position and adapt to new ecosystems determining changes in their structure and functioning. Invasive crustaceans are an illustrative example of such mechanisms since their trophic habits can determine important ecological impacts on aquatic food webs. The Atlantic blue crab Callinectes sapidus is currently established and considered invasive in the Mediterranean Sea where it has been recorded for the first time between 1947 and 19…

PortunoideaArthropodaBrachyuraQH301-705.5Eubrachyuratrophic positioninvasive speciesPleocyemataDecapodainvasive specieHeterotremataPortuninaestable isotopeAnimaliaPortunidaeBiology (General)MalacostracaEcology Evolution Behavior and SystematicsTECNOLOGIA DEL MEDIO AMBIENTEtransitionalEcologyInvasive speciesInvaded Stable methodologyfungifood and beveragesisotopic nicheBiotaAtlantic blue crabtransitional waterCallinectesAtlantic blue crab Invasive species isotopic niche stable isotope transitional water trophic positionCallinectes sapidusBiodiversity Data Journal
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Baseline assessment of heavy metals content and trophic position of the invasive blue swimming crab Portunus segnis (Forskål, 1775) in the Gulf of Ga…

2018

This study provides a baseline assessment of cadmium, copper, iron, manganese, lead, and zinc concentrations in muscles, gills, and exoskeleton of the Lessepsian blue swimming crab Portunus segnis captured in the Gulf of Gabès (Southern Mediterranean Sea, Tunisia) in November 2015. Furthermore, the species’ trophic position is estimated using CN stable isotope analysis. The exoskeleton showed the lowest metal contents; in soft tissues, the essential Cu, Fe, and Zn and the non-essential Cd, Mn, and Pb showed the highest and lowest concentrations, respectively. The crab was characterized by a trophic position of 3.32, confirming its carnivorous trophic habits. Compared with literature data on…

Settore BIO/07 - EcologiaGills0106 biological sciencesGillMediterranean climateFood ChainTunisiaBrachyurachemistry.chemical_elementZoologyPortunus segni010501 environmental sciencesAquatic ScienceBiologyOceanography01 natural sciencesAnimal ShellMediterranean seaAnimal ShellsBaselineMetals HeavyMediterranean SeaAnimalsTissue Distribution0105 earth and related environmental sciencesInvertebrateIsotope analysisTrophic levelCadmiumAnimalStable isotope ratioMuscles010604 marine biology & hydrobiologyFishesTrophic positionStable isotopePollutionHeavy metalchemistryGillMuscleBiological invasionFisheWater Pollutants ChemicalEnvironmental MonitoringMarine Pollution Bulletin
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Cross-validation of δ15N and FishBase estimates of fish trophic position in a Mediterranean lagoon: The importance of the isotopic baseline

2013

Abstract FishBase, a relational database freely available on the Internet, is to date widely used as a source of quantitative information on the trophic position of marine fish species. Here, we compared FishBase estimates for an assemblage of 30 fish species sampled in a Mediterranean lagoon (Acquatina lagoon, SE Italy) with their trophic positions calculated using nitrogen stable isotopes. To assess the influence of the trophic level used to compute the baseline indicator on the robustness of isotopic estimations, we compared the trophic position of fish calculated using the average δ 15 N signature of either basal resource or primary consumer taxa measured at three stations located in th…

Settore BIO/07 - EcologiaMediterranean climateConsumerEcologyδ15Nfish trophic position food web isotopic baseline lagoonAquatic ScienceBiologyOceanographyfish trophic position d15N isotopic baseline food web lagoonFood webPredationFishBaseBaseline IndicatorTrophic levelEstuarine, Coastal and Shelf Science
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