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27 results for “Mediterranean bees”
Linked collectors and determiners for: Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel — a Mediterranean hotspot for wild bees.
Natural history specimen data linked to collectors and determiners held within, "Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel — a Mediterranean hotspot for wild bees". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/49577e28-85f9-4cde-8e7f-3ec5baf7556f">https://bionomia.net/dataset/49577e28-85f9-4cde-8e7f-3ec5baf7556f</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/49577e28-85f9-4cde-8e7f-3ec5baf7556f">https://gbif.org/dataset/49577e28-85f9-4cde-8e7f-3ec5baf7556f</a>. Formatted as a Frictionless Data package.
Bee community and trait-based responses to fire in a Mediterranean landscape
Open the record for dataset details and reuse information.
Local and landscape effects on the reproduction of wild bees and wasps in Mediterranean communities along a gradient of land-use
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Data from: Gradual replacement of wild bees by honeybees in flowers of the Mediterranean Basin over the last 50 years
<p>Evidence for pollinator declines largely originates from mid-latitude regions in North America and Europe. Geographical heterogeneity in pollinator trends combined with geographical biases in pollinator studies, can produce distorted extrapolations and limit understanding of pollinator responses to environmental changes. In contrast to the declines experienced in some well-investigated European and North American regions, honeybees seem to have increased recently in some areas of the Mediterranean Basin. Since honeybees can have negative impacts on wild bees, it was hypothesized that a biome-wide alteration in bee pollinator assemblages may be underway in the Mediterranean Basin involving a reduction in the relative number of wild bee pollinators. This hypothesis was tested using published quantitative data on bee pollinators of wild and cultivated plants from studies conducted between 1963-2017 in 13 Mediterranean countries. The density of honeybee colonies increased exponentially and wild bees were gradually replaced by honeybees in flowers of wild and cultivated plants. The proportion of wild bees at flowers was four times greater than that of honeybees at the beginning of the period, the proportions of both groups becoming roughly similar fifty years later. The Mediterranean Basin is a world biodiversity hotspot for wild bees and wild bee-pollinated plants, and the ubiquitous rise of honeybees to dominance as pollinators could in the long run undermine the diversity of plants and wild bees in the region.</p>
FIGURE 13 in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 13. Male eighth sterna, ventral view: A, Andrena israelica n. sp.; B, A. judaea n. sp.; C, A. palaestina n. sp.; D, A. hermonella n. sp.; E, A. menahemella n. sp.; F, A. wolfi; G, A. sphecodimorpha mediterranea n. ssp.; H, A. perahia n. sp.; I, A. crocusella n. sp.
FIGURE 10. Andrena perahia n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 10. Andrena perahia n. sp., female (A–D) and male (E–F): A, E, habitus, lateral view; B, F, head, anterior view; C, head and mesosoma, dorsal view; D, metasoma, dorsal view.
FIGURE 7. Andrena menahemella n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 7. Andrena menahemella n. sp., female (A–D) and male (E–H): A, E, habitus, lateral view; B, F, head, anterior view; C, G, head and mesosoma, dorsal view; D, H, metasoma, dorsal view.
FIGURE 4. Andrena palaestina n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 4. Andrena palaestina n. sp., female (A–D) and male (E–H): A, E, habitus, lateral view; B, F, head, anterior view; C, H, head and mesosoma, dorsal view; D, metasoma, dorsal view; G, base of flagellum.
FIGURE 2. Andrena israelica n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 2. Andrena israelica n. sp. (A, C, E, G) and A. judaea n. sp. (B, D, F, H): A–B, female, forewing (arrow indicates nervulus–basal vein distance); C–D, female, metasoma, dorsal view; E–F, male, habitus, lateral view; G–H, male, head, anterior view.
FIGURE 1. Andrena israelica n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 1. Andrena israelica n. sp. (A, C, E, G) and A. judaea n. sp. (B, D, F, H), females: A–B, habitus, lateral view; C–D, head, anterior view; E–F, clypeus; G–H, head and mesosoma, dorsal view.
FIGURE 9. Andrena sphecodimorpha mediterranea n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 9. Andrena sphecodimorpha mediterranea n. ssp., female (A–D) and male (E–H): A, E, habitus, lateral view; B, F, head, anterior view; C, G, head and mesosoma, dorsal view; D, H, metasoma, dorsal view.
FIGURE 8 in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 8. Andrena wolfi, male: A, habitus, lateral view; B, head, anterior view; C, head and mesosoma, dorsal view; D, metasoma, dorsal view.
FIGURE 3. Andrena danini n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 3. Andrena danini n. sp., female: A, habitus, lateral view; B, head, anterior view; C, head and mesosoma, dorsal view; D, propodeum, posterior view; E, metasoma, dorsal view; F, tergum 1.
FIGURE 12 in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 12. Male genital capsules, dorsal view: A, Andrena israelica n. sp.; B, A. judaea n. sp.; C, A. palaestina n. sp.; D, A. hermonella n. sp.; E, A. menahemella n. sp.; F, A. wolfi; G, A. sphecodimorpha mediterranea n. ssp.; H, A. perahia n. sp.; I, A. crocusella n. sp.
FIGURE 6 in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 6. Andrena fimbriatoides, female: A, habitus, lateral view; B, head, anterior view; C, head and mesosoma, dorsal view; D, metasoma, dorsal view.
FIGURE 11. Andrena crocusella n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 11. Andrena crocusella n. sp., female (A–D) and male (E–H): A, F, head, anterior view; B, G, head and mesosoma, dorsal view; C, H, metasoma, dorsal view; D, E, habitus, lateral view.
FIGURE 5. Andrena hermonella n in Eight new species of Andrena Fabricius (Hymenoptera: Apoidea: Andrenidae) from Israel—a Mediterranean hotspot for wild bees
FIGURE 5. Andrena hermonella n. sp., female (A–D) and male (E–H): A, E, habitus, lateral view; B, F, head, anterior view; C, G, head and mesosoma, dorsal view; D, H, metasoma, dorsal view.
Figure 1. Phylogenetic relationships between Anthidiellum troodicum, A in Taxonomic status of the disjunct populations of the resin bee Anthidiellum breviusculum (Pérez, 1890) s.l. in the Mediterranean (Apoidea: Anthidiini)
Figure 1. Phylogenetic relationships between Anthidiellum troodicum, A. africanum sp. nov. and A. breviusculum as inferred from COI (mitochondrial cytochrome c oxidase I) DNA sequences. The phylogram shows the best-scoring maximum likelihood tree. Numbers shown at nodes are maximum likelihood bootstrap values based on 1000 bootstrap replicates. A set of 36 COI sequences of Anthidiellum strigatum from different parts of its distribution range was used as outgroup.
Figure 6 in Taxonomic status of the disjunct populations of the resin bee Anthidiellum breviusculum (Pérez, 1890) s.l. in the Mediterranean (Apoidea: Anthidiini)
Figure 6. Distribution of Anthidiellum africanum sp. nov. (green dots), A. breviusculum (blue dots) and A. troodicum (red dots).
Figure 3 in Taxonomic status of the disjunct populations of the resin bee Anthidiellum breviusculum (Pérez, 1890) s.l. in the Mediterranean (Apoidea: Anthidiini)
Figure 3. Face of the female of (a) Anthidiellum breviusculum from Spain, (b) A. africanum sp. nov. from Algeria, and (c) A. troodicum from Turkey and (d) from Israel. Note the finer punctation of the clypeus in A. breviusculum (a) and A. africanum sp. nov. (b), and the coarser punctation in A. troodicum (c and d).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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