Search results for "BETA DIVERSITY"

showing 10 items of 36 documents

The mechanistic basis of changes in community assembly in relation to anthropogenic disturbance and productivity

2016

Anthropogenic disturbance often causes changes in communities. However, the mechanistic basis of these changes remains elusive. As all patterns in community ecology can be understood as a result of four processes (speciation, selection, drift, and dispersal), the effect of disturbance should depend on how disturbance disrupt these processes. We studied the effects of disturbance and productivity on species richness, community composition, and community dispersion (i.e., variation in community composition) in the vegetation of 120 boreal peatlands using null-model approach to determine whether community assembly processes differ between pristine and disturbed sites. Sites represented three p…

0106 biological sciencesPeatproductivityDisturbance (geology)beta diversity: dispersiontuottavuusselectionBiology010603 evolutionary biology01 natural scienceslcsh:QH540-549.5Ecosystemspecies richnessEcology Evolution Behavior and SystematicsdisturbanceEcologyCommunitydriftEcologyspecies composition010604 marine biology & hydrobiologyVegetationIntermediate Disturbance HypothesisProductivity (ecology)Environmental scienceta1181Biological dispersalbeta diversitydispersionlcsh:EcologySpecies richnessEcosphere
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Fine-grain beta diversity in Palaearctic open vegetation: variability within and between biomes and vegetation types

2021

Aims: To quantify how fine-grain (within-plot) beta diversity differs among biomes and vegetation types. Study area: Palaearctic biogeographic realm. Methods: We extracted 4,654 nested-plot series with at least four different grain sizes between 0.0001 m² and 1,024 m² from the GrassPlot database spanning broad geographic and ecological gradients. Next, we calculated the slope parameter (z-value) of the power-law species–area relationship (SAR) to use as a measure of multiplicative beta diversity. We did this separately for vascular plants, bryophytes and lichens and for the three groups combined (complete vegetation). We then tested whether z-values differed between biomes, ecological-physi…

biome bryophyte fine-grain beta diversity GrassPlot lichen mean occupancy Palaearctic grassland phytosociological class species–area relationship (SAR) vascular plant vegetation type z-valueSettore BIO/07 - EcologiaVascular plantGrassPlotPalaearctic grasslandSpecies–area relationship (SAR)LichenVegetation typespecies-area relationship (SAR)Fine-grain beta diversityZ-valuePhytosociological classEnvironmental sciences580: Pflanzen (Botanik)Settore BIO/03 - Botanica Ambientale E ApplicataBiomeBryophyteGE1-350Mean occupancyVegetation Classification and Survey (VCS)
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The effects of habitat degradation on metacommunity structure of wood-inhabiting fungi in European beech forests

2013

Intensive forest management creates habitat degradation by reducing the variation of forest stands in general, and by removing old trees and dead wood in particular. Non-intervention forest reserves are commonly believed to be the most efficient tool to counteract the negative effects on biodiversity, but actual knowledge of the conservation efficiency is limited, especially for recent reserves. The structure of ecological communities is often described with measures of nestedness, beta diversity and similarity between communities. We studied whether these measures differ among forest reserves with different management histories. For this purpose, we used a large data set of wood-inhabiting…

MetacommunityHabitat destructionEcologySoil biodiversityForest managementBeta diversityCommunity structureBiodiversityta1181NestednessBiologyEcology Evolution Behavior and SystematicsNature and Landscape ConservationBiological Conservation
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Scale dependence of species–area relationships is widespread but generally weak in Palaearctic grasslands

2021

Questions: Species–area relationships (SARs) are fundamental for understanding biodiversity patterns and are generally well described by a power law with a constant exponent z. However, z-values sometimes vary across spatial scales. We asked whether there is a general scale dependence of z-values at fine spatial grains and which potential drivers influence it. Location: Palaearctic biogeographic realm. Methods: We used 6,696 nested-plot series of vascular plants, bryophytes and lichens from the GrassPlot database with two or more grain sizes, ranging from 0.0001 m² to 1,024 m² and covering diverse open habitats. The plots were recorded with two widespread sampling approaches (rooted presenc…

0106 biological sciencesBeta diversityGLM generalized linear model grasslands SAR species area relationship333.7: Landflächen NaturerholungsgebieteGrassPlotBeta diversityPlant Science010603 evolutionary biology01 natural sciencesSpecies-area curveGrasslandPower lawScale dependencevegetationComputingMilieux_MISCELLANEOUSspecies–area relationshipRooted presenceSpecies–area relationshipgeographygeography.geographical_feature_categoryVegetationpower lawEcologyEcologyShoot presenceVegetation15. Life on landZ-valueGrasslandrooted presencePalaearctic580: Pflanzen (Botanik)scale dependencez-valueSettore BIO/03 - Botanica Ambientale E Applicatabeta diversity[SDE.BE]Environmental Sciences/Biodiversity and EcologygrasslandHeterogeneityScale (map)shoot presence010606 plant biology & botany
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Fine‐grain beta diversity of Palaearctic grassland vegetation

2021

QUESTIONS: Which environmental factors influence fine-grain beta diversity of vegetation and do they vary among taxonomic groups? LOCATION: Palaearctic biogeographic realm. METHODS: We extracted 4,654 nested-plot series with at least four different grain sizes between 0.0001 m² and 1,024 m² from the GrassPlot database, covering a wide range of different grassland and other open habitat types. We derived extensive environmental and structural information for these series. For each series and four taxonomic groups (vascular plants, bryophytes, lichens, all), we calculated the slope parameter (z-value) of the power law species–area relationship (SAR), as a beta diversity measure. We tested whe…

0106 biological sciencesCzechAgriculture and Food SciencesFine grainelevation333.7: Landflächen NaturerholungsgebietehabitatPlant ScienceMaster planFine-grain beta diversity01 natural sciencesScale dependenceevolutionaryRICHNESSvascular plantsHABITATMacroecologyComputingMilieux_MISCELLANEOUSmedia_commonMean occupancyProductivity2. Zero hungerdisturbance0303 health sciencesEcologySettore BIO/02 - Botanica SistematicaEnvironmental researchPalaearctic grasslanddifferentiationenvironmental heterogeneityspecies-area relationship (SAR)gradientDIFFERENTIATION580: Pflanzen (Botanik)disturbance; elevation; fine-grain beta diversity; heterogeneity; land use; macroecology; mean occupancy; Palaearctic grassland; productivity; scale dependence; species–area relationship (SAR); z-valuescale dependencelanguagemacroecologyproductivitymedia_common.quotation_subjectmean occupancyLibrary scienceSpecies–area relationship (SAR)Environmental drivers Grasslands Lichens Mosses Species-area relationship SAR Vascular Plands010603 evolutionary biologySpecies-area curve03 medical and health sciencesspecies–area relationship (SAR)ExcellencePolitical scienceGRADIENTSlovak030304 developmental biologyspatial scalefine-grain beta diversityBiology and Life Sciencesland useDisturbance15. Life on landZ-valuelanguage.human_languageENVIRONMENTAL HETEROGENEITYEarth and Environmental Sciencesz-valueElevationLand useEVOLUTIONARYSPATIAL SCALESPECIES-AREA RELATIONSHIPSVASCULAR PLANTS[SDE.BE]Environmental Sciences/Biodiversity and EcologyheterogeneityHeterogeneityrichness
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Local environment and space drive multiple facets of stream macroinvertebrate beta diversity

2018

AIM: Understanding variation in biodiversity typically requires consideration of factors operating at different spatial scales. Recently, ecologists and biogeographers have recognized the need of analysing ecological communities in the light of multiple facets including not only species‐level information but also functional and phylogenetic approaches to improve our understanding of the relative contribution of processes shaping biodiversity. Here, our aim was to disentangle the relative importance of environmental variables measured at multiple levels (i.e., local, catchment, climate, and spatial variables) influencing variation in macroinvertebrate beta diversity facets (i.e., species, tr…

0106 biological sciencespurotBiodiversityBeta diversityspeciesphylogeny010603 evolutionary biology01 natural sciencesmultilevel variablestraitsAbundance (ecology)lajitbiodiversity facetsEcology Evolution Behavior and SystematicsfylogeniaEcologyCommunityEcology010604 marine biology & hydrobiologyGlobal change15. Life on landselkärangattomatbiodiversiteettiTaxonGeography13. Climate actionvirtavedetSpatial ecologyta1181Species richnessbeta diversity componentsJournal of Biogeography
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Life-form adaptations and substrate availability explain a 100-year post-grazing succession of bryophyte species in the Moricsala Strict Nature Reser…

2013

Bryophyte species composition, richness and life-form distributions were studied in a succession after termination of land-use as meadows and pasture in the Moricsala Strict Nature Reserve. Detailed lists of bryophyte species in various vegetation types, which were produced in the early 1900s by Karl Reinhold Kupffer, were compared with those prepared from 2006 to 2010 to determine changes in species composition. Colonisations and extinctions of bryophyte species and life forms could be explained by increases in available substrates (living trees, dead wood, ground layer disturbance patches), and increasingly shaded conditions. In each forest type, the species diversity (alpha diversity) in…

HabitatEcologyIndicator speciesBeta diversitySpecies diversityAlpha diversityBryophytePlant ScienceSpecies richnessEcological successionBiologyEcology Evolution Behavior and SystematicsJournal of Bryology
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Environmental Characteristics and Anthropogenic Impact Jointly Modify Aquatic Macrophyte Species Diversity

2018

Species richness and spatial variation in community composition (i.e. beta diversity) are key measures of biodiversity. They are largely determined by natural factors, but also increasingly affected by anthropogenic factors. Thus, there is a need for a clear understanding of the human impact on species richness and beta diversity, the underlying mechanisms, and whether human-induced changes can override natural patterns. Here, we dissect the patterns of species richness, community composition and beta diversity in relation to different environmental factors as well as human impact in one framework: aquatic macrophytes in 66 boreal lakes in Eastern Finland. The lakes had been classified as h…

0106 biological scienceshuman impactbiodiversity; beta diversity; community composition; eutrophication; human impact; null models species richness; water plantsBeta diversityBiodiversityPlant Sciencelcsh:Plant culture010603 evolutionary biology01 natural scienceslcsh:SB1-1110community compositionOriginal ResearchbiodiversityCommunityEcologyrehevöityminen010604 marine biology & hydrobiologySpecies diversityluonnon monimuotoisuusbiodiversiteettiMacrophytenull models species richnesseutrophicationta1181Environmental sciencebeta diversitySpatial variabilitySpecies richnessWater qualitywater plantsvesikasvitFrontiers in Plant Science
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Management diversity begets biodiversity in production forest landscapes

2022

How to manage forest for biodiversity conservation is an ongoing debate. We argue that maximizing biodiversity in managed forest landscapes requires a diversity of forest management regimes in space and time. This will generate high levels of habitat heterogeneity at a landscape scale, which in turn will support various groups of forest species. Based on concepts from landscape ecology, we formulate five hypotheses on how management diversity, i.e. combining various management approaches can benefit overall biodiversity across a production forest landscape. First, management diversity will increase habitat diversity and, therefore, beta diversity (the habitat diversity hypothesis). Second, …

Beta diversitytalousmetsätmetsäekologiametsänkäsittelyLandscape heterogeneityBiodiversity conservationkestävä metsätalousForest dynamicsbiodiversiteettimonimuotoisuusmaisemaekologiametsänhoitoLandscape connectivityEcology Evolution Behavior and SystematicsNature and Landscape Conservation
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Skin and gut microbiomes of a wild mammal respond to different environmental cues

2018

Background Animal skin and gut microbiomes are important components of host fitness. However, the processes that shape the microbiomes of wildlife are poorly understood, particularly with regard to exposure to environmental contaminants. We used 16S rRNA amplicon sequencing to quantify how exposure to radionuclides impacts the skin and gut microbiota of a small mammal, the bank vole Myodes glareolus, inhabiting areas within and outside the Chernobyl Exclusion Zone (CEZ), Ukraine. Results Skin microbiomes of male bank voles were more diverse than females. However, the most pronounced differences in skin microbiomes occurred at a larger spatial scale, with higher alpha diversity in the skin m…

0301 basic medicineMalesuolistomikrobistoBeta diversityBiodiversityEnvironmental pollutionGut florasäteilybiologiaRNA Ribosomal 16SRadiation IonizingWild mammalSkin2. Zero hungerbiologyGeographyintegumentary systemympäristön saastuminenArvicolinaeionisoiva säteilyBiodiversityPollutionBank volesaastuminenIonising radiationlcsh:QR100-130FemaleMicrobiology (medical)metsämyyräympäristötekijätAnthropogenic impact030106 microbiologyZoologyMicrobiologylcsh:Microbial ecology03 medical and health sciencesMicrobial ecologyAnimalsMicrobiomeRadioisotopesBacteriaResearch15. Life on landbiology.organism_classificationbiodiversiteettiGastrointestinal Microbiome030104 developmental biologymikrobisto13. Climate actionvillieläimetSkin microbiomeAlpha diversityEnvironmental PollutionMicrobiome
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