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Data from: Nutritional complexity and the structure of bee foraging bouts
负责人:
关键词:
floral constancy floral rewards foraging nectar nutritional ecology pollen pollination social insect.
DOI:
doi:10.5061/dryad.467km
摘要:
colonies of the Eastern Bumble Bee (Bombus impatiens) in the laboratory on either protein-rich or protein-limited diets and assessed bees’ foraging bout
Data from: How a generalist bee achieves high efficiency of pollen collection on diverse floral resources
负责人:
关键词:
behavioral flexibility;floral evolution;floral sonication;Bombus impatiens;Solanum houstonii;Begonia x hybrida;pollen foraging;specialization;learning;Begonia descoleana
DOI:
doi:10.5061/dryad.f6h25
摘要:
s (Bombus impatiens) foraged effectively for pollen from diverse floral resources, by manipulating the presence of pollen and anther cues, in a series of experiments
Data from: Bees learn preferences for plant species that offer only pollen as a reward
负责人:
关键词:
Bumble bee;Exacum affine;pollen;floral display;Bombus impatiens;preference;Solanum tridynamum;learning;Solanum elaeagnifolium;Floral rewards
DOI:
doi:10.5061/dryad.pf064
摘要:
-mediated changes in preference raised the possibility that bees formed associations between particular floral features and pollen rewards. We therefore asked
Data from: The diversity of floral temperature patterns, and their use by pollinators
负责人:
关键词:
Pelargonium cucullatum;Helleborus orientalis;Helianthemum nummularium;Helleborus x \u2018Snow White\u2019;Floral Signalling;Arabis alpina;Begonia coccinea;Chamerion angustifolium 'Albino';Bergenia cordifolia;Chaenomeles speciosa;Vinca minor;Geranium sylvaticum;Tulipa tarda;Conditioning;Jasminum officinale;Crinum x powellii;Brachyscome iberidifolia;Trautvetteria caroliniensis;Osteospermum jucundum;Hyacinthoides non-scripta;Iris sibirica;Cistus x purpureus;Astrantia major;Gazania rigens;Geranium psilostemon;Geranium pyrenaicum;Lotus corniculatus;Paradisea lusitanica;Dietes bicolor;Potentilla fruticosa 'Gibson's Scarlet';Campanula poscharskyana;bumblebees;Kerria japonica 'Flore Pleno';Camellia fraterna;Papaver cambricum;Matricaria chamomilla;Iris unguicularis;Crocus x stellaris;Helichrysum sp.;Fragaria vesca;Fuchsia magellanica;Geranium californicum;Campanula persicifolia;Bellis perennis;Anemone nemorosa;Azalea sp.;Hemerocallis sp.;Hydrangea macrophylla;Bees;Cypella herbertii;Primula vulgaris;Tulipa 'Golden Appledoorn';Anthurium scherzerianum;Impatiens tinctoria;Tulipa 'Honky Tonk';Magnolia kobus;Taraxacum officinale;Geranium pratense;Bombus terrestris;Xerochrysum bracteatum 'Florabella Pink';Hemerocallis 'Autumn Red';Spiraea prunifolia;Narcissus pseudonarcissus;Dimorphotheca pluvialis;Anemone blanda;Paeonia peregrina;Coreopsis verticillata;Eschscholzia californica;Hypericum calycinum;Xerochrysum bracteatum;Brunnera macrophylla;Ranunculus bulbosus;Roscoea sp.;Aquilegia vulgaris;Arctotis acaulis;Ranunculus sp.;Cistus 'Snow Fire';Borago officinalis;Dahlia coccinea;Vinca herbacea;Chamelaucium uncinatum;Rhododendron carolinianum 'P.J. Mezitt';Ranunculus aquatilis;Cistus x pulverulentus;Pelargonium quercifolium;Nymphaea odorata;Helianthemum apenninum;Mimulus aurantiacus;Tulbaghia violacea;Mimosa pudica;learning;Dimorphotheca sp.;Allium cristophii;Geum 'Kariskaer';Gazania rigens 'Cookie';Malva sylvestris;Phlomis fruticosa;Ranunculus auricomus;Nepeta 'Six Hills Giant';Scutellaria galericulata;Zantedeschia aethiopica;Infrared thermography;Felicia amelloides;Leucanthemum vulgare;Aubrieta deltoidea;Piptanthus napalensis;Prunus sp.;Pelargonium echinatum;Zinnia peruviana 'Red Spider';Cistus 'Snow White';Papaver rhoeas;Crocosmia 'Lucifer';Geum chiloense 'Lady Straheden';Cistus x verguinii;Geranium albanum;Silene coronaria;Angiosperms;temperature;Crocus vernus;Ficaria verna;Rhododendron sp.;Daphne odora;Polemonium foliosissimum;Cistus x argenteus;Dimorphotheca sinuata;Euphorbia characias;Campanula portenschlagiana;Knautia macedonica;Alyogyne huegelii;Salvia forsskaolii;Gazania 'Daybreak Bright Orange';Galanthus nivalis;Acanthus hungaricus;Tulipa 'Daydream';pollination;Geu chiloense 'Mrs Bradshaw';Tulipa hageri 'Red Cup';Knautia macedonica 'Red Knight';Nigella damascena;Geranium procurrens;Pasithea caerulea;Rhodanthe chlorocephala;Exochorda x macrantha;Narcissus hispanicus;Tulipa kaufmanniana
DOI:
doi:10.5061/dryad.qp244
摘要:
e known to be able to detect. Using differential conditioning techniques, we show that bumblebees can distinguish artificial flowers differing in temperature patterns compa
Data from: Associative learning of flowers by generalist bumble bees can be mediated by microbes on the petals
负责人:
Russell, Avery L.
关键词:
communication floral cues learning flower microbes microbial volatiles preference
DOI:
doi:10.5061/dryad.2v04627
摘要:
we characterized flower and bumble bee microbial abundance, and in laboratory assays we tested whether bumble bees (<i>Bombus impatiens</i>
Data from: Consequences of multiple inflorescences and clonality for pollinator behavior and plant mating
负责人:
关键词:
Ecology: evolutionary;Mating Systems;plant mating;Reproduction: strategies;morphology;Bombus impatiens;Behavior;Foraging: behavior;Ecology: behavioral
DOI:
doi:10.5061/dryad.5s63b
摘要:
Angiosperms engage in distributed reproduction, producing sex organs in multiple flowers on one or more inflorescences, including on different
Data from: Enriching the ant tree of life: enhanced UCE bait set for genome-scale phylogenetics of ants and other Hymenoptera
负责人:
关键词:
Wasmannia auropunctata;Formica podzolica;Harpegnathos saltator;Myrcidris epicharis;Acromyrmex echinatior;Aneuretus simoni;Crematogaster nigropilosa;Bombus impatiens;Cephalotes atratus;Prionopelta amabilis;molecular systematics;Aculeata;Gnamptogenys minuta;Dolichoderus lamellosus;Pepsis grossa;Tetheamyrma sp;Patagonomyrmex angustus;Fulakora orizabana;Hypoponera nitidula;Diacamma rugosum;Eurhopalothrix gravis;Adelomyrmex marginodus;Vollenhovia emeryi;Protanilla sp;Neogene;Adelomyrmex dentivagans;Acanthognathus ocellatus;Gnamptogenys simulans;Ponera coarctata;Hylomyrma dentiloba;Solenopsis invicta;Camponotus floridanus;Linepithema humile;Pogonomyrmex occidentalis;Neoponera unidentata;Stegomyrmex manni;Stenamma alas;Next-generation sequencing;ultraconserved elements;Odontomachus meinerti;Acanthoponera minor;Tatuidris tatusia;targeted enrichment;Adelomyrmex longinoi;Mayaponera constricta;Nothomyrmecia macrops;Pheidole fimbriata;Cataulacus egenus;Pogonomyrmex barbatus;Temnothorax nevadensis;Paleogene;Pseudoponera stigma;Cyphomyrmex rimosus;Tapinoma sessile;Leptomyrmex erythrocephalus;Tetraponera aethiops;Megachile rotundata;Aphaenogaster phalangium;Apis mellifera;Lasius sitiens;Basiceros manni;Myrmecia fulvipes;Formicidae;Apomyrma sp;Pachycondyla harpax;Sceliphron caementarium;Ooceraea biroi;Solenopsis bicolor;Perissomyrmex snyderi;Brachycistis timberlakei;Eciton burchellii;Rogeria belti;Lasioglossum albipes;Leptothorax muscorum;Dinoponera longipes;Myrmica incompleta;Hymenoptera;Manica hunteri;Proceratium mancum;Lasius niger;Rhopalothrix isthmica;Platythyrea punctata;Tetraponera allaborans;Philidris sp;Mischocyttarus flavitarsis;Simopelta andersoni;Gauromyrmex bengakalisi;Veromessor lobognathus;Nesomyrmex pleuriticus;Octostruma amrishi;Myrmecia varians;Goniomma blanci;phylogenomics;Myrmelachista joycei;Parvaponera darwinii;Atta cephalotes;Aphaenogaster occidentalis;Tetraponera nodosa;Discothyrea horni complex;Monomorium pharaonis;Paraponera clavata;Pristomyrmex bicolor;Evolution;Cretaceous;Cryptopone butteli;Ectatomma gibbum;Pseudomyrmex spinicola;Cardiocondyla obscurior;Syscia augustae;Myrmicocrypta sp;Pseudomyrmex gracilis;Apterostigma dentigerum
DOI:
doi:10.5061/dryad.89n87
摘要:
and design baits to enrich them. 2. We test an updated UCE identification and bait design workflow for the insect order Hymenoptera, with a particular focus

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