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Data from: Evolution of ontogenic change in color defenses of swallowtail butterflies
负责人:
关键词:
Color defense predation life history co-evolution signal environment animal communication
DOI:
doi:10.5061/dryad.2q5b7gt
摘要:
l lineages irrespective of the toxic nature of the host plant. Thus, color defense strategy (masquerade, crypsis or aposematism) at a particular lifestage
yorku.ecology.october3-2016.csv
负责人:
关键词:
60202 Community Ecology (excl. Invasive Species Ecology)
DOI:
doi:10.6084/m9.figshare.3979764.v1
摘要:
ve.plants - number of native plants, determined by aid of teacher assistant. A plant was classified as native if it originated in its respective habitat.
yorku.ecology.october3-2016.csv
负责人:
关键词:
60202 Community Ecology (excl. Invasive Species Ecology)
DOI:
doi:10.6084/m9.figshare.3979764
摘要:
ve.plants - number of native plants, determined by aid of teacher assistant. A plant was classified as native if it originated in its respective habitat.
Relationship between abundance of Woody Plants, Animal and Plant Species
负责人:
关键词:
60207 Population Ecology 60208 Terrestrial Ecology 60202 Community Ecology (excl. Invasive Species Ecology) 50103 Invasive Species Ecology
DOI:
doi:10.6084/m9.figshare.4055772
摘要:
Meta Data%3A%0A%0A1)%0AAbundance Native Plants%3A This is a discrete variable. A 50 m transect was%0Aplaced along the length of the forest
Relationship between abundance of Woody Plants, Animal and Plant Species
负责人:
关键词:
60207 Population Ecology 60208 Terrestrial Ecology 60202 Community Ecology (excl. Invasive Species Ecology) 50103 Invasive Species Ecology
DOI:
doi:10.6084/m9.figshare.4055772.v1
摘要:
Meta Data%3A%0A%0A1)%0AAbundance Native Plants%3A This is a discrete variable. A 50 m transect was%0Aplaced along the length of the forest
yorku.ecology.october3-2016.csv
负责人:
关键词:
60202 Community Ecology (excl. Invasive Species Ecology)
DOI:
doi:10.6084/m9.figshare.3979725.v1
摘要:
er of native plants, determined by aid of teacher assistant. A plant was classified as native if it originated in its respective habitat.

abundance.exotic.plants
Data from: Tomato GOLDEN2-LIKE transcription factors reveal molecular gradients that function during fruit development and ripening
负责人:
关键词:
Transcriptomics;ripening;Solanum lycopersicum;GLK;tomato
DOI:
doi:10.5061/dryad.v134j
摘要:
on. GOLDEN2-LIKE (GLK) transcription factors regulate plastid and chlorophyll levels. Tomato (Solanum lycopersicum), like most plants, contains two GLKs
Data from: Molecular signatures of selection on reproductive character displacement of flower color in Phlox drummondii
负责人:
Hopkins, Robin
关键词:
Population Structure Reproductive Isolation Population Genetics reinforcement anthocyanin biosynthesis
DOI:
doi:10.5061/dryad.8792d
摘要:
s been observed in a wide variety of plants and animals. A classic example of reproductive character displacement, presumed to be caused by reinforcing selecti
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 particula

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