Search results for "diversiteetti"

showing 10 items of 161 documents

Does catchment geodiversity foster stream biodiversity?

2019

Abstract Context One approach to maintain the resilience of biotic communities is to protect the variability of abiotic characteristics of Earth’s surface, i.e. geodiversity. In terrestrial environments, the relationship between geodiversity and biodiversity is well recognized. In streams, the abiotic properties of upstream catchments influence stream communities, but the relationships between catchment geodiversity and aquatic biodiversity have not been previously tested. Objectives The aim was to compare the effects of local environmental and catchment variables on stream biodiversity. We specifically explored the usefulness of catchment geodiversity in explaining the species richness on …

0106 biological sciencesGeography Planning and DevelopmentDrainage basinBiodiversity01 natural sciencesbakteeritfreshwatersspecies richnessbacteriaSCALEAbiotic componentFreshwatersgeography.geographical_feature_categoryCLIMATE-CHANGEEcologyMacroinvertebratesEcologyenvironmental heterogeneityselkärangattomatgeodiversiteettiHabitatCatchment featuresvirtavedet1181 Ecology evolutionary biologyBENTHIC MACROINVERTEBRATE ASSEMBLAGESvaluma-alueetmacroinvertebratesCONTEXT DEPENDENCY010603 evolutionary biologydiatomsPLANT-SPECIES RICHNESSpiilevätcatchment features1172 Environmental sciencesNature and Landscape ConservationDiatomsgeographyLand useBacteriaFRESH-WATER BIODIVERSITYLAND-USELANDSCAPE010604 marine biology & hydrobiologyEnvironmental heterogeneity15. Life on landCOMMUNITY-ENVIRONMENT RELATIONSHIPSluonnon monimuotoisuusbiodiversiteettiGeodiversity13. Climate actionSpecies richnessLandscape ecologySpecies richnessMICROBIAL DIVERSITY
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Precision, Applicability, and Economic Implications: A Comparison of Alternative Biodiversity Offset Indexes

2021

AbstractThe rates of ecosystem degradation and biodiversity loss are alarming and current conservation efforts are not sufficient to stop them. The need for new tools is urgent. One approach is biodiversity offsetting: a developer causing habitat degradation provides an improvement in biodiversity so that the lost ecological value is compensated for. Accurate and ecologically meaningful measurement of losses and estimation of gains are essential in reaching the no net loss goal or any other desired outcome of biodiversity offsetting. The chosen calculation method strongly influences biodiversity outcomes. We compare a multiplicative method, which is based on a habitat condition index develo…

0106 biological sciencesINDICATORSConservation of Natural Resourcesekologinen kompensaatioköyhtyminenBiodiversity offsettingOffset (computer science)arviointimenetelmätComputer scienceCONSERVATIONBiodiversityDIVERSITY010603 evolutionary biology01 natural sciencesOutcome (game theory)ArticleRICHNESSAdditive functionEconometricsEcosystem1172 Environmental sciencesRESTORATIONEstimationMotivationGlobal and Planetary ChangeEcology010604 marine biology & hydrobiologyMultiplicative functionkustannustehokkuusEcological compensationBiodiversity15. Life on landFINLANDluonnon monimuotoisuusPollutionBiodiversity calculation methodkompensointibiodiversiteettiECOLOGICAL EQUIVALENCEINSIGHTSHabitat destructionBiodiversity offsetting13. Climate actionPOLYPORESNo net losslaskentamallit511 EconomicsTrade ratioDEAD WOOD
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Community size can affect the signals of ecological drift and niche selection on biodiversity

2020

Made available in DSpace on 2020-12-12T01:24:05Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-06-01 Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP) Academy of Finland Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) Ecological drift can override the effects of deterministic niche selection on small populations and drive the assembly of some ecological communities. We tested this hypothesis with a unique data set sampled identically in 200 streams in two regions (tropical Brazil and boreal Finland) that differ in macroinvertebrate community size by fivefold. Null models allowed us t…

0106 biological sciencesMETACOMMUNITIESNichenull modelsBeta diversityBiodiversitydispersal metacommunities010603 evolutionary biology01 natural sciencesCOLONIZATIONDISPERSALCONNECTIVITYAbundance (ecology)TROPICAL STREAMbeta-diversity deviation14. Life underwaterdispersalDISTURBANCEBETA-DIVERSITYRelative species abundanceEcosystemFinlandEcology Evolution Behavior and SystematicsRESTORATIONdemographic stochasticityβ-diversity deviationvesieläimistöEcology010604 marine biology & hydrobiologySmall population sizeBiodiversitybeta diversity deviation15. Life on landBiotaluonnon monimuotoisuusbiodiversiteettiGeographyHabitat destruction13. Climate action1181 Ecology evolutionary biologySIMILARITYPATTERNShyönteisetcommunity assemblySpecies richnessaquatic insectsmetacommunitiesBrazil
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Ecological dependencies make remote reef fish communities most vulnerable to coral loss

2021

Ecosystems face both local hazards, such as over-exploitation, and global hazards, such as climate change. Since the impact of local hazards attenuates with distance from humans, local extinction risk should decrease with remoteness, making faraway areas safe havens for biodiversity. However, isolation and reduced anthropogenic disturbance may increase ecological specialization in remote communities, and hence their vulnerability to secondary effects of diversity loss propagating through networks of interacting species. We show this to be true for reef fish communities across the globe. An increase in fish-coral dependency with the distance of coral reefs from human settlements, paired with…

0106 biological sciencesRichnessconservation biologyekologiset verkostotGeneral Physics and Astronomy01 natural sciencesConservation of Natural ResourceAnthropogenic EffectmeriekologiaPatterns0303 health sciencesDiversityMultidisciplinaryConservation biologyCoral ReefsAnthropogenic EffectsQClimate-change ecologyFishesBiodiversityAnthozoaHabitat1181 Ecology evolutionary biologyCoral ReefHumanclimate-change ecologyConservation of Natural Resources[SDE.MCG]Environmental Sciences/Global ChangesScienceClimate ChangeBiotic interactions010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular BiologyArticlekoralliriutat03 medical and health sciencesAnimals; Anthozoa; Anthropogenic Effects; Biodiversity; Climate Change; Conservation of Natural Resources; Coral Bleaching; Fishes; Humans; Spatial Analysis; Coral ReefsFood-webAnimalsHumansecological networks14. Life underwater030304 developmental biologySpatial AnalysisCoral BleachingAnimalkalakannatGeneral ChemistryDisturbanceSpatial Analysiilmastonmuutokset15. Life on landbiodiversiteetti13. Climate actionEcological networks[SDE.BE]Environmental Sciences/Biodiversity and EcologyFisheNature Communications
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Priorities for research in soil ecology

2017

The ecological interactions that occur in and with soil are of consequence in many ecosystems on the planet. These interactions provide numerous essential ecosystem services, and the sustainable management of soils has attracted increasing scientific and public attention. Although soil ecology emerged as an independent field of research many decades ago, and we have gained important insights into the functioning of soils, there still are fundamental aspects that need to be better understood to ensure that the ecosystem services that soils provide are not lost and that soils can be used in a sustainable way. In this perspectives paper, we highlight some of the major knowledge gaps that shoul…

0106 biological sciencesaboveground-belowground interactionsSoil biodiversityAboveground-belowground interactionssoil processesWiskundige en Statistische Methoden - Biometris01 natural sciencesEcosystem servicesekosysteemitSoil managementMicrobial ecologyNovel environmentsSoil food webClimate changeGlobal change2. Zero hungerSoil healthbiodiversity–ecosystem functioningEcologySoil Biology04 agricultural and veterinary sciencesSoil processesPE&RCclimate changeekosysteemipalvelutGeographyBiogeographyinternationalSoil managementBiodiversity–ecosystem functioningplant-microbe interactionsSoil Sciencesoil biodiversityChemical ecologyAboveground-belowground interactions; Biodiversity–ecosystem functioning; Biogeography; Chemical ecology; Climate change; Ecosystem services; Global change; Microbial ecology; Novel environments; Plant-microbe interactions; Soil biodiversity; Soil food web; Soil management; Soil processes010603 evolutionary biologyArticleeliömaantiedesoil food webSoil governanceSoil food webSoil ecologyEcosystem servicesMathematical and Statistical Methods - BiometrisEnvironmental planningBodembiologieglobal changeEcology Evolution Behavior and Systematicsmaaperänsuojeluchemical ecology15. Life on landSoil biodiversitybiodiversiteettiekosysteemit (ekologia)mikrobiekologia13. Climate actionSustainable management040103 agronomy & agricultureta1181ilmastonmuutosnovel environments0401 agriculture forestry and fisheriessoil managementPlant-microbe interactions
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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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Cost-efficient strategies to preserve dead wood-dependent species in a managed forest landscape

2016

Negative consequences of intensive forest management on biodiversity are often mitigated by setting aside old forest, but alternative strategies have been suggested. We have compared using simulations the consequences of two of these alternatives setting aside young forests or extending rotation periods - to that of current practice in managed boreal forest In all scenarios we applied a constant conservation budget and predicted forest development and harvesting over 200 years. As a proxy for biodiversity conservation, we projected the extinction risk of a dead wood-dependent beetle, Diacanthous undulatus, in a 50 km(2) landscape in central Sweden, using a colonization-extinction model. Dur…

0106 biological sciencesconservation strategyForest managementta1172Biodiversitynuoret metsät010501 environmental sciences010603 evolutionary biology01 natural sciencesmetsätalousSet-asidevanhat metsätprolonged rotationEcology Evolution Behavior and SystematicsBudget constraint0105 earth and related environmental sciencesNature and Landscape ConservationDiscountingtime horizonEcologyAgroforestrybusiness.industryAsidediscountingForest ScienceTaigaEnvironmental resource managementympäristönsuojelu15. Life on landluonnon monimuotoisuusbiodiversiteettistrategiatGeographyHabitatforest agepopulation viabilityta1181metsänhoitobusiness
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Are small protected habitat patches within boreal production forests effective in conserving species richness, abundance and community composition? :…

2021

Abstract Background In boreal zone forest management is changing and degrading forest habitats, which has caused declines in biodiversity. To mitigate these harmful effects in production forests, small-scale habitats with high biodiversity values have been protected within them. These habitats include woodland key habitats, and other small habitat patches protected by voluntary conservation actions. In this systematic review we synthesize the evidence on the value of small protected habitat patches (SPHP) within production forest landscapes for biodiversity. Review question: Are small protected habitat patches within boreal production forests effective in conserving species richness, abunda…

0106 biological sciencesforest harvestingtalousmetsäthakkuutVoluntary conservationForest managementBiodiversityWoodlandManagement Monitoring Policy and Law010603 evolutionary biology01 natural sciencesloggingvoluntary conservationAbundance (ecology)assemblagespecies richnesslahopuutwoodland key habitatsWoodland key habitatslcsh:Environmental scienceslcsh:GE1-350abundancedead woodEcologyspecies diversityEcology010604 marine biology & hydrobiologyForest harvestingLoggingSpecies diversity15. Life on landPollutionbiodiversiteettimetsiensuojeluImpactGeographyboreaalinen vyöhykeHabitatimpactSpecies richnesssuojavyöhykkeetProtected areaSpecies richness
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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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The effect of buffer strip width and selective logging on streamside plant communities

2019

Background Riparian forests surrounding streams host high biodiversity values, but are threatened by clear-cut logging. Narrow buffer strips of about 15 m are commonly left between the stream and the clear-cut, but studies suggest that the buffer width should be at least 30 m to protect riparian plant communities. Moreover, selective logging is often allowed on the buffer strips in order to increase economic gain. We used an experiment of 43 riparian sites where buffer strip width and selective logging within the strip were manipulated and supplemented with unlogged control sites. We report the short-term changes in the community composition of vascular plants and mosses near the stream (0–…

0106 biological scienceshakkuutselective loggingBuffer striplehtisammalet01 natural sciencesTreeswoodland key habitatsWoodland key habitatsFinlandQH540-549.5General Environmental Sciencegeography.geographical_feature_categoryharsintaForest managementEcologybiologyEcologymetsänkäsittelyLoggingForestrykasvillisuusBiodiversityPlantsSelective loggingmetsiensuojeluluonnonsuojelusuojavyöhykkeetkonservointiResearch ArticleVascular plantConservation of Natural ResourcespurotConservationSTREAMS010603 evolutionary biologyBuffer (optical fiber)RiversMossesRiparian forestEcology Evolution Behavior and SystematicsRiparian zoneHydrologygeographyVascular plants010604 marine biology & hydrobiologyPlant communitybiology.organism_classificationbiodiversiteettiputkilokasvitEnvironmental scienceBMC Ecology
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