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220
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ShareScore release 0.9.0
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220 results for “Island Ecology”
Data from: Ecological explanations to island gigantism: dietary niche divergence, predation and size in an endemic lizard
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Data from: Spatial and ecological population genetic structures within two island-endemic Aeonium species of different niche width
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Data from: Population genomics of Sitka black-tailed deer supports invasive species management and ecological restoration on islands
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Evolutionary winners are ecological losers among oceanic island plants
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Data from: Ecological speciation in sympatric palms: 3. genetic map reveals genomic islands underlying species divergence in Howea
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Data from: Molecular characterisation of trophic ecology within an island radiation of insect herbivores (Curculionidae: Entiminae: Cratopus).
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Data from: Metabarcoding under Brine: Microbial ecology of five hyper-saline lakes at Rottnest Island (WA, Australia)
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Figures 10-11 from: Zan ND, Sarbini A, Taha H, Tan IV, Azri A, Kahar R, Metali F, Ahmad N, Arai T (2020) Occurrence and ecological implication of a tropical anguillid eel, Anguilla marmorata, in Brunei Darussalam, Borneo Island. Zoologia 37: 1-7. https://doi.org/10.3897/zoologia.37.e39468
Figures 10-11 Phylogenetic maximum likelihood tree using the mtDNA COI of Anguilla marmorata and other Anguilla species from the GenBank database with indicated accession numbers (10). Serrivomer sector was used as outgroup. The bootstrap proportions are shown next to the branches. Scale refers to evolutionary distance and in the unit of number of base substitutions per site. Haplotype network constructed with Anguilla marmorata mtDNA COI sequences (11). Each colour represents a sample site. The size of the circle is proportional to the number of samples that belong to each haplotype. Different haplotypes are labelled as H1 to H11. Each dash, which appears on the line that connects two haplotypes together, symbolizes one mutational step.
Figures 2-9 from: Zan ND, Sarbini A, Taha H, Tan IV, Azri A, Kahar R, Metali F, Ahmad N, Arai T (2020) Occurrence and ecological implication of a tropical anguillid eel, Anguilla marmorata, in Brunei Darussalam, Borneo Island. Zoologia 37: 1-7. https://doi.org/10.3897/zoologia.37.e39468
Figures 2-9 Adult specimens (2, 3) and their teeth (4, 5) and gross morphologies (6, 7) and histological sections (8, 9) of the gonads of tropical anguillid eels, Anguilla marmorata, that were collected in Brunei Darussalam, Borneo Island: (2) BE-1, A. marmorata (962 mm in TL); (3) BE-2, A. marmorata (1352 mm in TL); (4) Narrow maxillary bands of teeth of BE-1; (5) Narrow maxillary bands of teeth of BE-2. The gonadal histology of Stage III (8; BE-1) showed oocytes with oil droplets mid-vitellogenic oocytes in the early maturation stage. The gonadal histology of Stage V (9; BE-2) showed mid-vitellogenic oocytes (arrows) in the final preparation for spawning. Gross morphologies of the gonads (6, 7) are indicated by arrows. Scale bars: 8, 9 = 50 µm.
Figure 1 from: Zan ND, Sarbini A, Taha H, Tan IV, Azri A, Kahar R, Metali F, Ahmad N, Arai T (2020) Occurrence and ecological implication of a tropical anguillid eel, Anguilla marmorata, in Brunei Darussalam, Borneo Island. Zoologia 37: 1-7. https://doi.org/10.3897/zoologia.37.e39468
Figure 1 Map showing the collection sites of a tropical anguillid eel Anguilla marmorata in Brunei Darussalam, Borneo Island and in the Bonin Islands, tropical islands of Japan. The location of the offshore spawning area of A. marmorata in North Pacific population (green ellipse) with the oceanic currents (blue lines) from the spawning area is shown. Black circles on the map indicate the sampling location.
FIGURE 6 in Simuliidae (Diptera) of the Solomon Islands: new records and species, ecology, and biogeography
FIGURE 6. Simulium (G.) sherwoodi, Guadalcanal. Pupal gill, thoracic cuticle, and antennal sheath.
Supplementary material 1 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Specimens of Greek representatives of genus Thliphthisa examined
Figure 1 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Figure 1 Illustration of Thliphthisa sapphus, based on the type material A whole plant B whole plant with vegetative and flowering shoots C vegetative shoot D detail of stem of vegetative shoot E flowering shoot F detail of stem of flowering shoot G flower H dissected flower (drawings by A. Kästner).
Figure 2 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Figure 2 Habit and flowers of Thliphthisa sapphusA old individual of Th. sapphus with a thick lignified rootstock B flowers of Th. sapphus exhibiting the characteristic indumentum on the corolla (photographs by M. Sonnleitner).
Figure 4 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Figure 4 Habitat and habit of Thliphthisa sapphusA coastal cliffs of the Lefkátas Peninsula, the locality of Th. sapphus (photograph by M. Hofbauer) B cushion of Th. sapphus in limestone rock fissure (photograph by M. Sonnleitner) C loose cushion of Th. sapphus within regolith cover on limestone rocks, together with Lomelosia crenata subsp. dallaportae (photograph by M. Sonnleitner).
Figure 3 in Terrestrial invertebrates surviving San Ambrosio island's ecological catastrophe reinforce biogeographic affinities between the Juan Fernández and Desventuradas Islands
Figure 3. Land snail. Tornatellides (Ambrosiella) kuscheli (Achatinellidae) Endemic.
Supplementary material 1 from: Potapov GS, Kolosova YuS, Kondakov AV, Tomilova AA, Filippov BYu, Zubrii NA, Spitsyn VM, Spitsyna EA, Zheludkova AA, Gofarov MYu, Bovykina GV, Bolotov IN (2022) Phylogeography and ecology of bumble bees on Kolguev Island, a remote European Arctic landmass. ZooKeys 1122: 19-37. https://doi.org/10.3897/zookeys.1122.82993
Table S1
Figure 3 from: Wood KR, Appelhans MS, Wagner WL (2017) Melicope stonei, section Pelea (Rutaceae), a new species from Kaua'i, Hawaiian Islands: with notes on its distribution, ecology, conservation status, and phylogenetic placement. PhytoKeys 83: 119-132. https://doi.org/10.3897/phytokeys.83.13442
Figure 3 - Map of Kaua'i, Hawaiian Islands, with polygon indicating distribution of Melicope stonei in the Kōke'e forests.
Figure 4 from: Wood KR, Appelhans MS, Wagner WL (2017) Melicope stonei, section Pelea (Rutaceae), a new species from Kaua'i, Hawaiian Islands: with notes on its distribution, ecology, conservation status, and phylogenetic placement. PhytoKeys 83: 119-132. https://doi.org/10.3897/phytokeys.83.13442
Figure 4 - Phylogenetic placement of Melicope stonei K.R. Wood, Appelhans & W.L. Wagner based on four nuclear and two plastid markers (modified from Appelhans et al. 2014c). The phylogenetic tree only shows the Hawaiian radiation of Melicope. The terms Apocarpa, Cubicarpa, Megacarpa and Pelea refer to the former Hawaiian sections of Melicope/Pelea (Hartley & Stone 1989). The support values are displayed above the branches and the first value represents the Bayesian posterior probability values (pp), followed by the bootstrap values (bs) from the Maximum Likelihood analysis.
Figure 2 from: Wood KR, Appelhans MS, Wagner WL (2017) Melicope stonei, section Pelea (Rutaceae), a new species from Kaua'i, Hawaiian Islands: with notes on its distribution, ecology, conservation status, and phylogenetic placement. PhytoKeys 83: 119-132. https://doi.org/10.3897/phytokeys.83.13442
Figure 2 - Melicope stonei K.R. Wood, Appelhans & W.L. Wagner. A Male flower, lateral view with sepals and petals cut away to show antisepalous and antipetalous stamens B Male flower, top view C Female flower, lateral view with sepals and petals cut away to show staminodes and pistil D Female flower, top view E–F abaxial leaf surface along midvein of M. stonei showing variability of leaf vestiture G Melicope barbigera A. Gray abaxial leaf surface along midvein A–D from Wood 15101 (PTBG) E from Wagner & Wood 6891 (US) F from Wood 8432 (US) G from Wagner & Wood 6896 (US) (Illustration by Alice Tangerini).
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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.