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Data from: Repeated parallel evolution reveals limiting similarity in subterranean diving beetles
负责人:
关键词:
competition;Ecology: evolutionary;Ecology: community;Community: structure;Ecology: theoretical
DOI:
doi:10.5061/dryad.526t0
摘要:
The theory of limiting similarity predicts that co-occurring species must be sufficiently different to coexist. Although this idea is a staple
Data from: Limitations of rotational manoeuvrability in insects and hummingbirds: evaluating the effects of neuro-biomechanical delays and muscle
负责人:
关键词:
DOI:
doi:10.5061/dryad.5t0g4
摘要:
mechanical power, for two insect species and two hummingbird species, undergoing roll, pitch and yaw rotations. The results show that for animals with similar degree
Data from: Changes in assembly rules along a stress gradient from open dry grasslands to wetlands
负责人:
关键词:
Determinants of plant community diversity and structure;plant functional trait;habitat filtering;environmental gradient;Environmental filtering;productivity gradient;effect size;community assembly
DOI:
doi:10.5061/dryad.5r62f
摘要:
, environmental filtering and limiting similarity are thought to play the main roles in structuring communities. Their relative importance under different
Data from: Experimental dominant plant removal results in contrasting assembly for dominant and non?dominant plants
负责人:
关键词:
meadows;plants;Plantae;non-dominance;stochasticity;dominance;determinism;predictability;neutral theory;phylogenetic relatedness;dominant removal;community assembly
DOI:
doi:10.5061/dryad.67qh110
摘要:
of environmental filtering and increasing the influence of limiting similarity for non?dominant species. We tested these hypotheses by removing two dominant species in five
Data from: Behavior influences range limits and patterns of coexistence across an elevational gradient in tropical birds
负责人:
关键词:
exploitative competition;interference competition;elevational gradient;Range limits;limiting similarity;competition
DOI:
doi:10.5061/dryad.s786348
摘要:
findings as evidence that behavioral interactions?particularly direct territorial aggression?can be important in setting elevational range limit
Data from: Disentangling the processes driving plant assemblages in mountain grasslands across spatial scales and environmental gradients
负责人:
关键词:
Trifolium medium;habitat filtering;Anthriscus sylvestris;Ranunculus acris s.l.;trait convergence;Luzula alpinopilosa;Vaccinium gaultherioides;Scabiosa lucida;Saxifraga paniculata;Ligusticum mutellina;Phyteuma spicatum;Achillea millefolium;Ranunculus aconitifolius;Galium megalospermum;Geranium sylvaticum;Poa supina;Crepis vesicaria s.str.;Vaccinium vitis-idaea;Pritzelago alpina s.str.;Erigeron uniflorus;Leontodon helveticus;Bromus hordeaceus;Rumex acetosa;Stachys officinalis s.l.;Helictotrichon versicolor;Polygala chamaebuxus;Calamagrostis varia;Luzula multiflora;Ajuga reptans;Trisetum flavescens;Leontodon montanus;Heracleum sphondylium s.l.;Rhinanthus alectorolophus;Arrhenatherum elatius;Poa minor;Prunella vulgaris;Gentiana verna;Trifolium badium;Holocene;Pedicularis foliosa;Filipendula ulmaria;Valeriana tripteris;Cirsium acaule;Daucus carota;Thlaspi rotundifolium aggr.;Thymus praecox subsp. polytrichus;Salix herbacea;Ononis repens;Knautia arvensis;Athamanta cretensis;Campanula cochleariifolia;Carduus defloratus s.l.;Homogyne alpina;Lolium perenne;Carex ferruginea;niche differentiation;Plantago atrata s.str.;Rhinanthus minor;Carex atrata aggr.;Saxifraga aizoides;Molinia caerulea;Galeopsis tetrahit;Chaerophyllum hirsutum aggr.;Rhododendron ferrugineum;Gentiana lutea;Ranunculus bulbosus;Cerastium latifolium;Crepis biennis;Androsace chamaejasme;Tragopogon pratensis s.l.;Aster bellidiastrum;Cerastium arvense sl;Leucanthemum vulgare aggr.;Gentiana acaulis;Saxifraga androsacea;Lolium multiflorum;Polygonum viviparum;Trisetum distichophyllum;Crepis pyrenaica;Gentiana bavarica;Medicago lupulina;Tofieldia calyculata;Epilobium anagallidifolium;Festuca quadriflora;Ranunculus alpestris;Taraxacum alpinum aggr.;Arabis alpina s.l.;Euphrasia minima;Festuca pratensis s.l.;Caltha palustris;Valeriana montana;Hippocrepis comosa;Helictotrichon pubescens;Leontodon autumnalis;Poa alpina;Carex pallescens;Hedysarum hedysaroides;Plantago media;Taraxacum officinale aggr.;Veronica officinalis;Vicia sepium;Anemone narcissiflora;Geum rivale;Hypericum maculatum s.l.;Campanula glomerata s.l.;Carex sempervirens;Valeriana dioica;Soldanella alpina;Carex flacca;Phleum pratense;Lathyrus pratensis;Allium schoenoprasum;Campanula scheuchzeri;Centaurea jacea s.str.;Gypsophila repens;Thesium alpinum;Pimpinella saxifraga;Centaurea montana;Bromus erectus s.str.;Helianthemum nummularium s.l.;Prunella grandiflora;Holcus lanatus;Onobrychis viciifolia;Primula farinosa;Trollius europaeus;Carex sylvatica;Viola biflora;spatial partitioning;Hieracium bifidum aggr.;Deschampsia cespitosa;Vaccinium myrtillus;Pimpinella major;Silene acaulis;Polygonum bistorta;Primula elatior s.str.;Alchemilla glabra aggr.;Arnica montana;Poa cenisia;environmental gradient;Brachypodium pinnatum;Euphrasia salisburgensis;Astrantia major;Hypochaeris radicata;Vicia cracca s.str.;Thymus pulegioides s.str.;Lotus corniculatus;Trifolium montanum;Lysimachia nummularia;Knautia dipsacifolia s.str.;Vicia sativa s.l.;Senecio doronicum;Acinos alpinus;Trifolium repens s.str.;Achillea atrata;Onobrychis montana;Aposeris foetida;Cruciata laevipes;Adenostyles glabra;Alchemilla conjuncta aggr.;Potentilla erecta;Euphorbia cyparissias;Fragaria vesca;Minuartia verna;Bellis perennis;Festuca violacea;Phleum rhaeticum;Plantago major s.l.;Leontodon hispidus s.l.;Rumex obtusifolius;Dryas octopetala;Luzula sieberi;Cerastium fontanum s.l.;Festuca ovina aggr.;Saxifraga moschata s.l.;Salvia pratensis;Saxifraga oppositifolia;Linum catharticum;Silene vulgaris s.l.;Agrostis schraderiana;Carlina acaulis subsp. caulescens;Origanum vulgare;Campanula barbata;Cirsium oleraceum;Centaurea scabiosa s.l.;Glechoma hederacea s.l.;Veronica chamaedrys;Veratrum album s.l.;Anthyllis vulneraria s.l.;Poa pratensis;Agrostis capillaris;Dactylis glomerata;Ranunculus montanus;Tussilago farfara;Phyteuma orbiculare;Carex nigra;limiting similarity;Geum montanum;Rumex alpestris;Globularia nudicaulis;Doronicum grandiflorum;Myosotis alpestris;Phleum hirsutum;Determinants of plant community diversity and structure;Agrostis rupestris;Gnaphalium supinum;Solidago virgaurea s.l.;Hieracium villosum;Poa trivialis s.l.;Ranunculus repens;Hieracium lactucella;Trifolium pratense s.l.;Cirsium spinosissimum;Salix retusa;Gentiana purpurea;trait divergence;Plantago alpina;Sesleria caerulea;Parnassia palustris;Globularia cordifolia;Pulsatilla alpina s.l.;Trifolium thalii;Briza media;Rumex alpinus;Clinopodium vulgare;Carex leporina;Carex panicea;Hieracium pilosella;Saxifraga biflora s.l.;Cynosurus cristatus;Plantago lanceolata;Petasites paradoxus;Veronica alpina;Bartsia alpina;Potentilla crantzii;Festuca rubra aggr.;Chaerophyllum aureum;Nardus stricta;Galium album;Anthoxanthum odoratum aggr.;Oxytropis jacquinii;Laserpitium siler;Salix reticulata;Alchemilla vulgaris aggr.;Anthropocene;Agrostis stolonifera;Linaria alpina s.str.;Sanguisorba minor s.l.;Carum carvi;Galium anisophyllon;Potentilla aurea;Veronica aphylla;Adenostyles alliariae;Primula auricula;Crepis aurea;Trifolium campestre;Euphrasia rostkoviana s.str.;Gentiana campestris s.l.;Laserpitium latifolium;Alchemilla xanthochlora aggr.
DOI:
doi:10.5061/dryad.2dq836f
摘要:
Habitat filtering and limiting similarity are well?documented ecological assembly processes that hierarchically filter species across spati
Data from: Habitat filtering determines the functional niche occupancy of plant communities worldwide
负责人:
关键词:
species richness;habitat filtering;niche occupancy;limiting similarity;Intraspecific trait variation;Determinants of plant community diversity and structure;community assembly
DOI:
doi:10.5061/dryad.cn642
摘要:
iche volume, while limiting similarity should restrict the degree of niche overlap between species. Here, by explicitly incorporating intraspecific trait
Data from: Temperature fluctuations during development reduce male fitness and may limit adaptive potential in tropical rainforest Drosophila
负责人:
关键词:
development;adaptive potential;ecological margins;Drosophila birchii;temperature fluctuations;Male Fitness;climate change
DOI:
doi:10.5061/dryad.3f8v2
摘要:
t at constant 27°C, indicating that briefly exceeding critical thermal limits has similar fitness costs to continuously stressful conditions. Ther

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