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Data from: Does warming by open-top chambers induce change in the root-associated fungal community of the arctic dwarf shrub Cassiope tetragona
负责人:
关键词:
Cassiope tetragona;Ericoid Mycorrhiza;climate change;high-throughput sequencing;root-associated fungi;Ectomycorrhiza;Open-top chambers;arctic ecology
DOI:
doi:10.5061/dryad.49dn0
摘要:
at a greater magnitude in Arctic ecosystems, where the climate is warming faster than in lower latitudes. Cassiope tetragona (L.) D. Don is an Arctic
Data from: Experimental icing affects growth, mortality, and flowering in a high Arctic dwarf shrub
负责人:
关键词:
Cassiope tetragona;Resource allocation;Anoxia tolerance;winter warming;extreme weather event;climate change
DOI:
doi:10.5061/dryad.512s7
摘要:
plant, Arctic bell-heather (Cassiope tetragona). The suitability of this species for retrospective growth analysis enabled us to compare shoot growth
Data from: Highly overlapping winter diet in two sympatric lemming species revealed by DNA metabarcoding
负责人:
关键词:
arctic bryophyte;Diet Analysis;lemming;Lemmus trimucronatus;DNA metabarcoding;bryophyte reference library;Arctic;Boreal;trnL (UAA) intron;Bryophyta;c-h primer pair;Dicrostonyx groenlandicus
DOI:
doi:10.5061/dryad.4rr39
摘要:
plant taxon, Cassiope tetragona, which alone composes more than 50% of the available plant biomass, was not detected in feces and can thus be consi
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:
tion and species richness based on 288 plots distributed on three sites along a coast-inland gradient in Northeast Greenland using a stratified random design. We used an inf

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