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236 results for “Honeybees”
Data for manuscript Trans-generational immune priming against American Foulbrood does not affect the performance of honeybee colonies
<p>Data used in analysis for manuscript Trans-generational immune priming against American Foulbrood does not affect the performance of honeybee colonies</p>
Germline stem progenitors and oocyte production in the Honeybee Queen Ovary
<p>Raw figures for the paper “Germline stem progenitors and oocyte production in the Honeybee Queen Ovary”.</p> <p> Georgia Cullen, Joshua B. Gilligan, Joseph G. Guhlin and Peter K. Dearden.</p>
Fig. 2 in Phylogeography and species delimitation of the Asian cavity-nesting honeybees
Fig. 2. Bayes Factor species delimitation tests hypotheses of the number of species in a set of samples based on the multi-locus data. Blue lines show trace coalescence of SNPs, in which simultaneous coalescences to an ancestor node indicate a higher likelihood of speciation event. The best-supported model recognized A. nigrocincta and 6 species among populations currently placed within A. cerana.
Fig. 4 in Phylogeography and species delimitation of the Asian cavity-nesting honeybees
Fig. 4. RASP uses the localities of individuals and RADseq SNP data to reconstruct ancestral ranges for the major nodes. Above: Ultrametric tree; colors of the vertical blocks on the right indicate the single most likely reconstructed ancestral range for each of the major nodes.The 2 most likely ancestral ranges are shown by color-coded pie diagrams at the major nodes on the tree. Additional possible, but less likely, ancestral ranges at each node are indicated in black. Below: Event graph; X-axis shows time along the same scale as the ultrametric tree.Y-axis shows number of estimated events (dispersal, vicariance, extinction, and "standard̎, or corrected number of events considering the probabilities of all vicariance, dispersal, and extinction events).
Fig. 1 in Phylogeography and species delimitation of the Asian cavity-nesting honeybees
Fig. 1. (A) BEAST maximum clade credibility tree with 10 Apis clades indicated by colored bars, including: the dwarf honey bees Apis andreniformis and A. m. florea; the giant honey bees, A. dorsata; and the cavity-nesting species A. mellifera, A. koschevnikovi, A. nigrocincta, and A. cerana in the broad sense. Within A. cerana in the broad sense there are 5 clades associated with their geographic distribution: oceanic Philippine, India-yellow, Sundaland, Mainland, and Indiablack, which is nested within the Mainland clade.Terminals are individual bee samples, black, gray, and white circles indicate strength of support for nodes, and colored bars flanking nodes indicate the maximum credibility interval. Numbered nodes indicate the most recent common ancestors of clades discussed in the text. (B-F) STRUCTURE analyses support the hypothesis that populations currently placed in A. cerana can be divided into 4 lineages: oceanic Philippines, Indiayellow, Sundaland, and Mainland in the narrow sense.
Fig. 3 in Phylogeography and species delimitation of the Asian cavity-nesting honeybees
Fig. 3. Discriminant analysis of principle components (DAPC) indicates the number of isolated clusters among the individuals included in the analyses. Crosses represent the centroid of each group. Discriminant analyses were conducted using the first 20 principal component axes for cumulated variance (inset graphs in A and B show PCA eigenvalues; first 20 principal component axes are shaded black). (A) Apis mellifera and A. koschevnikovi are isolated from other cavitynesting Apis populations. Oceanic Philippine cavity-nesters and A. nigrocincta are shown as distinct groups very near the remaining populations. (B) This analysis shows 3 well-isolated groups among populations currently placed within A. cerana (excluding the Philippine cavity-nesters): Sundaland, India-yellow, and Mainland A. cerana.
Data from: Climate rather than geography separates two European honeybee subspecies
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Data from: Temporal variation in the genetic structure of a drone congregation area: An insight into the population dynamics of wild African honeybees (Apis mellifera scutellata)
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Data from: Seminal fluid of honeybees contains multiple mechanisms to combat infections of the sexually transmitted pathogen Nosema apis
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Adaptive evolution of honeybee dance dialects
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Data from: Hungry for the queen: honeybee nutritional environment affects worker pheromone response in a life stage‐dependent manner
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Data from: Larval pheromones act as colony-wide regulators of collective foraging behavior in honeybees
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Data from: SNPs selected by information content outperform randomly selected microsatellite loci for delineating genetic identification and introgression in the endangered dark European honeybee (Apis mellifera mellifera)
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Data from: Gradual replacement of wild bees by honeybees in flowers of the Mediterranean Basin over the last 50 years
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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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Data from: Sperm use economy of honeybee (Apis mellifera) queens
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Data from: Alien honeybees increase pollination risks for range-restricted plants
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Data from: Trypanosomatid parasites infecting managed honeybees and wild solitary bees
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Data for the effect of optic flow cues on honeybee flight control in wind
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Data from: Risk of potential pesticide use to honeybee and bumblebee survival and distribution: a country-wide analysis for The Netherlands
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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