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Data from: Spatial patterns of AFLP diversity in Bulbophyllum occultum (Orchidaceae) indicate long-term refugial isolation in Madagascar and lon
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关键词:
long-distance colonization;Orchidaceae;AFLP;Genetic structure;Bulbophyllum occultum;habitat fragmentation
DOI:
doi:10.5061/dryad.1q34p
摘要:
Bulbophyllum occultum, an epiphytic orchid mainly distributed in the rainforests of (north)eastern Madagascar and La Réunion, represents an int
Data from: Multiple independent origins of auto-pollination in tropical orchids (Bulbophyllum) in light of the hypothesis of selfing
负责人:
关键词:
Bulbophyllum;Pliocene;Pleistocene
DOI:
doi:10.5061/dryad.35935
摘要:
of deleterious mutations. We tested these two predictions in a clade of Madagascan Bulbophyllum orchids (30 spp.), including eight species where auto-pollinating morph
of Bulbophyllum (Orchidaceae)
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关键词:
DOI:
doi:10.5061/dryad.14717cs
摘要:
shaping continental species richness disparities of the pantropical, epiphytic and mostly TRF-dwelling orchid genus Bulbophyllum (c. 1,948 spp. in total
Data from: Trait patterns of epiphytes compared to other plant life forms along a tropical elevation gradient
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关键词:
Hymenophyllum capillare;Peperomia tetraphylla;Huperzia ophioglossoides;Canthium oligocarpum;Heinsenia diervilleoides;Peperomia fernandopoiana;Isachne mauritiana;Psychotria cyathicalyx;Schefflera volkensii;trees;Achyranthes aspera;Celtis durandii;Syzygium guineense;Parochetus communis;Diaphananthe lorifolia;Festuca obturbans;Asplenium aethiopicum;Myrsine africana;Asplenium smedsii;Pavetta abyssinica;Umbilicus botryoides;Plectranthus alboviolaceus;Asplenium megalura;Strombosia scheffleri;Agauria salicifolia;Psychotria petiginosa;Galiniera saxifraga;Mitragyna rubrostipulata;Stenogrammitis paucipinnata;Huperzia;Selaginella kraussiana;Disperis kilimanjarica;Clausena anisata;Elaphoglossum deckenii;Holocene;Cyperus derreilema;Loxogramme abyssinica;Helichrysum;Asplenium friesiorum;Myrica salicifolia;Culcasia falcifolia;Ilex mitis;Polystachya confusa;Elaphoglossum hybridum;Bulbophyllum stolzii;Pycnostachys meyeri;Helichrysum forskahlii;Casearia battiscombei;Ferns;Hymenophyllum kuhnii;elevation gradient;Asplenium theciferum;Isoglossa laxa;Lasianthus kilimandscharicus;Pittosporum;Bersama abyssinica;Polystachya;Vittaria volkensii;Garcinia tanzaniensis;Agrostis kilimandscharica;Drynaria volkensii;Macaranga kilimandscharica;Lepidotrichilia volkensii;Psychotria fractinervata;Elaphoglossum acrostichoides;Disperis dicerochila;Hymenophyllum splendidum;Elaphoglossum lastii;Pauridiantha paucinervis;Asplenium uhligii;Leptonychia usambarensis;Pleopeltis macrocarpa;Embelia schimperi;Pteris catoptera;Cornus volkensii;Polyscias fulva;Ekebergia capensis;Entandrophragma excelsum;terrestrial herbs;Mimulopsis kilimandscharica;Ficus sur;Blechnum attenuatum;Dryopteris kilemensis;Senecio maranguensis;Olinia rochetiana;Asplenium hypomelas;Piper capense;Xymalos monospora;Geranium kilimandscharicum;Xiphopteris flabelliformis;Asplenium sandersonii;Hagenia abyssinica;Helichrysum odoratissimum;Newtonia buchananii;epiphytes;Dracaena afromontana;Schefflera myriantha;Asplenium loxoscaphoides;Cyathea manniana;Polyscias albersiana;Huperzia dacrydioides;Oleandra distenta;Tabernaemontana stapfiana;Podocarpus latifolius;Pilea usambarensis;Elaphoglossum angulatum;Plectranthus sylvestris;Streptocarpus montanus;Maytenus acuminata;Erica rossii;Cynorkis pleistadenia;Hypericum revolutum;Polystachya simplex;Rapanea melanophloeos;Aningeria adolfi-friedericii;Orchidaceae;Lycopodium clavatum;Garcinia volkensii;Allophylus ferrugineus;Rubus steudneri;Erythrococca polyandra;Aphloia theiformis;Lepisorus excavatus;Plectranthus autranii;Asplenium elliottii;Asplenium stuhlmannii;Polystachya transvaalensis;plant functional traits;Triceratorhynchus viridiflorus;Alchemilla volkensii;Ocotea usambarensis;Peddiea fischeri;Polystachya eurygnatha;Asplenium praegracile;Begonia meyeri-johannis;Dracaena fragrans;Prunus africana;Rawsonia lucida
DOI:
doi:10.5061/dryad.qr2677n
摘要:
of temperature with precipitation or humidity, indicating effects of these factors on the distribution of epiphytic and non-epiphytic species. Trait spread di
Data from: Flower colour and phylogeny along an altitudinal gradient in the Himalaya of Nepal
负责人:
关键词:
Swertia sp;Impatiens balsamina;Phlomis spectabilis;Begonia picta;Ranunculus scleratus;plant reproductive ecology;Plantago sp;Bistorta affinis;Crotalaria cytisoides;Rhododendron sp;Calanthe mannii;Rhododendron nivale;Parochetus communis;montane habitat;Ranunculus pulchellus;Pedicularis elwesii;Bulbophyllum affine;Dendrobium porphyrochilum;Erigeron multiradiatus;pollination;Pleurospermum brunonis;Cyananthus lobatus;Hedychium gardnerianum;Scutellaria sp;Cymbidium aloifolium;Aechmanthera gossypina;Impatiens urticifolia;Microula sikkimensis;Geranium donianum;Coelogyne nitida;Clerodendrum serratum;Smitinandia micrantha;Dendrobium amoenum;Holocene;Androsace sarmentosa;Primula rotundifolia;Leontopodium jacotianum;Bistorta macrophylla;Trichotosia dasyphylla;Anaphalis contorta;Senecio graciliflorus;Viola wallichi;Phaius tankervilliae;Pieris formosa;Ranunculus diffusus;elevation gradient;Saussurea nepalensis;Rhododendron anthopogon;Geranium pratense;Aerides multiflora;Epilobium sp;Delphinium stapeliosum;Theropogon pallidus;Senecio jacquemontiana;Persicaria capitata;Leucas lanata;Pedicularis megalantha;Oxygraphis polypetala;hymenopterans;Rhodiola bupleuroides;Ponerorchis chusua;Potentilla cuneata;Lobelia chinensis;Anemone vitifolia;Schima wallichi;Osbekia stellata;Nepeta connata;Primula buryana var purpurea;Hydrangea aspera;Potentilla plurijuga;Bistorta amplexicaulis;Anemone rupestris;Orobanche cernua;Gypsophila cerastioides;Berberis mucrifolia;Potentilla microphylla;Anaphalis busua;Kingidium taenialis;Hypericum elodeoides;Rheum acuminatum;Eria excavata;Corydalis juncea;Heracleum wallichi;Rumex nepalensis;Saxifraga roylei;Spiranthes sinensi;Chirita sp;Rhynchostylis retusa;Coleus blumei;Aster sp;Maharanga emodi;Thalictrum reniforme;Dendrobium nobile;Solanum surattense;Coelogyne prolifera;Caltha plaustris var himalensis;Aerides odorata;Ranunculus brotherusii;Impatiens stenantha;Meconopsis dwoji;Desmodium multiflorum;Vanda cristata;Lilium sp;Rhodiola sp;Pedicularis scullyana;Anemone sp;Pedicularis roylei;Chesnea sp;Papilionanthe teres;Nervilia infundibulifolia;Pleurospermum candollei;Satyrium nepalense;dipterans;Viola biflora
DOI:
doi:10.5061/dryad.2p8v2
摘要:
1. Both the phylogenetic structure and trait composition of flowering plant communities may be expected to change with altitude. In particular

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