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249 results for “East Mediterranean”
Fig. 56. Aphaniosoma melitense Ebejer, 1993 in The genus Aphaniosoma Becker, 1903 (Diptera: Chyromyidae) in the Eastern Mediterranean and Middle East, with descriptions of new species
Fig. 56. Aphaniosoma melitense Ebejer, 1993, ♂ (SMNHTAU), habitus, lateral view.
Fig. 21. Aphaniosoma cypriense Ebejer, 2021 in The genus Aphaniosoma Becker, 1903 (Diptera: Chyromyidae) in the Eastern Mediterranean and Middle East, with descriptions of new species
Fig. 21. Aphaniosoma cypriense Ebejer, 2021, ♂, paratype (MJE), head and thorax, dorsal view.
Fig. 2 in The genus Aphaniosoma Becker, 1903 (Diptera: Chyromyidae) in the Eastern Mediterranean and Middle East, with descriptions of new species
Fig. 2. Aphaniosoma acitergum sp. nov. ♂, paratype (SMNHTAU), thorax, dorsal view.
Fig. 10. Aphaniosoma approximatum Becker, 1903 in The genus Aphaniosoma Becker, 1903 (Diptera: Chyromyidae) in the Eastern Mediterranean and Middle East, with descriptions of new species
Fig. 10. Aphaniosoma approximatum Becker, 1903, ♀ (MJE), head and thorax, dorsal view.
Data from: A strong east-west Mediterranean divergence supports a new phylogeographic history of the carob tree (Ceratonia siliqua, Leguminosae) and multiple domestications from native populations
Aim: Phylogeography of fruit trees is challenging due to the recurrent exchanges between domesticated and wild populations. Here we tested the eastern refugium hypothesis (ERH) for the carob tree, Ceratonia siliqua, which supports its natural and domestication origins in the Eastern Mediterranean and a feral origin in the West. Location: Mediterranean basin Taxon: Ceratonia siliqua L., Leguminosae Methods: Divergence time of the divergence between the carob tree and its sister species (C. oreothauma) was estimated based on two nuclear and one plastid sequences. Variation from four plastid regions and 17 nuclear microsatellite loci were used to decipher genetic structure in the carob tree and to test coalescent-based models by an Approximate Bayesian Computation (ABC) approach. We assessed our hypotheses by examining palaeobotanical records and hindcasting the past distribution of the carob tree at the Mid-Holocene, Last Glacial Maximum (LGM) and Last Interglacial (LIG) using species distribution modelling (SDM). Results: The split between C. oreothauma and C. siliqua was estimated at 6.4 Ma, and a first divergence within C. siliqua at 1.3 Ma. After a presence since the Oligocene, Ceratonia was found in the Western and the Eastern Mediterranean in the fossil records during the Pleistocene. Plastid and nuclear markers, characterized by low allelic richness, revealed a strong west-east genetic structuring. Approximate Bayesian computation (ABC) analyses rejected the ERH. Main conclusions: Our study supports a severe population decline during LIG. The strong west-east divergence and the occurrence of four lineages within C. siliqua provided support for a new hypothesis of multiple domestications of the carob tree from native populations throughout the Mediterranean basin.
FIGURE 12 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 12. Haploschendyla grantii (black circles), Nannophilus eximius (green circles), Schendyla mediterranea (blue circles) and S. walachica (red arrows), distribution records in Peloponnisos.
FIGURE 9 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 9. Scolopendra cingulata (black circles) and S. dalmatica (red arrows), distribution records in Peloponnisos.
FIGURE 6 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 6. Lithobius tenebrosus (black circles), L. viriatus (green circles), L. micropodus (red arrows) and L. microps (blue circles), distribution records in Peloponnisos.
FIGURE 16 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 16. Chorotypes and endemic species rates of the centipede fauna of Peloponnisos. END: Endemic, EME: East Mediterranean, EUR: European, MED: Mediterranean, SEU: South European, WPA: West Palearctic.
FIGURE 15 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 15. Geophilus insculptus (black circles), G. unguiculatus (red circle), Pachymerium ferrugineum (blue circle), Pleurogeophilus mediterraneus (red arrows), Stenotaenia cf. naxia (black arrow), S. rhodopensis (blue arrows), Strigamia crassipes (green arrow) and S. transsilvanica (green circle), distribution records in Peloponnisos.
FIGURE 3 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 3. Scutigera coleoptrata (black circles), Eupolybothrus litoralis (green circles), E. transsylvanicus (blue circles) and E. werneri (red arrows), distribution records in Peloponnisos.
FIGURE 14 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 14. Eurygeophilus multistiliger (Verhoeff, 1899), female found on mountain plateau west of Sitaina (loc. 25), 1330 m, 30 Oct. 2014 (see Fig. 13). (a) Distal three articles of the right antenna; (b) Forcipular segment, ventral view; (c) Head, first articles of the antennae, and forcipular segment, dorsal view; (d) Coxopleuron and sternite of ultimate leg-bearing segment, ventral view; (e) Coxopleuron and tergite of ultimate leg-bearing segment, dorsal view; (f) sternites of leg-bearing segment I, II, and III; (g) sternite of leg-bearing segment V; (h) sternite of leg-bearing segment XII; (i) sternites of leg-bearing segment XX–XXV.
FIGURE 2 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 2. New sampling sites in Parnonas Mt. (blue circles) in the East Peloponnisos. Numbers represent different localities as referred in the text.circle
FIGURE 13 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 13. Clinopodes flavidus (black circles), C. trebevicensis (blue circles) and Eurygeophilus multistiliger (red arrows), distribution records in Peloponnisos.
FIGURE 1 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 1. All sampling sites in Peloponnisos (black stars) where centipedes were collected based on literature.
FIGURE 11 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 11. Dignathodon microcephalum (black circle), Henia athenarum (green circles), H. devia (blue circles), H. illyrica (red arrows), H. bicarinata (blue arrows) and H. pulchella (black arrow), distribution records in Peloponnisos.
FIGURE 7 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 7. Lithobius aeruginosus (black circles), L. crassipes (green circles), L. nudus (blue circles) and Pleurolithobius patriarchalis (red arrows), distribution records in Peloponnisos.
FIGURE 5 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 5. Lithobius latro (green circle), L. lucifugus (blue circles), L. muticus (red arrows) and L. nigripalpis (black circles), distribution records in Peloponnisos.
FIGURE 8 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 8. Cryptops anomalans (black circles), C. hortensis (green circles), C. medius (blue circles) and C. parisi (red arrows), distribution records in Peloponnisos.
FIGURE 10 in The centipedes of Peloponnisos and first records of genus Eurygeophilus in the East Mediterranean (Myriapoda: Chilopoda)
FIGURE 10. Himantarium gabrielis (black circles) and Bothriogaster signata (green circles), distribution records in Peloponnisos.
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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
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.