Search results for "DIVERSITE"

showing 10 items of 180 documents

Landscape structure influences browsing on a keystone tree species in conservation areas

2020

Aspen is a keystone species in boreal forests. The future of aspen in many conservation areas is threatened by ungulate browsing. Our aim was to study the effect of browsing on aspen regeneration and population structure in conservation areas in Central Finland, and the effect of surrounding landscape structure on browsing. Aspen density varied greatly among and within conservation areas. In about half of the conservation areas, middle-sized aspens were scarce or missing, which indicates heavy browsing in the recent past. In addition, the number of dead, large aspens in advanced decay stages were rare. Browsing pressure varied greatly among the areas, but on average, a bit more than half of…

0106 biological sciencesAlces alcesUngulatehirvihaapaBiodiversityManagement Monitoring Policy and Law010603 evolutionary biology01 natural sciencespuulajitmaisemaboreal forestRegeneration (ecology)Keystone specieslahopuutPopulus tremulaNature and Landscape ConservationbiodiversitydisturbancebiologyEcologyTaigaForestrylandscapebiology.organism_classificationmetsätbiodiversiteettimetsiensuojeluGeographyboreaalinen vyöhykeDisturbance (ecology)Local extinctionThreatened species010606 plant biology & botany
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Habitat associations drive species vulnerability to climate change in boreal forests

2016

Species climate change vulnerability, their predisposition to be adversely affected, has been assessed for a limited portion of biodiversity. Our knowledge of climate change impacts is often based only on exposure, the magnitude of climatic variation in the area occupied by the species, even if species sensitivity, the species ability to tolerate climatic variations determined by traits, plays a key role in determining vulnerability. We analyse the role of species’ habitat associations, a proxy for sensitivity, in explaining vulnerability for two poorly-known but species-rich taxa in boreal forest, saproxylic beetles and fungi, using three IPCC emissions scenarios. Towards the end of the 21…

0106 biological sciencesAtmospheric Science010504 meteorology & atmospheric sciencesForest managementBiodiversityClimate change adaptationClimate change010603 evolutionary biology01 natural sciencesEcosystem serviceshabitat associationFaculty of ScienceForest ecosystem modelEcosystemboreal forestsboreal forest/dk/atira/pure/core/keywords/TheFacultyOfSciencesaproxylic beetleshaavoittuvuus0105 earth and related environmental sciencesGlobal and Planetary ChangeEcologyFungi15. Life on landbiodiversiteettiClimate vulnerabilityHabitat destructionGeographyclimate changeHabitat13. Climate actionThreatened speciessienetForest conservation
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Fifteen operationally important decisions in the planning of biodiversity offsets

2018

Many development projects, whether they are about construction of factories, mines, roads, railways, new suburbs, shopping malls, or even individual houses, have negative environmental consequences. Biodiversity offsetting is about compensating that damage, typically via habitat restoration, land management, or by establishment of new protected areas. Offsets are the fourth step of the so-called mitigation hierarchy, in which ecological damage is first avoided, minimized second, and third restored locally. Whatever residual damage remains is then offset. Offsetting has been increasingly adopted all around the world, but simultaneously serious concerns are expressed about the validity of the…

0106 biological sciencesBiodiversity offsettingComputer scienceta1172FrameworkCONSERVATIONLand managementBiodiversity010501 environmental sciencesResidualECOLOGY010603 evolutionary biology01 natural sciences12. Responsible consumptionOperational designAdditionalityMANAGEMENTympäristövastuuOffset ratioRestoration ecologyEcology Evolution Behavior and SystematicsMultiplier1172 Environmental sciences0105 earth and related environmental sciencesNature and Landscape ConservationRESTORATIONOUTCOMESSubjective judgmentPERMANENCEEcological compensation15. Life on landEnvironmental economicsPOLICYkompensointibiodiversiteettiCONTEXTympäristövaikutukset13. Climate actionNo net lossADDITIONALITYta1181Time preferenceFlexibility
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Do the ecological drivers of lake littoral communities match and lead to congruence between organism groups?

2020

AbstractLake littoral environments are heterogeneous, and different organisms typically show specific responses to this environmental variation. We examined local environmental and spatial factors affecting lake littoral biodiversity and the structuring of assemblages of phytoplankton, zooplankton and macroinvertebrates within and among three basins of a large lake system. We explored congruence of species composition and species richness among the studied organism groups to evaluate their general indicator potential to represent spatial variation in other groups. We expected that effects of water chemistry on plankton assemblages were stronger than effects of habitat characteristics. In co…

0106 biological sciencesBiodiversityhabitatcommunity structuringhabitaattiAquatic Scienceassemblages010603 evolutionary biology01 natural sciencesZooplanktonwater qualitybiotic communitiesdiversitydiatomsPhytoplanktonlakesLittoral zonezoobenthos14. Life underwaterspecies richnessEcology Evolution Behavior and Systematicsbiodiversitynatural diversityEcology010604 marine biology & hydrobiologycongruenceplanktonenvironmental filteringtypes and specieseliöyhteisöt15. Life on landPlanktonselkärangattomatluonnon monimuotoisuusbiodiversiteettiGeographyHabitatBenthic zoneSpecies richnessrantavyöhykkeetlake littoral zonespatial processes
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Accounting for species interactions is necessary for predicting how arctic arthropod communities respond to climate change

2021

Species interactions are known to structure ecological communities. Still, the influence of climate change on biodiversity has primarily been evaluated by correlating individual species distributions with local climatic descriptors, then extrapolating into future climate scenarios. We ask whether predictions on arctic arthropod response to climate change can be improved by accounting for species interactions. For this, we use a 14-year-long, weekly time series from Greenland, resolved to the species level by mitogenome mapping. During the study period, temperature increased by 2 degrees C and arthropod species richness halved. We show that with abiotic variables alone, we are essentially un…

0106 biological sciencesClimate ResearchArthropodaBiodiversityClimate changeAccounting010603 evolutionary biology01 natural sciencesArcticniveljalkaisetTrophic cascade1172 Environmental sciencesEcology Evolution Behavior and SystematicsTrophic levelAbiotic componentarktinen alueEcologyfood webEcologybusiness.industry010604 marine biology & hydrobiologyeliöyhteisötilmastonmuutokset15. Life on landFood webjoint species distribution modelbiodiversiteettitrophic cascadeclimate changeGeographyArctic13. Climate actioncommunity assemblySpecies richnessbusinessravintoverkotEcography
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Degradation in landscape matrix has diverse impacts on diversity in protected areas.

2017

Introduction: A main goal of protected areas is to maintain species diversity and the integrity of biological assemblages. Intensifying land use in the matrix surrounding protected areas creates a challenge for biodiversity conservation. Earlier studies have mainly focused on taxonomic diversity within protected areas. However, functional and especially phylogenetic diversities are less studied phenomena, especially with respect to the impacts of the matrix that surrounds protected areas. Phylogenetic diversity refers to the range of evolutionary lineages, the maintenance of which ensures that future evolutionary potential is safeguarded. Functional diversity refers to the range of ecologic…

0106 biological sciencesConservation geneticsConservation BiologyBiodiversitylcsh:MedicinemaankäyttöForestsAnimal Phylogenetics01 natural scienceslcsh:ScienceSpecies diversityConservation ScienceData ManagementMultidisciplinaryEcologyEcologyEukaryotaBiodiversityrespiratory systemta4112Terrestrial EnvironmentsPhylogeneticsGeographyHabitatVertebratesConservation GeneticsConservation geneticsResearch ArticleComputer and Information SciencesConservation of Natural ResourcesEcological MetricsForest managementAnimal phylogenetics010603 evolutionary biologyEcosystemsBirdssuojelualueetGeneticsAnimalsEcosystemEvolutionary SystematicsEcosystemTaxonomyEvolutionary BiologyLand use010604 marine biology & hydrobiologyEcology and Environmental Scienceslcsh:ROrganismsSpecies diversityland useBiology and Life SciencesSpecies Diversity15. Life on landbiodiversiteettiPhylogenetic diversity13. Climate actionConservation scienceAmniotesta1181lcsh:Qprotected areasZoologyhuman activitiesPLoS ONE
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Modeling of Dead Wood Potential Based on Tree Stand Data

2020

Here we present a framework for identifying areas with high dead wood potential (DWP) for conservation planning needs. The amount and quality of dead wood and dying trees are some of the most important factors for biodiversity in forests. As they are easy to recognize on site, it is widely used as a surrogate marker for ecological quality of forests. However, wall-to-wall information on dead wood is rarely available on a large scale as field data collection is expensive and local dead wood conditions change rapidly. Our method is based on the forest growth models in the Motti forest simulator, taking into account 168 combinations of tree species, site types, and vegetation zones as well as …

0106 biological sciencesDECOMPOSITION010504 meteorology & atmospheric sciencesforest simulationForest managementBiodiversityDEBRISECOLOGY010603 evolutionary biology01 natural sciencessuojelusuunnitelmatspatial conservation prioritizationsimulointilahopuutconservation planningMETAANALYSISbiodiversity0105 earth and related environmental sciencesforests4112 ForestrySPECIES RICHNESSmetsänkäsittelyTaigacoarse woody debrisforestryNORWAY SPRUCELand-use planningForestryVegetationlcsh:QK900-98915. Life on landbiodiversiteettimetsiensuojeluTree standlcsh:Plant ecologyEnvironmental scienceGROWTHBIODIVERSITYCoarse woody debrisScale (map)land-use planning
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The effect of buffer strip width and selective logging on riparian forest microclimate

2019

Riparian forests have cool and humid microclimates, and one aim of leaving forested buffer strips between clear-cut areas and streams is to conserve these microclimatic conditions. We used an experimental study set up of 35 streamside sites to study the impacts of buffer strip width (15 or 30 m) and selective logging within the buffer strips on summer-time air temperature, relative air humidity and canopy openness 12 years after logging. The buffer strip treatments were compared to unlogged control sites. We found that 15-meter buffer strips with or without selective logging and 30-meter buffer strips with selective logging were insufficient in maintaining temperature, relative humidity and…

0106 biological sciencesDYNAMICScanopy opennesshakkuutMicroclimateselective loggingBuffer striprelative humidity01 natural sciencesrefugiaHABITATMosspartial harvesting4112 Forestrygeography.geographical_feature_categorybiologyharsintaLoggingmetsänkäsittelyTemperatureForestrySelective loggingmetsätGROWTHlämpötilacontinuous cover forestryPolytrichum communePartial harvestingGRADIENTSSTREAMSRefugiaManagement Monitoring Policy and Law010603 evolutionary biologymossContinuous cover forestryCanopy opennessRiparian forestSTREAMSRelative humidityNature and Landscape ConservationRiparian zoneHydrologygeographyStreamsidetemperatureRelative humidityCORRIDORS15. Life on landRESILIENCEbiology.organism_classificationbiodiversiteettistreamsideEnvironmental sciencePOLYTRICHUM-COMMUNEilmankosteus010606 plant biology & botanyBRYOPHYTESRESPONSES
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Mitigating forest biodiversity and ecosystem service losses in the era of bio-based economy

2018

Abstract Forests play a crucial role in the transition towards a bioeconomy by providing biomass to substitute for fossil-based materials and energy. However, a policy-policy conflict exists between the desire to increase the utilization of bio based renewable resources and the desire to protect and conserve biodiversity. Increasing forest harvest levels to meet the needs of the bioeconomy may conflict with biodiversity protection and ecosystem services provided by forests. Through an optimization framework, we examined trade-offs between increasing the extraction of timber resources, and the impacts on biodiversity and non-wood ecosystem services, and investigated possibilities to reconcil…

0106 biological sciencesEconomics and Econometrics010504 meteorology & atmospheric sciencesSociology and Political ScienceoptimisationForest managementta1172Biodiversityforest managementeconomic systemsManagement Monitoring Policy and LawFellinguusiutuvat luonnonvarat010603 evolutionary biology01 natural sciencesEcosystem servicesoptimointiSet-asidetrade-off analysisRegeneration (ecology)ta512bioeconomy0105 earth and related environmental sciencesbiodiversityBiomass (ecology)AgroforestrymetsänkäsittelyForestry15. Life on landta4112talousjärjestelmätbiodiversiteetti13. Climate actionEnvironmental scienceta1181biotalousRenewable resourceForest Policy and Economics
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Ecological response hides behind the species abundance distribution : Community response to low-intensity disturbance in managed grasslands

2017

Land-use and management are disturbance factors that have diverse effects on community composition and structure. In traditional rural grasslands, such as meadows and pastures, low-intensity management is maintained to enhance biodiversity. Maintenance of road verges, in turn, creates habitat, which may complement traditional rural grasslands. To evaluate the effect of low-intensity disturbance on insect communities, we characterized species abundance distributions (SAD) for Carabidae, Formicidae, and Heteroptera in three grassland types, which differed in management: meadows, pastures, and road verges. The shape of SAD was estimated with three parameters: abundance decay rate, dominance, a…

0106 biological sciencesEnvironmental changeBiodiversityBiology010603 evolutionary biology01 natural sciencesGrasslandHeteropteraDominance (ecology)FormicidaeEcology Evolution Behavior and SystematicsRelative abundance distributionNature and Landscape ConservationOriginal Researchbiodiversitygeographygeography.geographical_feature_categoryEcologyEcology010604 marine biology & hydrobiologyroad vergeluonnon monimuotoisuusbiodiversiteettipastureHabitatta1181community assemblymeadowSpecies richnessCarabidaespecies abundance distributionsluteetTramplingEcology and Evolution
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