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Data from: Increased root herbivory under elevated atmospheric carbon dioxide concentrations is reversed by silicon-based plant defences
负责人:
Frew, Adam
关键词:
Atmospheric concentrations of CO2 below-ground herbivory climate change crop damage insect herbivore pest management plant defences silicon sugarcane
DOI:
doi:10.5061/dryad.r3s16
摘要:
remediate situations where plants become more susceptible to herbivores. Sugarcane (Saccharum spp. hybrid) were subjected to fully factorial treatment
Data from: Differential responses of ecosystem carbon flux components to experimental precipitation gradient in an alpine meadow
负责人:
关键词:
carbon fluxes;manipulative experiment;Precipitation gradient;climate extremes;Nonlinear response;alpine meadow
DOI:
doi:10.5061/dryad.337c68r
摘要:
s in the soil water content and aboveground net primary productivity. 4. Our findings indicate that future precipitation changes, particularly extreme drought, will decrease
Data from: Impacts of logging roads on tropical forests
负责人:
关键词:
clearing width;pan tropical.;forest resilience;pan tropical;Forest management;reduced impact logging;Forest degradation;road ecology;deforestation
DOI:
doi:10.5061/dryad.r0mn6
摘要:
n 1.7%) of forest cover. More severe impacts are increased fire incidence, soil erosion, landslides, and sediment accumulation in streams. Once opened, logging roads potentia
Data from: Exacerbated nitrogen limitation ends transient stimulation of grassland productivity by increased precipitation
负责人:
关键词:
ecosystem level;Species level;Grassland productivity;2005-2014;species relative abundance
DOI:
doi:10.5061/dryad.74f3b
摘要:
on, soil available nitrogen and foliar nitrogen concentrations during the first six years, but it ceased to do so in the following four years, unless nitrogen
Data from: Asymmetric winter warming advanced plant phenology to a greater extent than symmetric warming in an alpine meadow
负责人:
关键词:
reproductive phenology;mid-summer flowering phenology;early spring flowering phenology;climate change
DOI:
doi:10.5061/dryad.q2g41
摘要:
soil temperature in the winter from below to above freezing temperatures advanced the spring phenology of alpine plants. Winter warming increased soil tem
Biodiversidad de grupos funcionales de microorganismos en el Parque Nacional Natural de Los Nevados, Colombia
负责人:
关键词:
DOI:
doi:10.15468/oabpy4
摘要:
, water regulation, soil stability, maintenance of biodiversity, carbon storage, and scenic and cultural value. Inside the páramo and specifically in the village El
Data from: Modeling seasonal surface temperature variations in secondary tropical dry forests
负责人:
关键词:
Wireless sensor network;Landsat-8;Secondary tropical dry forests;Radiative transfer equation;Land surface temperature
DOI:
doi:10.5061/dryad.0bq52
摘要:
ces which reflect different properties of TDFs, and soil moisture data obtained from a Wireless Sensor Network (WSN). Results showed that the LST
Data from: Plant functional traits and environmental conditions shape community assembly and ecosystem functioning during restoration
负责人:
关键词:
Cyperus lupulinus;Monarda fistulosa;Trifolium arvense;Carex blanda;Parthenocissus quinquefolia;Vitis;Senna hebecarpa;Symphyotrichum puniceum;Rubus allegheniensis;Elymus repens;Potentilla argentea;Achillea millefolium;biodiversity-ecosystem function;Prunus;Pycnanthemum virginianum;Helianthus giganteus;Pyrus calleryana;Juncus tenuis;Hypochaeris radicata;Desmodium obtusum;Community Ecology;Rubus occidentalis;Coreopsis lanceolata;Lupinus perennis;response-effect trait framework;trait-based assembly;Saponaria officinalis;Berteroa incana;Celastrus orbiculatus;Ulmus pumila;Desmodium paniculatum;Toxicodendron radicans;Desmodium ciliare;Cirsium arvense;Eryngium yuccifolium;Zizia aptera;Zizia aurea;Arnoglossum atriplicifolium;Hypericum punctatum;Silphium perfoliatum;Lespedeza virginica;Daucus carota;Echinacea purpurea;Geum canadense;Rhamnus cathartica;Poa compressa;Rudbeckia triloba;Symphyotrichum laeve;Aquilegia canadensis;Sorghastrum nutans;Vernonia;Erigeron;Carex bicknellii;Echinacea pallida;Fallopia convolvulus;Trifolium pratense;Verbena hastata;Fraxinus;Rhus;Symphyotrichum novae angliae;Solidago rigida;Asclepias verticillata;Oenothera biennis;Taraxacum officinale;Rumex crispus;Onoclea sensibilis;Solanum carolinense;Agastache nepetoides;Lactuca canadensis;Trifolium repens;Helianthus mollis;structural equation modeling;Tradescantia ohiensis;Pseudognaphalium obtusifolium;Barbarea vulgaris;Rumex acetosella;Carex swanii;Asclepias tuberosa;Panicum virgatum;grassland;Baptisia lactea;Apocynum cannabinum;Coreopsis palmata;Acer;Chenopodium album;Dalea purpurea;Agastache scrophulariifolia;Chamaecrista fasciculata;Penstemon digitalis;Elymus virginicus;Poa pratensis;Cerastium;Melilotus;Dactylis glomerata;Elaeagnus umbellata;Elymus canadensis;Urtica dioica;community weighted means;Botrychium;Dianthus armeria;Tridens flavus;Euphorbia corollata;Allium vineale;Oxalis;Ratibida pinnata;Solidago canadensis;Agrostis gigantea;Medicago lupulina;Morus alba;Solidago juncea;Verbena stricta;Acalypha virginica;Ambrosia psilostachya;Andropogon gerardii;Rubus flagellaris;Ecological restoration;Agrostis hyemalis;Bromus inermis;Rosa multiflora;Potentilla simplex;Viola;Sassafras albidum;Cichorium intybus;Triodanis perfoliata;Carex normalis;Veronicastrum virginicum;Centaurea stoebe;Carex sparganioides;Silphium integrifolium;tallgrass prairie;Muhlenbergia frondosa;Rudbeckia hirta;Heliopsis helianthoides;Lobelia inflata;Helianthus strumosus;Euthamia graminifolia;Silene latifolia;Alliaria petiolata;Cornus;Hypericum perforatum;Symphyotrichum lateriflorum;Conyza canadensis;Plantago lanceolata;Phleum pratense;Setaria;Persicaria;Solidago speciosa;Symphyotrichum oolentangiense;Agrimonia parviflora;Silphium laciniatum;Symphyotrichum pilosum;Verbascum thapsus;Desmodium canadense;Thalictrum dasycarpum;Fragaria virginiana;Carex annectens;Carex bebbii;Equisetum;Hypericum ascyron;Ambrosia artemisiifolia;Ludwigia alternifolia;Potentilla recta;Anemone virginiana;Coreopsis tripteris;Dichanthelium clandestinum;Cyperus strigosus;Dichanthelium sphaerocarpon;Parthenium integrifolium;Arctium minus;Schizachyrium scoparium;Digitaria cognata;Hieracium;Lycopus;Lespedeza capitata;Galium pilosum;Quercus;Asclepias syriaca;Veronica;Bouteloua curtipendula
DOI:
doi:10.5061/dryad.2175q
摘要:
ted to SLA. We also found a positive relationship between soil moisture and SLA. Both trait composition and environmental conditions predi
Data from: Below-ground processes control the success of an invasive seaweed
负责人:
关键词:
chemistry;Colonisation;bacteria;invasion;seagrass;Caulerpa cylindracea;Posidonia oceanica;sediment
DOI:
doi:10.5061/dryad.1st1h
摘要:
, in the absence of a C. cylindracea canopy, fragments are released from intra-specific competition for resources. 4. Synthesis: Sediment/soil processes ar
Data from: Impacts of rainfall extremes predicted by climate-change models on major trophic groups in the leaf-litter arthropod community
负责人:
Wise, David
关键词:
arthropod community bottom-up control climate change leaf litter mesocosm experiment rainfall spatial heterogeneity soil food web
DOI:
doi:10.5061/dryad.qd1661s
摘要:
1. Arthropods in the leaf-litter layer of forest soils influence ecosystem processes such as decomposition. Climate-change models predict bot

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