Search results for "Trophic level"

showing 10 items of 324 documents

Phytoplankton structure in different lake types in central Finland

1986

Phyloplankton structure and its relation to physical and chemical properties of the water was studied in 58 central Finnish lakes. The biomass ranged from 0.2 to 14.2 g m−3 and the number of taxa per sample ranged from 33 to 152. The lakes were grouped into 5 types according to their trophic state: eutrophic, dyseutrophic, mesotrophic, oligotrophic, and acid oligotrophic lakes. The average biomass in eutrophic lakes was 5.57 g m−3, in dyseutrophic 3.54 g m−3, 1.23 g m−3 in mesotrophic, 0.52 g m−3 in oligotrophic and 0.39 g −3 in acid oligotrophic lakes. The average number of taxa per sample in the corresponding lake types were 109. 1, 79.3, 97.9, 90.9 and 43.8, respectively. The phytoplankt…

Algal groupBiomass (ecology)AlgaebiologyEcologyPhytoplanktonEnvironmental scienceGreen algaeEutrophicationbiology.organism_classificationEcology Evolution Behavior and SystematicsCommunity typesTrophic levelEcography
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Comparison of the functional responses of invasive and native amphipods

2008

While we can usually understand the impacts of invasive species on recipient communities, invasion biology lacks methodologies that are potentially more predictive. Such tools should ideally be straightforward and widely applicable. Here, we explore an approach that compares the functional responses (FRs) of invader and native amphipod crustaceans. Dikerogammarus villosus is a Ponto-Caspian amphipod currently invading Europe and poised to invade North America. Compared with other amphipods that it actively replaces in freshwaters, D. villosus exhibited significantly greater predation, consuming significantly more prey with a higher type II FR. This corroborates the known dramatic field imp…

Amphipodaanimal structuresIntroduced speciesInvasive speciesPredationinvasive species[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/Ecosystemsfunctional responseSpecies Specificity[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis/dk/atira/pure/subjectarea/asjc/1100AnimalsEcosystemAmphipodaEcosystemTrophic levelPopulation Density/dk/atira/pure/subjectarea/asjc/1100/1101biologyAgricultural and Biological Sciences(all)EcologyDikerogammarus villosuspredictionbiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsEuropeTaxonPredatory BehaviorpredationGeneral Agricultural and Biological Sciencesamphipod[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisResearch Article
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Combined effects of heatwaves and micropollutants on freshwater ecosystems: Towards an integrated assessment of extreme events in multiple stressors …

2022

Freshwater ecosystems are strongly influenced by weather extremes such as heatwaves, which are predicted to increase in frequency and magnitude in the future. In addition to these climate extremes, the freshwater realm is impacted by the exposure to various classes of chemicals emitted by anthropogenic activities. Currently, there is limited knowledge on how the combined exposure to heatwaves and chemicals affects the structure and functioning of freshwater ecosystems. Here, we review the available literature describing the single and combined effects of heatwaves and chemicals on different levels of biological organization, to obtain a holistic view of their potential interactive effects. …

Aquatic Ecology and Water Quality Managementextreme eventsPopulationchemicalsFresh WatermicropollutantsFreshwater ecosystemheatwavecombined effectsEnvironmental ChemistryHumansEcosystemfreshwatereducationEcosystemGeneral Environmental ScienceTrophic levelGlobal and Planetary Changeeducation.field_of_studyWIMEKEcologybusiness.industryEnvironmental resource managementStressorExtreme eventsQ Science (General)Aquatische Ecologie en WaterkwaliteitsbeheerFood webmultiple stressorscommunityEnvironmental sciencebusinessClimate extremesGlobal Change Biology
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Assessing the influence of confounding biological factors when estimating bioaccumulation of PCBs with passive samplers in aquatic ecosystems

2017

Passive samplers are promising surrogates for organisms, mimicking bioaccumulation. However, several biological characteristics disturb the passive partitioning process in organisms by accelerating or restraining bioaccumulation, resulting in species-specific body residues of hydrophobic organic contaminants (HOCs). In addition to site-specific characteristics and HOC concentrations, age, sex, diet, biotransformation capability and habitat-specific characteristics may affect body residues. Two passive sampler types, polyethylene (PE) and polydimethylsiloxane (PDMS) were deployed in a PCB-contaminated freshwater lake water and sediment, respectively, to assess their bioaccumulation predictio…

Aquatic OrganismsEnvironmental Engineering010504 meteorology & atmospheric sciencesBiomagnificationta1172kasautuminensedimentit010501 environmental sciences01 natural sciencesAnimalsEnvironmental ChemistryEcosystem14. Life underwaternäytteenottoWaste Management and DisposalEcosystemta2180105 earth and related environmental sciencesTrophic levelEcologyAquatic ecosystemsedimentsfungikalat (eläimet)BiotariskinarviointiselkärangattomatPlanktonfishesinvertebratesPolychlorinated BiphenylsPollutionFood web13. Climate actionfood websEnvironmental chemistryBioaccumulationEnvironmental scienceaccumulationWater Pollutants Chemicalravintoverkotpolychlorinated biphenylEnvironmental MonitoringPCB-yhdisteetScience of The Total Environment
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Critical review: Grand challenges in assessing the adverse effects of contaminants of emerging concern on aquatic food webs

2019

Much progress has been made in the past few decades in understanding the sources, transport, fate, and biological effects of contaminants of emerging concern (CECs) in aquatic ecosystems. Despite these advancements, significant obstacles still prevent comprehensive assessments of the environmental risks associated with the presence of CECs. Many of these obstacles center around the extrapolation of effects of single chemicals observed in the laboratory or effects found in individual organisms or species in the field to impacts of multiple stressors on aquatic food webs. In the present review, we identify 5 challenges that must be addressed to promote studies of CECs from singular exposure e…

Aquatic OrganismsFood ChainAquatic toxicologyHealth Toxicology and MutagenesisOtras Ciencias Biológicas010501 environmental sciences01 natural sciencesAquatic organismsAquatic toxicologyCiencias Biológicas//purl.org/becyt/ford/1 [https]03 medical and health sciencesAquatic speciesSpecies Specificityaquatic food webEnvironmental ChemistrypharmaceuticaleffectsEcological risk assessment//purl.org/becyt/ford/1.6 [https]Endocrine disruptorsEnvironmental planning030304 developmental biology0105 earth and related environmental sciencesGrand ChallengesTrophic level0303 health sciencesAquatic ecosystemEnvironmental ExposureFood webPersonal care productsAquatic environmentMixturescardiovascular systemPharmaceuticalsEnvironmental sciencecontaminantsCIENCIAS NATURALES Y EXACTASWater Pollutants Chemical
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Interplay of omnivory, energy channels and C availability in a microbial-based soil food web

1998

To study the effects of omnivory on the structure and function of soil food webs and on the control of trophic-level biomasses in soil, two food webs were established in microcosms. The first one contained fungi, bacteria, a fungivorous nematode (Aphelenchoides saprophilus) and a bacterivorous nematode (Caenorhabditis elegans), and the second one fungi, bacteria, the fungivore and an omnivorous nematode (Mesodiplogaster sp.) feeding on both bacteria and the fungivore. Half of the replicates of each food web received additional glucose. The microcosms were sampled destructively at 5, 9, 13 and 19 weeks to estimate the biomass of microbes and nematodes and the soil NH4+-N concentration. The e…

BacterivoreBiomass (ecology)Soil biologySoil ScienceBiologycomplex mixturesMicrobiologyFood webBotanyFungivoreSoil food webOmnivoreAgronomy and Crop ScienceTrophic levelBiology and Fertility of Soils
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Effects of microbivore species composition and basal resource enrichment on trophic-level biomasses in an experimental microbial-based soil food web.

1998

Previous theoretical and empirical evidence suggests that species composition within trophic levels may profoundly affect the response of trophic-level biomasses to enhanced basal resources. To test whether species composition of microbivorous nematodes has such an effect in microbial-based soil food webs, I created three microcosm food webs, consisting of bacteria, fungi, bacterial-feeding nematodes (Acrobeloides tricornus, Caenorhabditis elegans), fungal-feeding nematodes (Aphelenchus avenae, Aphelenchoides sp.) and a predatory nematode (Prionchulus punctatus). The food webs differed in species composition at the second trophic level: food web A included A. tricornus and Aph. avenae, food…

BacterivoreBiomass (ecology)biologyEcologyfood and beveragesbiology.organism_classificationcomplex mixturesFood webAphelenchoidesFungivoreAphelenchus avenaeSoil food webEcology Evolution Behavior and SystematicsTrophic levelOecologia
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Artificial selection for predatory behavior results in dietary niche differentiation in an omnivorous mammal

2021

AbstractThe diet of an individual is a result of the availability of dietary items and the individual’s foraging skills and preferences. Behavioral differences may thus influence diet variation, but the evolvability of diet choice through behavioral evolution has not been studied. We used experimental evolution combined with a field enclosure experiment to test whether behavioral selection leads to dietary divergence. We analysed the individual dietary niche via stable isotope ratios of nitrogen (δ15N) and carbon (δ13C) in the hair of an omnivorous mammal, bank vole, from 4 lines selected for predatory behavior and 4 unselected control lines. Predatory voles had higher hair δ15N values than…

Bank voleEcological nicheExperimental evolutionbiologyForagingNicheNiche differentiationZoologyOmnivorebiology.organism_classificationTrophic level
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Latitudinal- and local-scale variations in a rocky intertidal interaction web

2015

Natural assemblages are structured by a complex combination of positive and negative interactions, and the relative importance of each interaction can vary across spatial scales. By using a simple interaction web (barnacles-grazers-microphytobenthos) in a rocky intertidal system, we tested the hypothesis that the relative strength of positive and negative interactions would vary as a function of different environmental stress between 2 latitudinal levels and local environmental conditions. We manipulated the cover of barnacles and the presence of limpets at 2 sites in northern and southern Italy and non-destructively examined the response of microphyto - benthos (MPB) (photosynthetic biomas…

BarnacleSettore BIO/07 - EcologiaIndirect effectEvolutionIntertidal zoneDensity dependenceBarnacles; Density dependence; Environmental stress; Facilitation; Grazing; Indirect effects; Interaction web; Local stressors; Microphytobenthos; Aquatic Science; Ecology; Ecology Evolution Behavior and SystematicsEnvironmental stressBiologyAquatic ScienceBenthosBehavior and SystematicsInteraction webRelative species abundanceMicrophytobenthoEcology Evolution Behavior and SystematicsTrophic levelAbiotic componentBiomass (ecology)EcologyEcologyEnvironmental streMicrophytobenthosLocal stressorsLocal stressorGrazingIndirect effectsHabitatFoundation speciesFacilitationBarnacles
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Effects of microplastics on the functional traits of aquatic benthic organisms: A global-scale meta-analysis

2021

Microplastics are widespread in the aquatic environment and thus available for many organisms at different trophic levels. Many scientific papers focus their attention on the study of the effects of microplastics on different species at individual level. Here we performed a global scale meta-analysis focusing our work on the study of the effect of microplastics on the functional traits of aquatic benthic organisms. Overall, microplastics showed a moderate negative effect on the examined functional traits of benthic organisms. Our results show that some crucial functional traits, such as those linked to behaviour and feeding, appear to be unaffected by microplastics. In contrast, traits rela…

Benthic organisms Ecological level Freshwater Functional traits Marine meta-Analysis Microplastics Aquatic Organisms Ecosystem Environmental Monitoring Plastics Microplastics Water Pollutants ChemicalAquatic OrganismsMicroplastics010504 meteorology & atmospheric sciencesPopulation levelMicroplasticsHealth Toxicology and Mutagenesis010501 environmental sciencesBiologyToxicology01 natural sciencesEcosystemEcosystem0105 earth and related environmental sciencesTrophic levelEcologyScale (chemistry)General MedicineIndividual levelPollution13. Climate actionBenthic zoneAquatic environmentPlasticsWater Pollutants ChemicalEnvironmental MonitoringEnvironmental Pollution
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