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574 results for “island faunas”
Figs 5A–D in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 5A–D. Allomalia cf. quadrivirgata (COSTA, 1863). A habitus of male and female; B penis lateral view; C penis dorsal view on apex (in detail), D penis dorsal view. Photos: C. Germann.
Fig. 2. Brachycerus cinereus OLIVIER, 1807 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Fig. 2. Brachycerus cinereus OLIVIER, 1807 in the Oros Ambelos feeding on leaves of Galanthus elwesii. Photo: C. Germann.
Fig. 1 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Fig. 1. Diagram showing the composition of the fauna of Curculionoidea collected so far on Samos after the three chorotypes Palaearctic, Circum-Mediterranean and Eastern-Mediterranean.
Figs 12–13 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 12–13 (not in scale). 12 Otiorhynchus anadolicus BOHEMAN, 1843, 13 Otiorhynchus bisphaericus REICHE & SAULCY, 1858. All photos: G. Müller.
Figs 18–21 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 18–21 (not in scale). 18 Psallidium spinimanum REICHE, 1861, 19 Tychius hebes DESBROCHERS, 1875, 20 Tychius naxiae FAUST, 1889, 21 Omias sandneri (REITTER, 1906). All photos: G. Müller.
Figs 10–11 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 10–11 (not in scale). 10 Oedecnemidius varius (BRULLé, 1832), 11 Styphlus oros (REITTER, 1889). All photos: G. Müller.
Figs 4 A–D. A in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 4 A–D. A Hypoglyptus sp.; B Otiorhynchus cf. bleusei FAUST, 1899; C and D normal and big sized (= polyploid?) specimens of Otiorhynchus ovalipennis (BOHEMAN, 1843). Photos: C. Germann.
Figs 6–9 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 6–9 (not in scale). 6 Protapion brenskei (DESBROCHERS, 1895), 7 Ceutorhynchus oculatus COLONNELLI, 1987, 8 Entomoderus cf. deformis (REICHE & SAULCY, 1858), 9 Mogulones sublineellus (C. BRISOUT, 1869). All photos: G. Müller.
Figs 3 A–C. Echinodera montissacris BEHNE, 2002. A in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 3 A–C. Echinodera montissacris BEHNE, 2002. A pronotum with deep and coarse punctation; B habitus, dorsal view; C penis lateral and dorsal view. Photos: C. Germann.
Figs 16–17 in An annotated checklist of the weevil fauna of Samos Island with new records for Greece (Coleoptera, Curculionoidea)
Figs 16–17 (not in scale). 16 Polydrusus armipes BRULLé, 1832, 17 Polydrusus cocciferae KIESEN-WETTER, 1864. All photos: G. Müller.
Near-shore island lizard fauna shaped by a combination of human-mediated and natural dispersal
<p><strong>Aim: </strong>Island biotas provide opportunities to study colonization and adaptation to novel environments. Islands, especially near-shore islands, may have a long record of human habitation such that some lineages result from human-assisted introductions. Here, we combine phylogenetic analyses with fossil data and historical specimen records to reconstruct colonization histories, characterize among-island divergence, and assess the role of humans in shaping the evolutionary history of lizards inhabiting a near-shore island archipelago.</p> <p><strong>Location: </strong>Channel Islands and adjacent mainland of California, USA.</p> <p><strong>Taxa: </strong>Western fence lizard ( <em>Sceloporus occidentalis</em>), southern alligator lizard (<em>Elgaria multicarinata</em>), common side-blotched lizard (<em>Uta stansburiana</em>).</p> <p><strong>Methods:</strong> We sequenced mitochondrial DNA (ND1, cyt-b) from each of three lizard species, covering their entire island distributions plus the adjacent mainland. For each, we estimated diversity within and among each island, obtained maximum likelihood bootstrapped phylogenies, constructed haplotype networks, and tested for population expansion. We used museum specimen records and microfossil evidence to infer colonization scenarios.</p> <p><strong>Results: </strong> <em>Sceloporus occidentalis</em> is characterized by a single island-colonization event, and exhibits the deepest divergences from mainland relatives and the highest among-island divergence. <em>Elgaria multicarinata</em> and <em>Uta stansburiana</em> each have at least three distinct colonization events, with fossil and historical data indicating that some of these occurred after humans arrived to the islands.</p> <p><strong>Main Conclusions:</strong> The evolution of Channel Island lineages for two lizard taxa has been mediated by ancient and contemporary anthropogenic activity, while the evolution of the third is shaped by natural dispersal and vicariance caused by sea-level rise. Genetic divergence corroborates the treatment of <em>S. occidentalis</em> as an endemic island species, <em>S. becki</em>. The unique histories of these three taxa are synthesized with other Channel Island lineages highlighting that taxa inhabiting islands with long histories of human activity should be carefully studied to assess the role of people in facilitating colonization and subsequent gene flow. </p>
Figs. 1–7 in New for the fauna of Kuril Islands Lepidoptera
Figs. 1–7. Imago of Lepidoptera from Tretyakovo (Kunashir). 1 – Pieris brassicae, ♂; 2 – Zaranga permagna, ♂; 3 – Ellida arcuata, ♂; 4 – Acronycta hercules, ♂; 5 – Deilephila
Figs 25-33 in On the Cephennium fauna of the Iberian Peninsula and the Atlantic Islands (Coleoptera, Staphylinidae, Scydmaeninae)
Figs 25-33: Cephennium kiesenwetteri (25-26), C. constrictum (27-30; 27-28: holotype; 29-30: paratype), and C. asturicum (31-33; 32-33: based on Besuchet unpubl.): (25-32) aedeagus in lateral, dorsal, and in ventral view; (33) internal structures of aedeagus in ventral view. Scale bars: 0.1 mm.
Figs 72-78 in On the Cephennium fauna of the Iberian Peninsula and the Atlantic Islands (Coleoptera, Staphylinidae, Scydmaeninae)
Figs 72-78: Cephennium nevadae (72-74), C. carzolae (75-77), and C. malagae (78): (72-73, 75- 76) aedeagus in lateral and in ventral view; (74, 77-78) internal structures of aedeagus in ventral view. Scale bars: 0.1 mm.
Figure 12 in First records of nine fish species from Réunion Island observed during an inventory of the fauna of mesophotic zone
Figure 12. – Gymnothorax aff. breedeni, species not identified with certainty, several specimens were observed at the depths closed to 100 m in the Bay of Saint-Leu (zone 1), 10 Nov. and 15 Dec. 2020. Photograph by P. Plantard.
Figure 8 in First records of nine fish species from Réunion Island observed during an inventory of the fauna of mesophotic zone
Figure 8. – Halichoeres trispilus, 95 m Bay of Saint-Leu (zone 1), 15 Dec. 2020. Photograph by P. Plantard.
Figure 10 in First records of nine fish species from Réunion Island observed during an inventory of the fauna of mesophotic zone
Figure 10. – Canthigaster tyleri, 85 m Bay of Saint-Leu (zone 1), 20 Jan. 2021. Photograph by P. Plantard.
Figure 2 in First records of nine fish species from Réunion Island observed during an inventory of the fauna of mesophotic zone
Figure 2. – Dunckerocampus boylei, 95 m Bay of Saint-Leu (zone 1), 15 Dec. 2020. Photograph by P. Plantard.
Figure 1 in First records of nine fish species from Réunion Island observed during an inventory of the fauna of mesophotic zone
Figure 1. – Sampling zones (zone 1 and 2 in red) on a geomorphological map of the coast of Réunion Island (Guennoc et al., 2008).
Fig. 2 in Contribution to the knowledge of the weevil fauna of the island of Gavdos (Greece), with description of two new species (Coleoptera: Curculionoidea).
Fig. 2.- Styphlus (Styphlus) fontis n. sp., habitus of the holotype. Fig. 3.- S. (Styphlus) vidanoi Osella & Zuppa, 1994, habitus of the holotype from Osella & Zuppa (1994). Fig. 4.- S. (Styphlus) syriacus Stierlin, 1881, habitus of a female from Israel, Golan, Ha Yarden Park. Photos by Francesco Sacco.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.