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Data from: Prolonged exposure to manure from livestock administered antibiotics decreases ecosystem carbon-use efficiency and alters nitrogen cycling
负责人:
关键词:
stable isotopes;elemental cycles;ecosystem function;agroecology;microbial ecology;antibiotics
DOI:
doi:10.5061/dryad.v6460s3
摘要:
m cattle treated with pirlimycin resulted in an approximate two-fold increase in ecosystem respiration of recently fixed-carbon, and a greater pro
Data from: An a posteriori species clustering for quantifying the effects of species interactions on ecosystem functioning
负责人:
关键词:
assembly motif;functional effect groups;Theoretical Ecology;clustering;community;modelling;combinatorics
DOI:
doi:10.5061/dryad.rh4v0
摘要:
ractions and species composition. This allows the identification of a posteriori functional groups that have contrasting diversity effects on ecosystem functioning. We then develop
Data from: Draining the pool? Carbon storage and fluxes in three alpine plant communities
负责人:
关键词:
heath;tundra;Salix;soil carbon;Gross Ecosystem Photosynthesis;CO2;Ecosystem Respiration;net ecosystem exchange;nitrogen;carbon;meadow;Empetrum
DOI:
doi:10.5061/dryad.1n50j
摘要:
in Central Norway. Over two growing seasons, we measured Gross Ecosystem Photosynthesis, Ecosystem Respiration (ER), and C pools for above-gro
Data from: Interactions among herbivory, climate, topography, and plant age shape riparian willow dynamics in northern Yellowstone National Park, USA
负责人:
关键词:
elk;wolf;Bayesian;Salix spp.;willow;riparian vegetation;Cervus elaphus;Herbivory;trophic cascade;Castor canadensis;beaver;Holocene;Canis lupus;tree rings
DOI:
doi:10.5061/dryad.mj7t7
摘要:
trophic interactions in a well-studied food web in Yellowstone National Park, USA. We studied riparian willow (Salix spp.) establishment and stem growth reconstructe
Data from: Strong patterns of intraspecific variation and local adaptation in Great Basin plants revealed through a review of 75 years of experiments
负责人:
关键词:
Sporobolus airoides;Deschampsia cespitosa;Penstemon rydbergii;Eriogonum ovalifolium;Chrysothamnus viscidiflorus;Penstemon acuminatus;Populus angustifolia;Allium acuminatum;Penstemon confusus;restoration;Polemonium viscosum;Festuca idahoensis;Andropogon scoparius;Helianthus anomalus;Saxifraga oregana;Potentilla pulcherrima;Elymus multisetus;Sporobolus cryptandrus;Penstemon cyanocaulis;Penstemon humilis;Leptosiphon nuttallii;Epilobium densiflorum;Ranunculus flammula;Achnatherum thurberianum;Cistanthe umbellata;reciprocal transplant;Encelia farinosa;Nicotiana attenuata;Penstemon newberryi;Erysimum capitatum;Sphaeralcea parvifolia;Holocene;Mimulus cardinalis;Ericameria nauseosa;Plantago ovata;Pseudoroegneria spicata;Penstemon palmeri;Krascheninnikovia lanata;natural selection;Machaeranthera canescens;intraspecific variation;Purshia tridentata;Penstemon petiolatus;Chaenactis douglasii;Coleogyne ramosissima;Holodiscus discolor;Lupinus latifolius;Penstemon subglaber;Cleome lutea lutea;Lomatium dissectum;Penstemon linarioides;Atriplex canescens;Penstemon watsonii;Lotus utahensis;Gutierrezia sarothrae;local adaptation;Solidago gigantea;Poa secunda;Elymus canadensis;Cercocarpus montanus;Stephanomeria minor;Polygonum viviparum;Linum lewisii;Penstemon comarrhenus;Claytonia perfoliata;Penstemon rostriflorus;Stellaria longipes;Eriogonum microthecum;Xanthium strumarium;Koeleria macrantha;Pascopyrum smithii;Delphinium nelsonii;Penstemon leonardii;Elymus trachycaulus;Typha latifolia;Leymus cinereus;Penstemon eatonii;Carex aquatilis;Hesperostipa comata;Symphoricarpos oreophilus;Dalea searlsiae;Artemisia tridentata;Stipa hymenoides;Bromus carinatus;Eriogonum umbellatum;Penstemon utahensis;Allium brandegeei;Atriplex confertifolia;Bouteloua gracilis;Grayia spinosa;Astragalus filipes;Sphaeralcea munroana;Elymus elymoides;Penstemon fruticosus;common garden;Ephedra nevadensis;Sphaeralcea grossulariifolia;Oxyria digyna;Penstemon leiophyllus;Sphaeralcea coccinea;Penstemon deustus;phenotypic traits;Penstemon cyananthus;meta-analysis;Dalea ornata;Penstemon pachyphyllus;Elymus glaucus;Mimulus lewisii;Solidago velutina;Cryptantha circumscissa;Allium passeyi;Amelanchier utahensis
DOI:
doi:10.5061/dryad.3pf2cb4
摘要:
of homogeneous ecosystems, our results demonstrate widespread habitat-related population differentiation and local adaptation. Locally-sourced plants likely harbor
Data from: Engineering a plant community to deliver multiple ecosystem services
负责人:
关键词:
DOI:
doi:10.5061/dryad.qj3mg
摘要:
the optimal balance of six ecosystem services: early productivity, regrowth following mowing, weed suppression, support of invertebrates, soil fertility
Data from: No role for xylem embolism or carbohydrate shortage in temperate trees during the severe 2015 drought
负责人:
关键词:
heat;Larix decidua;hydraulic safety;carbon starvation;water limitation;Pinus sylvestris;ecophysiology;drought;Carpinus betulus;mature trees;Quercus petraea;Picea abies;Fagus sylvatica
DOI:
doi:10.5061/dryad.25b8k25
摘要:
ee consecutive growing seasons including the exceptional 2015 central European summer drought and heat wave. Specifically, we assessed stem increment gro
Unpacking the push-pull system: Assessing the contribution of companion crops along a gradient of landscape complexity
负责人:
Yodit Kebede
关键词:
DOI:
doi:10.7910/dvn/fragbd
摘要:
unded by fodder grasses, is presented as a promising crop diversification strategy for smallholder farmers in Africa as it may contribute to maize stem
Data from: Scale dependence of the diversity–stability relationship in a temperate grassland
负责人:
关键词:
grassland;biodiversity;stability;asynchrony;spatial insurance;steppe;1982-2014;homogenization;species richness;Ecosystem function and services;ecosystem;Primary productivity;metacommunity
DOI:
doi:10.5061/dryad.58fv8
摘要:
on ecosystem stability and the scale dependence of the slope of the diversity–stability relationship. 2. By employing a long-term (33 years) dataset fro
Data from: Growth and development rates have different thermal responses
负责人:
关键词:
climate change;plankton;development;Ecology: thermal;Phenotypic Plasticity
DOI:
doi:10.5061/dryad.87v26
摘要:
perature dependence. However, the existence of the "temperature-size rule" (TSR) suggests intraspecific growth and development are decoupled. Decoupling of these rates would

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