Search results for "Temperate deciduous forest"

showing 10 items of 10 documents

Litter quality, land-use history, and nitrogen deposition effects on topsoil conditions across European temperate deciduous forests

2019

Topsoil conditions in temperate forests are influenced by several soil-forming factors, such as canopy composition (e.g. through litter quality), land-use history, atmospheric deposition, and the parent material. Many studies have evaluated the effects of single factors on physicochemical topsoil conditions, but few have assessed the simultaneous effects of multiple drivers. Here, we evaluate the combined effects of litter quality, land-use history (past land cover as well as past forest management), and atmospheric deposition on several physicochemical topsoil conditions of European temperate deciduous forest soils: bulk density, proportion of exchangeable base cations, carbon/nitrogen-rat…

0106 biological sciencesHigh forestCoppiceManagement Monitoring Policy and LawTemperate deciduous forestSoil fertility010603 evolutionary biology01 natural sciencesNutrient cyclingddc:570Base cationsBosecologie en Bosbeheer/dk/atira/pure/core/keywords/biologyInstitut für Biochemie und BiologieNature and Landscape ConservationEnvironmental planning2. Zero hungerTopsoilDecompositionpHSoil organic matter/dk/atira/pure/core/keywords/557265479Post-agricultural forestForestryPhosphorus15. Life on landPE&RCSoil typeForest Ecology and Forest ManagementAncient forestHigh forestAgronomyEcosystems ResearchSoil waterLitterEnvironmental scienceSoil fertility010606 plant biology & botany
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Monitoring elevation variations in leaf phenology of deciduous broadleaf forests from SPOT/VEGETATION time-series

2011

International audience; In mountain forest ecosystems where elevation gradients are prominent, temperature gradient-based phonological variability can be high. However, there are few studies that assess the capability of remote sensing observations to monitor ecosystem phenology along elevation gradients, despite their relevance under climate change. We investigated the potential of medium resolution remotely sensed data to monitor the elevation variations in the seasonal dynamics of a temperate deciduous broadleaf forested ecosystem. Further, we explored the impact of elevation on the onset of spring leafing. This study was based on the analysis of multi-annual time-series of VEGETATION da…

010504 meteorology & atmospheric sciences[SDV]Life Sciences [q-bio]0211 other engineering and technologiesSoil Science02 engineering and technologyLand coverSPRING PHENOLOGYPhonologyTemperate deciduous forest01 natural sciencesPLANT PHENOLOGYGLOBAL CHANGEComputers in Earth SciencesBeechVEGETATION PHENOLOGY021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingCLIMATE-CHANGEbiologyPhenologyElevationLeaf unfoldingGeologyVegetation15. Life on landbiology.organism_classificationDeciduous forestNOAA-AVHRRDeciduousMODISTemporal unmixingHIGH-LATITUDES13. Climate actionElevation[SDE]Environmental SciencesSATELLITE DATAEnvironmental scienceCommon spatial patternVEGETATIONPerpendicular vegetation indexREMOTE-SENSING DATARemote Sensing of Environment
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Life‐form diversity across temperate deciduous forests of Western Eurasia: A different story in the understory

2021

[Aim]To analyse the biogeographic patterns of Temperate Deciduous Forests (TDFs) in Western Eurasia based on different life-forms and forests layers and explore their relationships with the current climate, Last Glacial Maximum (LGM) climate and topography.

0106 biological sciencesCzechlife form shrub layer species richness tree layermedia_common.quotation_subjectlife formTemperate deciduous forest010603 evolutionary biology01 natural sciencesEurope Euxinian forest diversity forest floor Hyrcanian life form shrub layer species richness tree layerforest floorshrub layerspecies richnessEcology Evolution Behavior and Systematicsmedia_commonHyrcanianForest floorGovernmentEcologyAgroforestryFoundation (engineering)Understoryforest diversity15. Life on landlanguage.human_languageEuxinianEuropeGeographylanguageSpecies richnesstree layerEurope Euxinian forest diversity forest floor Hyrcanian life form shrub layer speciesrichness tree layer010606 plant biology & botanyDiversity (politics)
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Drivers of above-ground understorey biomass and nutrient stocks in temperate deciduous forests

2020

The understorey in temperate forests can play an important functional role, depending on its biomass and functional characteristics. While it is known that local soil and stand characteristics largely determine the biomass of the understorey, less is known about the role of global change. Global change can directly affect understorey biomass, but also indirectly by modifying the overstorey, local resource availability and growing conditions at the forest floor. In this observational study across Europe, we aim at disentangling the impact of global-change drivers on understorey biomass and nutrient stocks, from the impact of overstorey characteristics and local site conditions. Using piecewi…

0106 biological sciencespiecewise SEMproductivityPlant ScienceTemperate deciduous forest010603 evolutionary biology01 natural sciencesherb layerBosecologie en Bosbeheer/dk/atira/pure/core/keywords/biologyEcology Evolution Behavior and SystematicsForest floorBiomass (ecology)EcologyEcologyTaigaUnderstory15. Life on landPlant litterPE&RCground layerForest Ecology and Forest ManagementEcosystems Researchecosystem functioningEnvironmental sciencePhytoCalcTerrestrial ecosystemTemperate rainforest010606 plant biology & botanyJournal of Ecology
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Plant functional trait response to environmental drivers across European temperate forest understorey communities

2020

Functional traits respond to environmental drivers, hence evaluating trait-environment relationships across spatial environmental gradients can help to understand how multiple drivers influence plant communities. Global-change drivers such as changes in atmospheric nitrogen deposition occur worldwide, but affect community trait distributions at the local scale, where resources (e.g. light availability) and conditions (e.g. soil pH) also influence plant communities. We investigate how multiple environmental drivers affect community trait responses related to resource acquisition (plant height, specific leaf area (SLA), woodiness, and mycorrhizal status) and regeneration (seed mass, lateral s…

0106 biological sciencesSpecific leaf areaNitrogenPlant ScienceForestsBiologyTemperate deciduous forestGlobal Warming010603 evolutionary biology01 natural sciencesSoilground vegetationBosecologie en BosbeheerGlobal environmental change/dk/atira/pure/core/keywords/biologyherbaceous layerplant–soil relationsEcosystemEcology Evolution Behavior and Systematics2. Zero hungerEcologyTemperate forestPlant communityGeneral MedicineUnderstoryPlants15. Life on landSoil typePE&RCForest Ecology and Forest ManagementEuropePlant LeavesEcosystems Researchresource acquisition13. Climate actionregenerationLitterSpecies richness010606 plant biology & botany
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Cohabitation of tree holes by ants and breeding birds in a temperate deciduous forest

2015

A previously unknown association of ants with birds breeding in tree holes is described. Ants Lasius brunneus Latreille (Hymenoptera: Formicidae) were found in c. 15% of nests of Parus major L. and Poecile palustris L. (Paridae) breeding in tree holes in the primeval deciduous forest located in the Białowieża National Park (Poland). The ants preferably used holes located higher above the ground. As such holes are warmer than the unused holes or other nest sites, it is suggested that the ants cohabit holes utilized by the tits to gain thermal benefits.

0106 biological sciencesParusbiologyNational parkved/biologyEcologyLasius brunneus05 social sciencesved/biology.organism_classification_rank.speciesForestryHymenopterabiology.organism_classificationTemperate deciduous forest010603 evolutionary biology01 natural sciencesPoecile palustrisLasius brunneusDeciduousmicroclimate of tree holesNestParus major0501 psychology and cognitive sciencesPoecile palustrisBiałowieża National Park050102 behavioral science & comparative psychologyScandinavian Journal of Forest Research
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Broadleaf deciduous forest counterbalanced the direct effect of climate on Holocene fire regime in hemiboreal/boreal region (NE Europe)

2017

Abstract Disturbances by fire are essential for the functioning of boreal/hemiboreal forests, but knowledge of long-term fire regime dynamics is limited. We analysed macrocharcoal morphologies and pollen of a sediment record from Lake Lielais Svētiņu (eastern Latvia), and in conjunction with fire traits analysis present the first record of Holocene variability in fire regime, fuel sources and fire types in boreal forests of the Baltic region. We found a phase of moderate to high fire activity during the cool and moist early (mean fire return interval; mFRI of ∼280 years; 11,700–7500 cal yr BP) and the late (mFRI of ∼190 years; 4500–0 cal yr BP) Holocene and low fire activity (mFRI of ∼630 y…

010506 paleontologyArcheologyGlobal and Planetary Change010504 meteorology & atmospheric sciencesFire regimeHemiborealEcologyTaigaGeology15. Life on landTemperate deciduous forest01 natural sciencesDeciduousBoreal13. Climate actionEnvironmental scienceFire ecologyEcology Evolution Behavior and SystematicsHolocene0105 earth and related environmental sciencesQuaternary Science Reviews
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Root-induced tree species effects on the source/sink strength for greenhouse gases (CH4, N2O and CO2) of a temperate deciduous forest soil

2013

Through their leaf litter and throughfall water, tree species can have a pronounced influence on soil chemistry. However, there is little knowledge of species-specific root effects on greenhouse gas fluxes between forest soils and the atmosphere. By growing saplings of beech (Fagus sylvatica) and ash (Fraxinus excelsior) in monoculture or mixture at defined atmospheric and soil conditions in rhizotrons, we tested four hypotheses related to potential root-induced tree species effects on the uptake of CH4 and the emission of N2O and CO2 from the soil. This design excluded putative effects of leaf litter mineralisation on trace gas fluxes. Gas fluxes were measured biweekly using the closed cha…

Rhizosphere010504 meteorology & atmospheric sciencesbiologySoil ScienceSoil chemistry04 agricultural and veterinary sciences15. Life on landPlant litterTemperate deciduous forestbiology.organism_classification01 natural sciencesMicrobiologySoil respirationAgronomyFagus sylvatica13. Climate actionBotanySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceBeech0105 earth and related environmental sciencesSoil Biology and Biochemistry
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The toughest animals of the Earth versus global warming: Effects of long-term experimental warming on tardigrade community structure of a temperate d…

2021

Abstract Understanding how different taxa respond to global warming is essential for predicting future changes and elaborating strategies to buffer them. Tardigrades are well known for their ability to survive environmental stressors, such as drying and freezing, by undergoing cryptobiosis and rapidly recovering their metabolic function after stressors cease. Determining the extent to which animals that undergo cryptobiosis are affected by environmental warming will help to understand the real magnitude climate change will have on these organisms. Here, we report on the responses of tardigrades within a five‐year‐long, field‐based artificial warming experiment, which consisted of 12 open‐to…

karhukaisetexperimentalTemperate deciduous forestglobal warmingEffects of global warmingAbundance (ecology)CryptobiosisEcology Evolution Behavior and SystematicsQH540-549.5Nature and Landscape ConservationOriginal Researchclimate change; experimental; global warming; Tardigrades; water bearsbiologyEcologyEcologywater bearsGlobal warmingPlant litterilmastonmuutoksetbiology.organism_classificationclimate changemaaperäeläimistöTardigradesEnvironmental scienceSpecies richnessTardigradelämpeneminenympäristönmuutokset
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Seasonal dynamics of the bacterial community in forest soils under different quantities of leaf litter

2010

International audience; Soil microbial communities play an important role in soil carbon functioning, particularly in forest ecosystems. Their variation in response to climate change may affect soil carbon processes, highlighting the importance of understanding how environmental factors affect microbial communities. This study aimed to determine to what extent an increase in the quantity of fresh litter may affect heterotrophic mineralization of organic carbon and bacterial community structure in soil and litter. A litter manipulation experiment was performed in situ in a temperate deciduous forest. Three treatments of fresh litter inputs were considered: litter exclusion, natural condition…

[SDE] Environmental SciencesLITTER[SDV]Life Sciences [q-bio]FORET TEMPEREE DE FEUILLUSSoil ScienceBACTERIAL COMMUNITY STRUCTURE AND FUNCTIONINGTemperate deciduous forestTEMPERATE DECIDUOUS FORESTSoil respiration[ SDE ] Environmental Sciences03 medical and health sciencesForest ecology030304 developmental biology2. Zero hunger0303 health sciencesEcologyEcologyCommunity structure04 agricultural and veterinary sciencesSoil carbonMineralization (soil science)15. Life on landPlant litterAgricultural and Biological Sciences (miscellaneous)SOIL13. Climate actionARISASoil water[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceSOIL RESPIRATION
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