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Data from: Experimental evidence that evolutionarily diverse assemblages result in higher productivity
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关键词:
Liatris cylindracea Michx.;Asteraceae); Liatris cylindracea (Michx.;biomass production;ecosystem function;Asclepiadaceae;Poaceae;Andropogon gerardii Vitman;Pycnanthemum tenuifolium Schrad.;Lamiaceae;biodiversity;phylogenetic diversity;Doellingeria umbellata (P. Mill.) Nees;Asteraceae); Oligoneuron album (Nutt. G. L. Nesom;Elymus trachycaulus (Link) Gould ex Shinners;Poaceae); Schizachyrium scoparium (Michx. Nash;Oligoneuron album (Nutt.) G. L. Nesom;Scrophulariaceae;Asteraceae); Rudbeckia hirta (L. Asteraceae); Solidago nemoralis (Aiton;Scrophulariaceae);Desmodium canadense (L.) DC.;Penstemon hirsutus (L.) Willd.;Monarda fistulosa L.;complementarity;Poaceae); E. trachycaulus (Link) Gould ex Shinners;Asteraceae); Desmodium canadense (L.;Lamiaceae); P. virginianum (L. T. Dur & B. D. Jacks. Ex B. L. Rob & Fernald;Solidago nemoralis Aiton;Fabaceae); Monarda fistulosa (L.;Lamiaceae); Penstemon digitalis (Nutt. Ex Sims;Poaceae); Asclepias tuberosa (L.;2010-2012;: Andropogon gerardii (Vitman;Scrophulariaceae); and P. hirsutus (L. Willd.;Fabaceae;Rudbeckia hirta L.;Elymus canadensis L.;Fabaceae); Lespedeza capitata (Michx.;Pycnanthemum virginianum (L.) T. Durand & B. D. Jacks. ex B. L. Rob & Fernald;Asclepiadaceae); Doellingeria umbellata (Mill. Nees;Lamiaceae); Pycnanthemum tenuifolium (Schrad.;Penstemon digitalis Nutt. Ex Sims;Asteraceae;Lespedeza capitata Michx.;Asclepias tuberosa L.;Poaceae); Elymus canadensis (L.;Schizachyrium scoparium (Michx.) Nash
DOI:
doi:10.5061/dryad.t80fp
摘要:
n depauperate ones. However, these experiments often conclude that there is a higher probability of including complementary species combinations in assemblage
Data from: Soil heterogeneity increases plant diversity after twenty years of manipulation during grassland restoration
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关键词:
diversity;Andropogon gerardii;tallgrass prairie;grassland;restoration;nutrients;plant traits
DOI:
doi:10.5061/dryad.63n980b
摘要:
e, we report community dynamics under continuous propagule addition in the same experiment, corresponding to 16-20 y of restoration, in response to alter
PBG04 Reproductive effort of Big Bluestem, Indiangrass and Little Bluestem in the Patch-Burn Grazing Experiment at Konza Prairie
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DOI:
doi:10.6073/pasta/c74d78fc70a0556fc3e50e6c1e6fa130
摘要:
-burn management on a widespread basis. PBG041 includes data on flowering stem height (m) of three dominant prairie grasses: Andropogon gerardii (ANGE
PBG04 Reproductive effort of Big Bluestem, Indiangrass and Little Bluestem in the Patch-Burn Grazing Experiment at Konza Prairie
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DOI:
doi:10.6073/pasta/98adbdfdd074badc67859755ad148d6b
摘要:
-burn management on a widespread basis. PBG041 includes data on flowering stem height (m) of three dominant prairie grasses: Andropogon gerardii (ANGE
Data from: Phylogenetic diversity reveals hidden patterns related to population source and species pools during restoration
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关键词:
seed sources;phylogenetic diversity;cultivars;phylogeny;dominant species;Ecotypes;community assembly;stability;prairie;restoration
DOI:
doi:10.5061/dryad.122j7
摘要:
ulation sources (cultivars and local ecotypes) of three dominant grasses (Sorghastrum nutans, Andropogon gerardii and Schizachyrium scoparium) with three unique po
Data from: Phylogenetic structure and host abundance drive disease pressure in communities
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关键词:
Monarda fistulosa;Pseudognaphalium californicum;Nassella leucotricha;Baccharis pilularis;Lolium multiflorum;Brickellia eupatorioides;Euphorbia corollata;Gaura lindheimeri;Cirsium muticum;Rumex altissimus;Cirsium vulgare;Fungi;Briza maxima;Yucca glauca;Anagallis arvensis;Erodium botrys;Vicia sativa;Cirsium discolor;Geranium dissectum;Andropogon gerardii;Phylogenetic ecology;Oxalis corniculata;Buchloe dactyloides;Vicia benghalensis;Hypochaeris radicata;Bromus hordeaceus;Spartina pectinata;Foeniculum vulgare;Polypogon monspeliensis;Rudbeckia maxima;Pycnanthemum tenuifolium;Chasmanthium latifolium;Conium maculatum;Lupinus perennis;Ruellia humilis;Taraxacum campylodes;Callirhoe leiocarpa;Brachypodium distachyon;Potentilla arguta;Erodium cicutarium;Galium concinnum;Lactuca virosa;Rumex salicifolius;Rare species advantage;pathogen;Brassica nigra;Nassella pulchra;Elymus villosus;Eryngium yuccifolium;Trifolium angustifolium;Plantago lanceolata;Erigeron canadensis;Campanula americana;Nicotiana rustica;Echinacea purpurea;plant disease;Medicago polymorpha;Sorghastrum nutans;Galium aparine;Convolvulus arvensis;Trifolium subterraneum;Bromus kalmii;Phacelia congesta;Ipomopsis rubra;Bromus diandrus;Carduus pycnocephalus;Thermopsis villosa;Trifolium dubium;Desmodium canadense;Density Dependence;Penstemon cobaea;Scirpus atrovirens;Vulpia bromoides;Vernonia fasciculata;Briza minor;Avena barbata;Lobelia siphilitica;Rubus ursinus;Bromus pubescens;Pseudognaphalium sp.;Community Ecology;Pseudognaphalium obtusifolium;Rumex acetosella;Eschscholzia californica;Panicum virgatum;Chlorogalum pomeridianum;Corydalis curvisiliqua;Dalea purpurea;Elymus riparius;Carex lurida;Sonchus asper;Liatris spicata;Glyceria canadensis;Raphanus raphanistrum
DOI:
doi:10.5061/dryad.kf401
摘要:
. A shared goal of ecology and epidemiology is to predict when a species is most vulnerable to disease. A leading hypothesis asserts that the impact of di
Data from: Plant functional traits and environmental conditions shape community assembly and ecosystem functioning during restoration
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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:
ause of their mechanistic and generalizable nature. This promise remains poorly realized, however, because tests linking environmental condi

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