0000000000170728

AUTHOR

Janne Soininen

showing 13 related works from this author

Distance decay 2.0 – a global synthesis of taxonomic and functional turnover in ecological communities

2021

AbstractUnderstanding the variation in community composition and species abundances, i.e., β-diversity, is at the heart of community ecology. A common approach to examine β-diversity is to evaluate directional turnover in community composition by measuring the decay in the similarity among pairs of communities along spatial or environmental distances. We provide the first global synthesis of taxonomic and functional distance decay along spatial and environmental distance by analysing 149 datasets comprising different types of organisms and environments. We modelled an exponential distance decay for each dataset using generalized linear models and extracted r2 and slope to analyse the streng…

0106 biological sciencesGeneralized linear modelDistance decayCommunity010604 marine biology & hydrobiology15. Life on land010603 evolutionary biology01 natural sciencesLatitudeExponential functionSimilarity (network science)Environmental scienceMarine ecosystem14. Life underwaterPhysical geographySpatial extent
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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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Plant trait‐environment relationships in tundra are consistent across spatial scales

2023

Patterns and processes shaping ecosystems vary across spatiotemporal scales. As plant functional traits reflect ecosystem properties, investigating their relationships with environment provides an important tool to understand and predict ecosystem structure and functioning. This is particularly important in the tundra where a changing climate may trigger severe alterations in plant communities as both summer and winter conditions are changing. Here, we investigate the relationships between key environmental drivers including summer temperature, snow persistence, topographic position and soil pH, and species height, specific leaf area (SLA) and seed mass as plant traits. The study is carried…

Summer temperaturetundrasummer temperatureVascular plantsArctic-alpine vegetationlumikasvillisuuspaikkatietoanalyysisnowilmastonmuutoksetekosysteemit (ekologia)kesäSnow1181 Ecology evolutionary biologyarctic–alpine vegetationputkilokasvitlämpötilafunctional traitsvascular plantsFunctional traits1172 Environmental sciencesEcology Evolution Behavior and SystematicsEcography
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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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Does trait-based joint species distribution modelling reveal the signature of competition in stream macroinvertebrate communities?

2021

1. The occupancy and abundance of species are jointly driven by local factors, such as environmental characteristics and biotic interactions, and regional‐scale factors, such as dispersal and climate. Recently, it has been shown that biotic interactions shape species occupancies and abundances beyond local extents. However, for small ectothermic animals, particularly for those occurring in freshwater environments, the importance of biotic interactions remains understudied. Species‐to‐species associations from joint species distribution models (i.e. species associations while controlling for environmental characteristics) are increasingly used to draw hypotheses of which species possibly sho…

0106 biological sciencesMetacommunitymedia_common.quotation_subjectSpecies distributionpurotfunctional feeding guildsBiology010603 evolutionary biology01 natural sciencesCompetition (biology)Riversjoint species distribution modelsAbundance (ecology)substrate attachment modedistributionAnimalsdispersalEcosystemFinlandEcology Evolution Behavior and Systematicsmedia_commonEcology010604 marine biology & hydrobiologyinterspecific competitionvesiekosysteemitlevinneisyysInterspecific competitioneliöyhteisöt15. Life on landselkärangattomatstreamsInvertebratesEnvironmental niche modellingPhenotypeHabitat1181 Ecology evolutionary biologyBiological dispersalAnimal Science and Zoologybody sizeleviäminen
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Subtropical streams harbour higher genus richness and lower abundance of insects compared to boreal streams, but scale matters

2018

Aim: Biological diversity typically varies between climatically different regions, and regions closer to the equator often support higher numbers of taxa than those closer to the poles. However, these trends have been assessed for a few organism groups, and the existing studies have rarely been based on extensive identical surveys in different climatic regions. Location: We conducted standardized surveys of wadeable streams in a boreal (western Finland) and a subtropical (south-eastern Brazil) region, sampling insects identically from 100 streams in each region and measuring the same environmental variables in both regions. Taxon: Aquatic insects. Methods: Comparisons were made at the scale…

regional diversity0106 biological sciencespurotBiodiversitySTREAMSSubtropics010603 evolutionary biology01 natural sciencesMACROINVERTEBRATE COMMUNITIESlow-high latitude comparisonnutrientsAbundance (ecology)stream insectsrank abundance1172 Environmental sciencesEcology Evolution Behavior and SystematicsGLOBAL PATTERNSEcologyEcologySPECIES RICHNESSBEETLES COLEOPTERA010604 marine biology & hydrobiologysubtrooppinen vyöhykealpha diversity15. Life on landBETA DIVERSITYlow–high latitude comparisonEVOLUTIONbiodiversiteettiLATITUDINAL DIVERSITY GRADIENTENVIRONMENTAL-CONDITIONSboreaalinen vyöhykeGeographyBoreal13. Climate action1181 Ecology evolutionary biologyhyönteisetta1181BIODIVERSITYAlpha diversityRank abundance curveSpecies richnessORGANISMSJournal of Biogeography
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Distance decay 2.0. A global synthesis of taxonomic and functional turnover in ecological communities

2022

Caio Graco-Roza was funded by the Coordination for the Improvement of Higher Education Personnel (CAPES), the Carlos Chagas Filho Research Support Foundation (FAPERJ) and the Ella and Georg Erhnrooth Foundation; Jan Altman by research grants INTER-EXCELLENCE LTAUSA19137 provided by Czech Ministry of Education, Youth and Sports, 20-05840Y of the Czech Science Foundation, and long-term research development project no. RVO 67985939 of the Czech Academy of Sciences; Otso Ovaskainen was funded by Academy of Finland (grant no. 309581), Jane and Aatos Erkko Foundation, Research Council of Norway through its Centres of Excellence Funding Scheme (223257), and the European Research Council (ERC) unde…

environmental gradientASSEMBLY PROCESSESlatitudinal gradient333.7: Landflächen NaturerholungsgebieteTraitaccessβ-diversityDRIVERSQuantitative Biology::Populations and Evolutionspatial distancebeta-diversity biogeography environmental gradient spatial distance traitSCALE DEPENDENCYCentro Oceanográfico de GijónbiodiversityGlobal and Planetary ChangeEcologytraitdriverseliöyhteisötekologiaENVIRONMENTAL-CONDITIONSBiogeographySIMILARITY1181 Ecology evolutionary biologySpatial distance1171 Geosciencesbeta-diversityβ-diversity; biogeography; environmental gradient; spatial distance; traitscale dependencyβ- diversitybeta-diversity patternsβ‐diversityeliömaantiede4111 Agronomyβ-diversity biogeography environmental gradient spatial distance traitspecies traitsbeta-diversity; biogeography; environmental gradient; spatial distance; traitdistributionenvironmental-conditionsEnvironmental gradientassembly processesMedio Marinosimilarity1172 Environmental sciencesEcology Evolution Behavior and SystematicsbiogeographybiodiversiteettiLATITUDINAL GRADIENTbiogeography; environmental gradient; spatial distance; trait; β-diversityresponsesBIODIVERSITYHigh Energy Physics::ExperimentBETA-DIVERSITY PATTERNSSPECIES TRAITSRESPONSES
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Towards understanding the abundance of non-pollen palynomorphs : A comparison of fossil algae, algal pigments and sedaDNA from temperate lake sedimen…

2018

Given the increased interest in non-pollen palynomorphs (microscopic objects other than pollen identified from pollen slides) in palaeoecological studies, it is necessary to seek a deeper understanding of the reliability of these results. We combined quantitative information of algal pigments and sedimentary ancient DNA (sedaDNA) of phylotaxonomical resolution to validate the richness and abundance of fossil algae in the sediment of a small temperate lake. For the first time, fossil and sedaDNA algae data were combined in a composite data-set and used to reconstruct algae turnover rates over the last 14,500 years. This comparison serves as both an example of howfossil algae can be used to a…

DYNAMICS1171 Geosciences010506 paleontologycommunity richness010504 meteorology & atmospheric sciencesCLIMATE CHANGESBiologymedicine.disease_causePediastrum114 Physical sciences01 natural sciencesBPEASTERN LATVIAAlgaeAbundance (ecology)PollenHOLOCENEmedicinenon-pollen palynomorphRECONSTRUCTIONsedaDNARECORDSEcology Evolution Behavior and SystematicsHolocene0105 earth and related environmental sciencesPOLANDEcologypalaeopigmentPaleontologySedimentbiology.organism_classificationPHYTOPLANKTON RESPONSEPEDIASTRUMAncient DNAarticlesSpecies richness
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Community size affects the signals of ecological drift and niche selection on biodiversity

2019

AbstractEcological drift can override the effects of deterministic niche selection on small populations and drive the assembly of small communities. We tested the hypothesis that smaller local communities are more dissimilar among each other because of ecological drift than larger communities, which are mainly structured by niche selection. We used a unique, comprehensive dataset on insect communities sampled identically in a total of 200 streams in climatically different regions (Brazil and Finland) that differ in community size by fivefold. Null models allowed us to estimate the magnitude to which beta diversity deviates from the expectation under a random assembly process while taking di…

0106 biological sciencesMetacommunityEcology010604 marine biology & hydrobiologynull modelsNicheCommunity structureBeta diversitySmall population sizebeta diversity deviation15. Life on land010603 evolutionary biology01 natural sciencesGeographyHabitat destruction13. Climate actioncommunity assemblySpecies richnessaquatic insectsdispersalmetacommunitiesRelative species abundancedemographic stochasticity
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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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Beta diversity of stream insects differs between boreal and subtropical regions, but land use does not generally cause biotic homogenization

2021

Made available in DSpace on 2021-06-25T10:17:36Z (GMT). No. of bitstreams: 0 Previous issue date: 2021-03-01 Previous studies have found mixed results regarding the relationship between beta diversity and latitude. In addition, by influencing local environmental heterogeneity, land use maymodify spatial taxonomic and functional variability among communities causing biotic differentiation or homogenization. We tested 1) whether taxonomic and functional beta diversities among streams within watersheds differ between subtropical and boreal regions and 2) whether land use is related to taxonomic and functional beta diversities in both regions.Wesampled aquatic insects in 100 subtropical (Brazil…

0106 biological sciencesBiological traitsHomogenization (climate)Functional homogenizationBeta diversityBiodiversityLatitudinal diversity gradientSubtropicsAquatic Science010603 evolutionary biology01 natural sciencesLatitudeLATITUDINAL GRADIENTSfunctional homogenizationlatitudinal diversity gradientDISTURBANCEEcology Evolution Behavior and SystematicsSCALEEcologyLand useEcology010604 marine biology & hydrobiologySPECIES RICHNESSEnvironmental heterogeneityMACROINVERTEBRATE ASSEMBLAGESrespiratory systemenvironmental heterogeneitybiological traitsBoreal1181 Ecology evolutionary biologyAquatic insectsPATTERNSEnvironmental scienceBIODIVERSITYSpecies richnessaquatic insectsCOMMUNITIEShuman activitiesRESPONSES
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Sampling effort and information quality provided by rare and common species in estimating assemblage structure

2020

Made available in DSpace on 2020-12-12T01:06:11Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-03-01 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) Reliable biological assessments are essential to answer ecological and management questions but require well-designed studies and representative sample sizes. However, large sampling effort is rarely possible, because it demands large financial resources and time, restricting the number of sites sampled, the duration of the study and the sampling effort at each site. In…

0106 biological sciencesMultivariate statisticsRare speciesDIVERSITYGeneral Decision SciencesSUFFICIENTContext (language use)MACROINVERTEBRATE010501 environmental sciences010603 evolutionary biology01 natural sciencesProcrustesCommon speciesAbundance (ecology)EXCLUSIONStatisticsCommunity ecologyEcology Evolution Behavior and SystematicsMinimal sampling effort0105 earth and related environmental sciencesMathematicsEcologyStream insectsSampling (statistics)15. Life on landENVIRONMENTAL HETEROGENEITYCOMMUNITYBiological diversitySTREAM1181 Ecology evolutionary biologyBIODIVERSITYABUNDANCEOrdinationProcrustes analysisRICHNESS PATTERNSEcological Indicators
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Local eukaryotic and bacterial stream community assembly is shaped by regional land use effects

2023

With anticipated expansion of agricultural areas for food production and increasing intensity of pressures stemming from land-use, it is critical to better understand how species respond to land-use change. This is particularly true for microbial communities which provide key ecosystem functions and display fastest responses to environmental change. However, regional land-use effects on local environmental conditions are often neglected, and, hence, underestimated when investigating community responses. Here we show that the effects stemming from agricultural and forested land use are strongest reflected in water conductivity, pH and phosphorus concentration, shaping microbial communities a…

mikrobiekologiamaankäytön suunnitteluympäristövaikutuksetalueelliset vaikutuksetmaankäyttömicrobial ecologycommunity ecology
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