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Data from: Pollinator-mediated mechanisms for increased reproductive success in early flowering plants
负责人:
Ison, Jennifer L.
关键词:
plant-pollinator interactions flowering phenology mate limitation fragmentation temporal mating patterns
DOI:
doi:10.5061/dryad.t6v47p1
摘要:
pollinator visitation in eight Echinacea angustifolia populations in western Minnesota, USA, to gauge the potential for pollinator-mediated selection. Echinacea
Data from: Mating opportunity increases with synchrony of flowering among years more than synchrony within years in a nonmasting perennial
负责人:
关键词:
Life history;Plant;Echinacea angustifolia;Reproduction: strategies;Ecology: population;Density Dependence;Fitness
DOI:
doi:10.5061/dryad.487db24
摘要:
ng opportunity in an experimental population (n = 286) of a non-masting species, Echinacea angustifolia. We quantified individuals' synchrony of flowering within and among years and partiti
Data from: Genomics of Compositae crops: reference transcriptome assemblies, and evidence of hybridization with wild relatives
负责人:
关键词:
Agriculture Transcriptomics Angiosperms Hybridization
DOI:
doi:10.5061/dryad.cp723
摘要:
ifically, we performed Illumina sequencing of Cichorium endivia, Cichorium intybus, Echinacea angustifolia, Iva annua, Helianthus tuberosus, Dahlia hybrida, Leontodon
Data from: Biodiversity assessment among two Nebraska prairies: a comparison between traditional and phylogenetic diversity indices
负责人:
关键词:
Helianthus petiolaris;Heliopsis helianthoides var. occidentalis;Nepeta cataria;Silphium integrifolum var. laeve;Helianthus tuberosus;Carduus nutans;Lactuca ludoviciana;Solanum rostratum;Achillea millefolium;Erigeron strigosus;Antennaria negleta;Campanula rotundifolia;Salvia nemorosa;Cirsium undulatum;Monarda fistulosa var. mollis;Community Ecology;Antennaria howellii subsp. neodioica;Ratibida columnifera;Erigeron bellidiastrum;Grindelia squarrosa var. squarrosa;Conium maculatum;Heterotheca stenophylla var. stenophylla;Cirsium canescens;Solidago missouriensis;conservation;Vernonia baldwinii;Silene antirrhina;Penstemon angustifolius;Liatris glabrata;Erigeron philadelphicus;Lygodesmia juncea;Tragopogon dubius;Zizia aurea;Ipomoea leptophylla;Penstemon gracilis;Rudbeckia hirta var. pulcherrima;Androsace occidentalis;Galium aparine;Thelesperma filifolium;Symphoricarpos occidentalis;Convolvulus arvensis;Verbena hastata;Grasslands;Impatiens capensis;Verbascum thapsus;Veronica americana;phylogenetic diversity;Asclepias verticillata;Evolvulus nuttallianus;Solanum carolinense;asterids;Heterotheca villosa;Echinacea angustifolia;Solanum triflorum;Silene vulgaris;Plantago patagonica;Next-generation sequencing;Teucrium canadense;Comandra umbellata;Xanthisma spinulosum;Cicuta maculata;Helianthus annuus;Hymenopappus tenuifolius;Gutierrezia sarothrae;Asclepias syriaca;Solidago gigantea;Senecio integerrimus;Ellisia nyctelea;Physalis virginiana;Helianthus pauciflorus subsp. subrhomboideus;Physalis heterophylla
DOI:
doi:10.5061/dryad.qj177
摘要:
d massively parallel sequencing to generate over 65,000 DNA characters from three cellular compartments for over 60 species in the asterid clade of flowering plants. We esti

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