0000000001329320

AUTHOR

Teemu Tahvanainen

showing 15 related works from this author

Formalized classification of European fen vegetation at the alliance level

2017

AimsPhytosociological classification of fen vegetation (Scheuchzerio palustris-Caricetea fuscae class) differs among European countries. Here we propose a unified vegetation classification of European fens at the alliance level, provide unequivocal assignment rules for individual vegetation plots, identify diagnostic species of fen alliances, and map their distribution.LocationEurope, western Siberia and SE Greenland.Methods29 049 vegetation-plot records of fens were selected from databases using a list of specialist fen species. Formal definitions of alliances were created using the presence, absence and abundance of Cocktail-based species groups and indicator species. DCA visualized the s…

0106 biological sciencesVegetation classificationBos- en LandschapsecologieWetlandManagement Monitoring Policy and Law010603 evolutionary biology01 natural sciencesSupervised vegetation classificationVegetation plotsForest and Landscape EcologyVegetatieNature and Landscape Conservationgeographygeography.geographical_feature_categoryVegetationBiogeography ; Ecological gradients ; Endangered habitats ; Mires ; Releves ; Supervised vegetation classification ; Unsupervised vegetation classification ; Vegetation plots ; WetlandsEcologyChemistryEcologyMiresRelevésSpecies diversityUnsupervised vegetation classificationVegetation15. Life on landPE&RCEndangered habitatsBorealBiogeographyIndicator speciesWetlandsEcological gradientsOrdinationVegetatie Bos- en LandschapsecologieSpecies richnessVegetation Forest and Landscape Ecology010606 plant biology & botany
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Biogeographic patterns of base-rich fen vegetation across Europe

2014

International audience; Questions: What is the distribution of base-rich fen vegetation and the specia- list species along European biogeographic regions? How do the gradients in spe- cies composition correlate to geography and climate at continental scale? What are the implications of such patterns for the classification of these habitats?Location: Fifteen countries of Central, Western and Northern Europe.Methods: We compiled a vegetation plot database of base-rich fens and related communities including vascular plants and bryophytes. The initial data set with 6943 plots was filtered according to the presence of specialists using discriminant analysis. We used DCA to analyse the correlatio…

miresVegetation classificationClimateBos- en Landschapsecologiewaterplant associationsWetlandecological gradientsManagement Monitoring Policy and LawGeneralist and specialist speciesSpecies compositionVegetation typeplot sizeTemperate climateForest and Landscape Ecologyvascular plantsenvironmental gradientsVegetatieNature and Landscape Conservationgeography[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologygeography.geographical_feature_categoryVegetationFenEcologyEcologytemperate zoneVegetation classificationHabitats directiveVegetation15. Life on landnorthDiagnostic speciesHabitatBorealclassificationWetlandVegetatie Bos- en LandschapsecologieVegetation Forest and Landscape EcologyGradient[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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The Effects of Peatland Restoration on Water-Table Depth, Elemental Concentrations, and Vegetation: 10 Years of Changes

2010

We studied the effects of restoration on water-table depth (WTD), element concentrations of peat and vegetation composition of peatlands drained for forestry in southern Finland. The restoration aimed to return the trajectory of vegetation succession toward that of undisturbed systems through the blockage of ditches and the removal of trees. Permanent plots established on a bog and a fen were sampled 1 year before, and 1, 2, 3, and 10 years after the restoration. The restoration resulted in a long-term rise of the water-table in both peatlands. Ten years after restoration, the mineral element concentrations (Ca, K, Mg, Mn, and P) of peat corresponded to those reported from comparable pristi…

0106 biological sciencesHydrologyNutrient cyclegeographyPeatgeography.geographical_feature_category010504 meteorology & atmospheric sciencesEcologyEcologyPlant communityWetlandEcological successionVegetation15. Life on land010603 evolutionary biology01 natural sciencesEnvironmental scienceEcosystemBogEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesNature and Landscape ConservationRestoration Ecology
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Classification of European bog vegetation of the Oxycocco-Sphagnetea class

2022

Aims: Classification of European bog vegetation (Oxycocco-Sphagnetea class); identification of diagnostic species for the class and vegetation subgroups (orders and alliances); development of an expert system for automatic classification of vegetation plots; and production of distribution maps of the Oxycocco-Sphagnetea class and its alliances. Location: Europe. Methods: A data set of vegetation-plot records was compiled to include various bog types over most of the European continent. An unsupervised classification (beta-flexible linkage method, Sørensen distance measure) and detrended correspondence analysis (DCA) ordination were applied. Formal definitions of syntaxa based on species pre…

Braun-Blanquet approachblanket miresEcologyombrotrophic mirevegetation-plot databaseManagement Monitoring Policy and Lawraised bogpalsa mirepolygon mirevegetation classificationNature and Landscape Conservationexpert systemApplied Vegetation Science
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Recovery of plant communities after ecological restoration of forestry-drained peatlands

2017

Ecological restoration is expected to reverse the loss of biodiversity and ecosystem services. Due to the low number of well-replicated field studies, the extent to which restoration recovers plant communities, and the factors underlying possible shortcomings, are not well understood even in medium term. We compared the plant community composition of 38 sites comprising pristine, forestry-drained, and 5 or 10 years ago restored peatlands in southern Finland, with special interest in understanding spatial variation within studied sites, as well as the development of the numbers and the abundances of target species. Our results indicated a recovery of community composition 5–10 years after re…

0106 biological sciencesanthropogenic disturbanceimmigration creditta1172Biodiversity010603 evolutionary biology01 natural sciencesextinction debtForest restorationrecoveryAbundance (ecology)vegetationMirecommunity compositiondebtRestoration ecologymireresilienceEcology Evolution Behavior and Systematicsrecovery debtNature and Landscape ConservationOriginal ResearchresilienssiEcologyEcology010604 marine biology & hydrobiologyPlant communityVegetationkasvillisuustrajectoryEnvironmental scienceta1181Extinction debt
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Fighting carbon loss of degraded peatlands by jump-starting ecosystem functioning with ecological restoration

2015

Degradation of ecosystems is a great concern on the maintenance of biodiversity and ecosystem services. Ecological restoration fights degradation aiming at the recovery of ecosystem functions such as carbon (C) sequestration and ecosystem structures like plant communities responsible for the C sequestration function. We selected 38 pristine, drained and restored boreal peatland sites in Finland and asked i) what is the long-term effect of drainage on the peatland surface layer C storage, ii) can restoration recover ecosystem functioning (surface layer growth) and structure (plant community composition) and iii) is the recovery of the original structure needed for the recovery of ecosystem f…

Conservation of Natural ResourcesEnvironmental EngineeringPeatecosystem structure–function relationshipta1172BiodiversityWetlandCarbon sequestrationplant community compositionEcosystem servicesturveEnvironmental ChemistryEcosystemecosystem recoveryWaste Management and DisposalRestoration ecologyta116EcosystemEnvironmental Restoration and RemediationFinlandgeographygeography.geographical_feature_categoryEcologyPlant communityhiilensidontaBiodiversityPollutioncarbon sequestrationCarbonWetlandspeatEnvironmental scienceta1181ecosystem degradationScience of the Total Environment
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Changes in Pore Water Quality After Peatland Restoration: Assessment of a Large-Scale, Replicated Before-After-Control-Impact Study in Finland

2017

Drainage is known to affect peatland natural hydrology and water quality, but peatland restoration is considered to ameliorate peatland degradation. Using a replicated BACIPS (Before-After-Control-Impact Paired Series) design, we investigated 24 peatlands, all drained for forestry and subsequently restored, and 19 pristine control boreal peatlands with high temporal and spatial resolution data on hydroclimate and pore water quality. In drained conditions, total nitrogen (Ntot), total phosphorus (Ptot), and dissolved organic carbon (DOC) in pore water were several-fold higher than observed at pristine control sites, highlighting the impacts of long-term drainage on pore water quality. In gen…

HydrologyPeat010504 meteorology & atmospheric sciencesWater table010501 environmental sciences01 natural sciencesPore water pressureNutrientHydrology (agriculture)Dissolved organic carbonEnvironmental scienceWater qualityDrainage0105 earth and related environmental sciencesWater Science and TechnologyWater Resources Research
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The effects of long-term drainage and subsequent restoration on water table level and pore water chemistry in boreal peatlands

2014

Summary Degradation by drainage threatens biodiversity and globally important peatland ecosystem functions such as long-term carbon sequestration in peat. Restoration aims at safeguarding peatland values by recovering natural hydrology. Long-term effects of drainage and subsequent restoration, especially related to within-site variation of water table level and pore water chemistry, are poorly known. We studied hydrological variation at 38 boreal Sphagnum peatland sites (pristine, drained and restored) in Finland. The average water table level was significantly lower at Drained than Pristine sites especially near the ditches. We also observed large pore water chemical differences between Dr…

Hydrologyhydrologiageographygeography.geographical_feature_categoryPeatbiologyanthropogenic disturbanceWater tableta1172Ditchspatial variationWetlandbiology.organism_classificationSphagnumwetlandPore water pressureHydrology (agriculture)ekosysteemipalvelutecosystem functionta1181Drainageta116Water Science and Technology
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Biologian kenttäopetus yliopistoissa: yhteistyöllä uuteen nousuun

2017

Kenttäkurssit ovat keskeinen osa biologian ja lähitieteiden opetusta yliopistoissa. Luonnossa tapahtuva opetus kehittää sekä ymmärrystä tieteenalan teoreettisista perusteista että ammatillisia käytännön taitoja. Kenttäkursseilla omat havainnot muodostuvat oppimisen perustaksi muiden oppimistapojen rinnalla. Vaikka kenttäopetuksen tarpeellisuudesta ollaan yksimielisiä, kenttäkursseja uhkaavat yliopistojen rahoituksen väheneminen ja tutkimusasemaverkoston karsiminen. Tässä kirjoituksessa pohdimme, kuinka uhkista huolimatta kenttäopetuksen määrää, laatua ja kustannustehokkuutta voidaan lisätä yliopistojen ja niiden tutkimusasemien välisellä yhteistyöllä. nonPeerReviewed

korkeakoluopetusyliopistotbiologia
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Rising temperature modulates pH niches of fen species

2021

Rising temperatures may endanger fragile ecosystems because their character and key species show different habitat affinities under different climates. This assumption has only been tested in limited geographical scales. In fens, one of the most endangered ecosystems in Europe, broader pH niches have been reported from cold areas and are expected for colder past periods. We used the largest European-scale vegetation database from fens to test the hypothesis that pH interacts with macroclimate temperature in forming realized niches of fen moss and vascular plant species. We calibrated the data set (29,885 plots after heterogeneity-constrained resampling) with temperature, using two macroclim…

0106 biological sciences010504 meteorology & atmospheric sciencesClimate Changemedia_common.quotation_subjectNicheBryophyta010603 evolutionary biology01 natural sciencesCompetition (biology)MireSphagnopsidaEnvironmental ChemistryEcosystem0105 earth and related environmental sciencesGeneral Environmental Sciencemedia_commonEcological nicheGlobal and Planetary ChangeEcologybiologyEcologyTemperatureEdaphicInterspecific competitionHydrogen-Ion Concentration15. Life on landbiology.organism_classificationMossSpecies richnessGlobal Change Biology
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Changes in pore water quality after peatland restoration: Assessment of a large¿scale, replicated Before-After-Control-Impact study in Finland

2017

Drainage is known to affect peatland natural hydrology and water quality, but peatland restoration is considered to ameliorate peatland degradation. Using a replicated BACIPS (Before-After-Control-Impact Paired Series) design, we investigated 24 peatlands, all drained for forestry and subsequently restored, and 19 pristine control boreal peatlands with high temporal and spatial resolution data on hydroclimate and pore water quality. In drained conditions, total nitrogen (Ntot), total phosphorus (Ptot), and dissolved organic carbon (DOC) in pore water were several-fold higher than observed at pristine control sites, highlighting the impacts of long-term drainage on pore water quality. In gen…

hydrologiarestorationtyppipeatland hydrologypore water qualityennallistaminenvedenlaatuturvemaatfosforidrainage
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Elinympäristöjen tilan edistäminen Suomessa : ELITE-työryhmän mietintö elinympäristöjen tilan edistämisen priorisointisuunnitelmaksi ja arvio suunnit…

2015

Kestävä luonnonvarojen käyttö on perusta sekä ihmisen että luonnon hyvinvoinnille. Tähän mietintöön on koottu Elinympäristöjen tilan edistämisen (ELITE) työryhmän työn tulokset. Työ edistää osaltaan luonnonvarojen käytön kestävyyttä antamalla suuntaviivoja luonnon monimuotoisuuden turvaamiseen Suomen metsissä, soilla, perinnebiotoopeilla, maatalousalueilla, kallioilla, tuntureilla sekä rannikolla. Osin tarkastelussa mukana olivat myös kaupunkiympäristöt ja sisävedet. Varsinaisen tarkastelun ulkopuolelle jätettiin rannikkovesien ulkopuoliset meret. Elinympäristöjen tilan edistämisen toimenpiteet voivat käsittää suojelua, luonnonhoitoa tai perinteisellä tavalla ymmärrettyä ennallistamista. To…

luonnonhoitoekosysteemipalvelutpriorisointiSuomimonimuotoisuuselinympäristötennallistaminen
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New national and regional biological records for Finland 11 : Contributions to Bryophyta and Marchantiophyta 10

2023

Ten species of mosses (Bryophyta: Entosthodon obtusus, Entosthodon ulvinenii, Eurhynchiastrum diversifolium, Hedwigia emodica, Hedwigia mollis, Hygrohypnum styriacum, Plagiothecium rossicum, Polytrichum perigoniale, Tortella alpicola and Ulota intermedia) are presented as new for Finland. Cephalozia lacinulata, previously considered to be regionally extinct from Finland, is reported to being found again. New records in biogeographical provinces for 67 species of mosses and 34 species of liverworts are listed. Finally, 6 occurrences in provinces are removed due to misidentifications or missing specimens. peerReviewed

lajistokartoitussammaletsystematiikka (biologia)kasvimaantiedeSuomitietokannatmaksasammaletlevinneisyyslehtisammaletherbaariot
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Challenge to define and quantify ecosystem collapse debt

2018

Degradation and loss of ecosystems are of great global concern. It is likely that decline of ecosystems will continue and a debt of ecosystem loss exists, comprising of 1) direct and expectedly continued forcing by detrimental anthropogenic actions and 2) of indirect ongoing gradual change of defining characters set in motion by an initial perturbation. Both direct destructive actions and indirect gradual changes contribute to collapse, i.e. loss of defining characters of certain type of ecosystem. Classification and typology are central to any assessment of risk of ecosystem collapse. Following indirect gradual change, an ecosystem does not vanish, but it may lose its characters and fall b…

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Hydrological disturbances and naturalness of aapa mires in Finland

2018

Peatlands comprise one of the key elements in the boreal landscape. In Finland, almost one third of the land area is covered by different types of peatlands. Half of the Finnish peatland area has been drained, however, and in Southern half of the country, 75 % is drained (1). While drainage has increased forest growth, it has also caused manifold ecological consequences. For example, the state of the remaining undrained peatlands is affected by drainage of surrounding areas and fragmentation. The undrained peatland area in Finland consists of various sizes of peatland patches that often, at least in the southern areas, are not intact peatland ecosystems but only remnant patches of formerly …

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