Search results for "Ekologi"

showing 10 items of 383 documents

Wood-decaying fungi in old-growth boreal forest fragments: extinctions and colonizations over 20 years

2021

According to ecology theory, isolated habitat fragments cannot maintain populations of specialized species. Yet, empirical evidence based on monitoring of the same fragments over time is still limited. We studied the colonization–extinction dynamics of eight wood-decaying fungal species in 16 old-growth forest fragments (<14 ha) over a 20-year period (1997–2017). We observed 19 extinctions and 5 colonizations; yet, the distribution of extinctions and colonizations did not differ from the one expected by chance for any of the species. Twenty-six percent of the extinctions took place in two natural fragments amid large forest–peatland complexes. (Romell) Bourdot and Galzin decreased …

0106 biological sciencesaikasarjathabitat losshabitaattiBiologypolypores010603 evolutionary biology01 natural sciencesextinction debtkuusetfragmentationsukupuuttoon kuoleminenvanhat metsätelinympäristölcsh:ForestrylahopuutkäävätSpruce forestgeographygeography.geographical_feature_categoryEcologyEcological ModelingTaigaFragmentation (computing)levinneisyysForestryesiintyminen15. Life on landOld-growth forestlahottajasienetekologiaboreaalinen vyöhykeHabitat destructionlcsh:SD1-669.5katoaminenpirstoutuminenluonnonsuojelusienetmetsäkuusispruce forestleviäminen010606 plant biology & botanyExtinction debtSilva Fennica
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Three ways to deliver a net positive impact with biodiversity offsets

2020

Biodiversity offsetting is the practice of using conservation actions, such as habitat restoration, management, or protection, to compensate for ecological losses caused by development activity, including construction projects. The typical goal of offsetting is no net loss (NNL), which means that all ecological losses are compensated for by commensurate offset gains. We focused on a conceptual and methodological exploration of net positive impact (NPI), an ambitious goal that implies commitment beyond NNL and that has recently received increasing attention from big business and environmental nongovernmental organizations. We identified 3 main ways NPI could be delivered: use of an additiona…

0106 biological sciencesbiodiversity offsettingConservation of Natural Resourcesekologinen kompensaatioBiodiversity offsettingComputer scienceganancia netanet gainpermanenciaimpacto negativo netojerarquia alterna de mitigacioncompensacion ecologica010603 evolutionary biology01 natural sciencesCorollarycompensacion por biodiversidadmitigation hierarchynet negative impactEvaluation periodpermanencealternate mitigation hierarchyecological compensationEcosystemEcology Evolution Behavior and Systematics1172 Environmental sciencesNature and Landscape ConservationMotivationOUTCOMESEcology010604 marine biology & hydrobiologylieventäminenCommerceBiodiversity15. Life on landEnvironmental economicsluonnon monimuotoisuusbiodiversiteettipysyvyys13. Climate actionNet gain1181 Ecology evolutionary biology
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Macrophytes shape trophic niche variation among generalist fishes.

2017

Generalist species commonly have a fundamental role in ecosystems as they can integrate spatially distinct habitats and food-web compartments, as well as control the composition, abundance and behavior of organisms at different trophic levels. Generalist populations typically consist of specialized individuals, but the potential for and hence degree of individual niche variation can be largely determined by habitat complexity. We compared individual niche variation within three generalist fishes between two comparable lakes in the Czech Republic differing in macrophyte cover, i.e. macrophyte-rich Milada and macrophyte-poor Most. We tested the hypothesis that large individual niche variation…

0106 biological sciencesecological nichesgeneralist specieshiili:Zoology and botany: 480 [VDP]Marine and Aquatic SciencesPredationlcsh:MedicinePlant ScienceGeneralist and specialist species01 natural sciencesekosysteemittyppiFood Web StructureMedicine and Health Sciencesahvensärkilcsh:ScienceTrophic levelCzech RepublickalatlajistokartoitusPerchMultidisciplinarybiologyEcologyEcologyFishesBiodiversityPlantsPlanktonsorvaTrophic Interactionsekologinen lokeroCommunity EcologyForage fishVertebratesRutilusResearch ArticleFreshwater EnvironmentsScardiniusFood ChainNicherudd010603 evolutionary biologyjärvetZooplanktonPlant-Animal InteractionsTšekkiAnimalsHerbivory:Zoologiske og botaniske fag: 480 [VDP]EcosystempopulaatiobiologiaNutritionEcological nichefishisotoopitNitrogen Isotopes010604 marine biology & hydrobiologyPlant EcologyEcology and Environmental Scienceslcsh:ROrganismsBiology and Life SciencesAquatic EnvironmentsBodies of Waterbiology.organism_classificationInvertebratesDietmacrophytesekosysteemit (ekologia)LakesFoodEarth Sciencesta1181lcsh:QvesikasvitravintoverkotPLoS ONE
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Fishing triggers trophic cascade in terms of variation, not abundance, in an allometric trophic network model

2022

Trophic cascade studies often rely on linear food chains instead of complex food webs and are typically measured as biomass averages, not as biomass variation. We study trophic cascades propagating across a complex food web including a measure of biomass variation in addition to biomass average. We examined whether different fishing strategies induce trophic cascades and whether the cascades differ from each other. We utilized an allometric trophic network (ATN) model to mechanistically study fishing-induced changes in food web dynamics. Different fishing strategies did not trigger traditional, reciprocal trophic cascades, as measured in biomass averages. Instead, fishing triggered a varia…

0106 biological sciencesecosystem stabilitytrophic interaction010604 marine biology & hydrobiologyvesiekosysteemitvariation cascadetehokalastusAquatic Science010603 evolutionary biology01 natural sciencesfisheries-induced trophic cascadekalatalousfood web dynamics14. Life underwaterbiomassa (ekologia)ravintoketjutravintoverkotEcology Evolution Behavior and SystematicsCanadian Journal of Fisheries and Aquatic Sciences
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Environmental Fluctuations Drive Species' Competitive Success in Experimental Invasions

2020

Climate change is presumed to increase both the number and frequency of fluctuations in environmental conditions. Fluctuations can affect the ecological and evolutionary processes that make species more successful competitors. For example, fluctuating conditions can create selection pressures for traits that are profitable in adaptation to fast climate change. On an ecological timescale, environmental fluctuations can facilitate species competitive success by reducing other species’ population sizes. Climate change could then enhance species invasions into new areas if fluctuation-adapted invaders displace their native competitors in chancing environments. We tested experimentally whether f…

0106 biological scienceseducation.field_of_studyEcologyEcology010604 marine biology & hydrobiologymedia_common.quotation_subjectPopulationevoluutioClimate changeCompetitor analysis010603 evolutionary biology01 natural sciencesCompetition (biology)populaatioekologiaEnvironmental scienceAnimal Science and ZoologyvieraslajitAdaptationeducationympäristönmuutoksetEcology Evolution Behavior and SystematicsNature and Landscape Conservationmedia_commonAnnales Zoologici Fennici
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Lake restoration influences nutritional quality of algae and consequently Daphnia biomass

2020

AbstractFood quality is one of the key factors influencing zooplankton population dynamics. Eutrophication drives phytoplankton communities toward the dominance of cyanobacteria, which means a decrease in the availability of sterols and long-chain polyunsaturated fatty acids (EPA and DHA). The effects of different restoration measures on the nutritional quality of the phytoplankton community and subsequent impacts on zooplankton biomass have rarely been considered. We analyzed the nutritional quality of phytoplankton in the eutrophic Lake Vesijärvi in southern Finland over a 37-year period, and studied the impacts of two restoration measures, biomanipulation and hypolimnetic aeration, on th…

0106 biological sciencesfreshwater food websTROPHIC TRANSFERDAPHNIArasvahapotsterols01 natural sciencesDaphniaPHYTOPLANKTONlakespopulation dynamicsravintoaineetLake VesijärviFinlandalgaeeducation.field_of_studyBiomanipulationbiologynutritional ecologybiomass (ecology)EcologyrehevöityminenplanktonvesiekosysteemitlaatuCladoceraravitsemuksellinen ekologiaSterolsPHOSPHORUSqualityEUTROPHICATIONNutritional ecology1181 Ecology evolutionary biologyAmino acidsravintoarvodieteticsrasvahappojailmastuskryptofyytitPopulationvesistöjen kunnostusFRESH-WATER HERBIVOREmakean veden ruokaverkotlevätaminohapotAquatic ScienceCyanobacteriajärvet010603 evolutionary biologyZooplanktonfatty acidssterolejaBIOMANIPULATIONAlgaeFISHFATTY-ACID CONTENTPhytoplanktonCryptophytesDominance (ecology)14. Life underwaterbiomassa (ekologia)Fatty acidseducationsyanobakteeritaerationnutritional valuesterolitamino acidsFreshwater food webs010604 marine biology & hydrobiologyfungirestoration of water systemsmikrolevätbiology.organism_classificationpopulaatiodynamiikkaLONGDaphnia13. Climate actionvesikirputEutrophicationravitsemusravintoverkot
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Lichen communities on Populus   tremula are affected by the density of Picea   abies

2021

Questions Aspen (Populus tremula) is declining in the old‐growth forests of boreal Fennoscandia. This threatens the numerous taxa that are dependent on old aspens, including many epiphytic lichens. Potential methods to aid epiphytic lichens on aspen are centered around treatments which affect the density of Norway spruce (Picea abies). In this study, we investigated how epiphytic lichen communities on aspen are affected by the variation of spruce density in the immediate vicinity of the focal aspen. Location Southern boreal forests in Finland. Methods We recorded the occurrence of lichens from 120 aspens in 12 semi‐natural forest sites. We used spruce basal area as the measure for spruce de…

0106 biological scienceshaapaBiodiversityEcological succession01 natural sciencestiheysvanhat metsätboreal forestsLichenFinlandbiodiversitysienitiededensitygeography.geographical_feature_categoryEcologybiologyjäkälätEcologyTaigaesiintyminenOld-growth forestekologiasuccessionold growth forestsboreaalinen vyöhykeEuropean aspenNorway spruceboreal zoneold-growth forestsvuorovaikutuslichen communitiesEcology (disciplines)epiphytic lichenscyanolichensinteractionManagement Monitoring Policy and Lawlichen010603 evolutionary biologyred‐listed speciessuojelualueetoccurenceSouthern FinlandPopulus tremulaNature and Landscape ConservationgeographyCommunityPicea abiesPicea abies15. Life on landbiology.organism_classificationbiodiversiteettimycologyprotected areasmetsäkuusired-listed speciescommunity ecology010606 plant biology & botanyApplied Vegetation Science
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Atlantic cod recovery from the Allee effect zone : contrasting ecological and evolutionary rescue

2020

The ability of a population to recover from disturbances is fundamental for its persistence. Impaired population recovery might be associated with a demographic Allee effect. Immigration from adjacent populations could accelerate the recovery not only by promoting population growth beyond the Allee effect threshold but also by bringing in advantageous genotypes. We explore the nature and role of ecological and evolutionary rescue in an Atlantic cod (Gadus morhua Gadidae) population fished below its Allee effect threshold. We utilize an eco-evolutionary model and simulate scenarios, where the target population evolves in response to selective fishing and sample immigrants from (a) a source p…

0106 biological sciencesharvest-induced evolutionadaptationManagement Monitoring Policy and LawAquatic SciencetehokalastusOceanography010603 evolutionary biology01 natural sciencesturskaDepensationsymbols.namesakepopulaatiot14. Life underwaterResilience (network)resilienceEcology Evolution Behavior and SystematicsAllee effectpopulation rebuildsopeutuminenresilienssipopulation collapsebiologyEcology010604 marine biology & hydrobiologykalakannatharvestingbiology.organism_classificationpopulaatioekologiaGeographydepensationsymbolskannanvaihtelutAdaptationAtlantic codEvolutionary rescue
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Severe effects of long-term drought on calcareous grassland seed banks

2018

Climate change models project shifts in precipitation patterns at regional and global scales. Increases in dry areas and the occurrence of drought predicted in future scenarios are likely to threaten grassland ecosystems. Calcareous grassland seed banks have proven to be resistant to short-term drought, but their responses to long-term drought are unknown. Here we show that 14 years of summer drought changed calcareous grassland seed bank composition, reducing its size and richness, and that these responses do not simply reflect patterns in the above-ground vegetation. Moreover, the effect of drought was larger on seed banks than on vegetation, and above-ground responses mediated by soil de…

0106 biological scienceskuivuusAtmospheric ScienceSoil seed bankCalcareous grasslandnurmetClimate changedroughtlcsh:QC851-999complex mixtures010603 evolutionary biology01 natural sciencesniitytsiemenetparasitic diseasesEnvironmental ChemistryEcosystemlcsh:Environmental scienceslcsh:GE1-350maaperäGlobal and Planetary Changegrassland ecologysiemenkasvitfungifood and beveragesenvironmental impactsVegetationekosysteemit (ekologia)Disturbance (ecology)Agronomyympäristövaikutuksetclimate-changeilmastonmuutosEnvironmental sciencelcsh:Meteorology. ClimatologySpecies richnessseed banksCalcareousclimate-change ecology010606 plant biology & botanynpj Climate and Atmospheric Science
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Size does matter — the eco-evolutionary effects of changing body size in fish

2020

Body size acts as a proxy for many fitness-related traits. Body size is also subject to directional selection from various anthropogenic stressors such as increasing water temperature, decreasing dissolved oxygen, fisheries, as well as natural predators. Changes in individual body size correlate with changes in fecundity, behaviour, and survival and can propagate through populations and ecosystems by truncating age and size structures and changing predator–prey dynamics. In this review, we will explore the causes and consequences of changing body size in fish in the light of recent literature and relevant theories. We will investigate the central role of body size in ecology by first discu…

0106 biological sciencesluonnonvalintaEco evolutionaryDirectional selectionEcology010604 marine biology & hydrobiologyBody sizeBiology010603 evolutionary biology01 natural sciencesekologiaekosysteemit (ekologia)populaatiotWater temperaturekokosense organs14. Life underwaterskin and connective tissue diseaseskalatGeneral Environmental ScienceEnvironmental Reviews
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