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Data from: Demonstration of pollinator-mediated competition between two native Impatiens species, Impatiens noli-tangere and I. textor
负责人:
关键词:
Improper pollen;Impatiens textori;Reproductive interference;bumblebees;Plant \u2013 plant interaction;Impatiens noli-tangere;pollination
DOI:
doi:10.5061/dryad.052jv
摘要:
i share the same pollination niche (i.e., flowering season, pollinator fauna, and position of pollen on the pollinator's body). In addition, heterospecific
r genetic identity while sharing pollinators?
负责人:
关键词:
Fig;Ficus;Agaonidae;introgression;speciation;mutualism;sympatric
DOI:
doi:10.5061/dryad.v0n20
摘要:
e reported. In most cases host plants sharing pollinators are allopatric. However in the case of the species group of Ficus auriculata, forms may co-occur ove
Data from: Influence of the honeybee and trait similarity on the effect of a non-native plant on pollination and network rewiring
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关键词:
plant invasion;Apis mellifera;pollinator functional group;Hedysarum coronarium;flower morphology;plant-pollinator communities
DOI:
doi:10.5061/dryad.77rn2
摘要:
by) nor niche overlap (i.e. proportion of plant species they share pollinators with) of plants, irrespective of their flower morphology. Only the proportion of honeybee
Data from: Evolutionary relationships among pollinators and repeated pollinator sharing in sexually deceptive orchids
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关键词:
Agriomyia sp.;Lophocheilus sp. A;Zaspilothynnus nigripes;Zaspilothynnus rugicollis;Zeleboria sp. F;Neozeleboria sp.;Zaspilothynnus trilobatus;Zaspilothynnus dilatatus;New genus 1 sp. A;Eirone leai;Zeleboria sp. A;Zeleboria sp. C;Zeleboria sp. B;Pogonothynnus sp. A;Zeleboria sp. E;Zeleboria sp. D;Catocheilus annulatus;pollination;Campylothynnus sp. A;Lestricothynnus sp. A;speciation;Macrothynnus sp. A;Phymatothynnus sp.;New genus 2 sp. A;Thynnoturneria sp.;Phymatothynnus sp. D Phymatothynnus victor;Guerinius sp.;Neozeleboria tabulata;Arthrothynnus latus;Tachynomyia sp. A;Thynnoides sp. A;Thynnoides sp. B;Catocheilus immodestus;Thynnoides sp. C;Neozeleboria monticola;Thynnoides sp. D;Zaspilothynnus maturus;Thynnoides sp. E;Neozeleboria cryptoides;Thynnoides sp. F;Thynnoides sp. G;Lestricothynnus modestus;Thynnoides sp. H;Thynnoides sp. I;Thynnoides sp. J;Thynnoides sp. K;Campylothynnus flavopictus;Aulacothynnus alexanderi;Zaspilothynnus gilesi;Neozeleboria sp. 30;New genus 3 sp. C;phylogenetics;New genus 3 sp. B;New genus 3 sp. A;Rhytidothynnus sp.;Zaspilothynnus sp. C;Iswaroides sp. A;Zaspilothynnus sp. B;Catocheilus sp. B;Zaspilothynnus sp. A;Catocheilus sp. A;Aeolothynnus westwoodi;Zaspilothynnus seductor;sexual deception;New genus 4 sp. C;Phymatothynnus sp. A;New genus 4 sp. B;Phymatothynnus sp. B;New genus 4 sp. A;Phymatothynnus sp. C;Neozeleboria sp. 29;Campylothynnus assimilis;Chilothynnus palachilus;specialisation;convergent evolution;Zaspliothynnus sp. D;Catocheilus affinis;Zaspilothynnus sp. D
DOI:
doi:10.5061/dryad.6jq11
摘要:
The mechanism of pollinator attraction is predicted to strongly influence both plant diversification and the extent of pollinator sharing bet
Data from: Genome-wide sequence data suggest the possibility of pollinator sharing by host shift in dioecious figs (Moraceae, Ficus)
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关键词:
DOI:
doi:10.5061/dryad.tb700
摘要:
e of pollinator sharing by host shift in the subgenus Ficus. On the other hand, there are strict genetic codivergences between allopatric po
Data from: Pollinator-mediated assemblage processes in California wildflowers
负责人:
关键词:
Clarkia;community assemblage;congener;mating system;Mimulus;null models;phylogeny;Limnanthes;community phylogenetics;species coexistence
DOI:
doi:10.5061/dryad.m03vf
摘要:
of California. Each genus contains species that co-flower and share pollinators, and each has a robust phylogeny. Within each genus, we surveyed 44-48 communities
Data from: Parasites in bloom: flowers aid dispersal and transmission of pollinator parasites within and between bee species
负责人:
关键词:
Apis mellifera;Host-parasite interaction;honey bee;disease vector;parasite transmission;Bombus terrestris;pollinators;bumblebee
DOI:
doi:10.5061/dryad.33fq5
摘要:
an underappreciated role in parasite dispersal. One of the best examples of such a situation is the shared use of flowers by pollinators, but the importance of flowers
Data from: Pollinator-mediated interactions between cultivated papaya and co-flowering plant species
负责人:
Munguía‐Rosas, Miguel
关键词:
Pollination Coflowering Indirect plant-plant interactions
DOI:
doi:10.5061/dryad.4rs855v
摘要:
st-pollination events; however, the current literature has mainly focused on pre-pollination events in natural plant communities. We assessed pollinator sharing
Data from: Competition for hummingbird pollination shapes flower color variation in Andean Solanaceae
负责人:
关键词:
reproductive character displacement;interspecific pollen transfer;signal evolution;phenotypic community structure;color vision;phylogenetic signal
DOI:
doi:10.5061/dryad.36v4b
摘要:
of pollinators with different color preferences. However, the pollinator shift model fails to account for the many examples of color variation within clades tha
Data from: Flowers respond to pollinator sound within minutes by increasing nectar sugar concentration.
负责人:
关键词:
DOI:
doi:10.5061/dryad.6n5h0pb
摘要:
way. Potential implications include plant resource allocation, the evolution of flower shape, and the evolution of pollinators sound. Finally, our results sugge

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