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Data from: Does water shortage generate water stress? An ecohydrological approach across Mediterranean plant communities
负责人:
关键词:
soil water dynamics;ecohydrological optimality;Grasslands;water-use efficiency;water balance;evapotranspiration;soil water storage capacity;Holocene;vegetation water stress;NPP
DOI:
doi:10.5061/dryad.sk76g
摘要:
vity net primary productivity (NPP), evapotranspiration (ET) and/or water-use efficiency (WUE) in relation with local soil water storage capacity. We monitored 12 native plant communiti
Data from: Drivers of nocturnal water flux in a tallgrass prairie
负责人:
关键词:
Vernonia baldwinii;Andropogon gerardii;Amorpha canescens;Sorghastrum nutans;nocturnal stomatal conductance;Solidago canadensis;evapotranspiration;gas exchange;Panicum virgatum;grassland;Cornus drummondii;Rhus glabra
DOI:
doi:10.5061/dryad.5401972
摘要:
sses, as well as the widespread global occurrence of C4 grasses, nocturnal water loss might constitute a greater proportion of global evapotranspiration than previously esti
Data from: A genome?wide search for local adaptation in a terrestrial?breeding frog reveals vulnerability to climate change
负责人:
关键词:
genetic diversity;local adaptation;genome-wide;SNP;Pseudophryne guentheri;amphibian;climate change
DOI:
doi:10.5061/dryad.v077p80
摘要:
were correlated with environmental variables such as temperature, rainfall, evaporation and soil moisture. One locus showed homology to a gene involved
Data from: Anthropogenic Basin Closure and Groundwater Salinization (ABCSAL)
负责人:
关键词:
DOI:
doi:10.25338/B81P5K
摘要:
, we demonstrate that groundwater development, even without overdraft, can transform a fresh, open basin into an evaporation dominated, closed-basin system, such tha
Data from: Measures of biologically relevant environmental heterogeneity improve prediction of regional plant species richness
负责人:
关键词:
biodiversity;extinction;tracheophytes;productivity;resource;biome;ecosystems;niche;speciation
DOI:
doi:10.5061/dryad.34c1r
摘要:
ongly (8 of 13) as predictors of species richness, but several resource variables (e.g. precipitation, seasonality and evapotranspiration) were also impo
Data from: Resprouter fraction in Cape Restionaceae assemblages varies with climate and soil type
负责人:
关键词:
Fynbos;regeneration;Poales;reseeder;Life history;Restionaceae;fire;persistence;community assembly
DOI:
doi:10.5061/dryad.62s71
摘要:
) and potential evapotranspiration (range 3–8 mm m?2 day?1). We sampled local assemblages using a stratified-random design that fully spanned the environmental conditions of the CFR
Data from: Genetic diversity and population history of the endangered killifish Aphanius baeticus
负责人:
关键词:
Pleistocene glaciations;conservation;Aphanius baeticus;present time;Conservation genetics and biodiversity;Population structure and phylogeography;Cyprinodontidae;secondary water fishes;Pleistocene
DOI:
doi:10.5061/dryad.1qs5c
摘要:
evaporation ponds, etc., which are susceptible to periodical flood and drought events. Despite its uniqueness in ecological adaptation to high saltwater tolera
SGS-LTER Historical LTER Soil water - neutron probe field data from across the Central Plains Experimental Range, Nunn, Colorado, USA, ARS Study Numb
负责人:
Colorado State University. Libraries;;Colorado State University. Libraries
关键词:
soil moisture soils inorganic nutrients neutron probe grasslands
DOI:
doi:10.25675/10217/82912
摘要:
and spatial variations in soil water below the evaporative zone were evaluated for a shortgrass steppe with a low and variable precipitation regime. Each of sandy loam
Data resubmission from Macroecological factors shape local-scale spatial patterns in agriculturalist settlements
负责人:
关键词:
Environmental Science Ecology
DOI:
doi:10.6084/m9.figshare.5556727.v1
摘要:
clustering. Statistical modelling shows that, at macroscales, potential evapotranspiration and topographic heterogeneity have negati
Data from: Plant community composition and species richness in the High Arctic tundra: from the present to the future
负责人:
关键词:
Cassiope tetragona;Silene involucrata;Pedicularis flammea;Silene acaulis;Draba arctica;carex marítima;Stellaria longipes;Euphrasia frigida;Festuca hyperborea;Luzula nivalis;Festuca brachyphylla;plant cover;Equisetum variegatum;Arctagrostis latifolia;High Arctic tundra vegetation;Bistorta vivipara;Arenaria pseudofrigida;Sabulina stricta;boral;Arnica angustifolia;Minuartia biflora;Pedicularis hirsuta;Poa glauca;Poa arctica;Potentilla nivea;Sabulina rubella;Hierochloe alpina;Cerastium arcticum;Festuca rubra;Salix arctica;Carex bigelowii;Carex fuliginosa;Juncus castaneus;Draba glabella;Rhododendron lapponicum;Micranthes nivalis;Eriophorum triste;Kobresia myosuroides;vascular plants;Potentilla rubricaulis;Carex nardina;Papaver radicatum;Saxifraga oppositifolia;Equisetum arvense;Polemonium boreale;Potentilla hyparctica;Juncus triglumis;Saxifraga cespitosa;Carex capillaris;Oxyria digyna;Chamerion latifolium;Carex rupestris;Draba subcapitata;Alopecurus borealis;Bayesian Ordination and Regression Analysis;Kobresia simpliciuscula;Rumex acetosella;vegetation composition;Luzula confusa;Campanula uniflora;Potentilla arenosa;Saxifraga cernua;Vaccinium uliginosum;Juncus biglumis;Trisetum spicatum;Festuca vivipara;Dryas sp.
DOI:
doi:10.5061/dryad.8gr16
摘要:
ons. Increasing temperatures are likely to cause higher evaporation rates and alter the distribution of late-melting snow patches. This will have little impact on landscap

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