Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
688
datasets available to search
ShareScore release 0.9.0
Dataset results
688 results for “Arabian Peninsula”
Figure 4 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 4 A mesosoma of L. omanensis in profile showing propodeal spines, CASENT0922278 (Michele Esposito) B body of L. frauenfeldi in profile propodeal and petiolar spines, CASENT0909884 (Zach Lieberman) C body of L. nigrescens in profile, CASENT0912400 (Will Ericson) D body of L. obtusa in profile showing reduced petiolar spines, CASENT0280477 (Shannon Hartman), www.AntWeb.org.
Figure 3 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 3 A mesosoma of L. dolabellae in dorsal view showing mesonotun, CASENT0909887 (Zach Lieberman) B body of L. dolabellae in profile propodeal and petiolar spines, CASENT0909887 (Zach Lieberman) C body of L. dhofara in profile showing surface sculpture and propodeal spines, CASENT0906340 (Estella Ortega) D mesosoma of L. karawaiewi in profile showing propodeal spines, CASENT0912405 (Will Ericson) E body of L. nigra in profile showing propodeal and petiolar spines, CASENT0179896 (Erin Prado) F Body of L. spinisquama in profile showing petiolar spines, CASENT0922270 (Michele Esposito), www.AntWeb.org.
Figure 1 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 1 A head of L. elbazi sp. nov. in profile, CASENT0922860 (Michele Esposito) B head of L. gracilicornis in profile, CASENT0906458 (Cerise Chen) C body of L. arabica in profile, CASENT0906264 (Estella Ortega) D body of L. elbazi sp. nov. in profile, CASENT0922860 (Michele Esposito) E body of L. elegantissima in profile, CASENT0922860 (Michele Esposito) F body of L. gracilicornis in profile, CASENT0906458 (Cerise Chen), www.AntWeb.org.
Figure 2 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 2 A body of L. elegantissima in profile, CASENT0922860 (Michele Esposito) B head of L. elegantissima in full-face view, CASENT0922860 (Michele Esposito) C body of L. bipartita in profile, CASENT0903167 (Zach Lieberman) D body of L. dolabellae in profile, CASENT0249883 (Shannon Hartman) E mesosoma of L. dammama in dorsal view showing mesonotun, CASENT0906337 (Estella Ortega) F body of L. dammama in profile showing propodeal and petiolar spines, CASENT0906337 (Estella Ortega), www.AntWeb.org.
Figure 9 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 9 Zoogeographic boundaries between the Afrotropical and the Palearctic regions of the Arabian Peninsula, AE: United Arab Emirates, BH: Bahrain, KW: Kuwait, OM: Oman, QA: Qatar, SA: Saudi Arabia, YE: Yemen.
Figure 5 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 5 A body of L. obtusa in profile showing propodeum and gastral pilosity, CASENT0905150 (Zach Lieberman) B body of L. carbonaria in profile showing propodeal spines and gastral pilosity, CASENT0906261 (Estella Ortega) C head of L. validiuscula in full-face view showing pilosity on posterior margin, CASENT0280473 (Shannon Hartman) D head of L. canescens in full-face view showing pilosity on posterior margin, CASENT0905153 (Zach Lieberman), www.AntWeb.org.
Figure 2 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 2 Schematic illustration of A body measurements B (lateral) and C (dorsal) head measurements, and D (ventral) head and gular disc (as defined in Kottelat (2020)) measurements. For a detailed description see Suppl. material 1: Table S2. 1, standard length (SL); 2, body depth at dorsal-fin origin; 3, minimum caudal-peduncle depth; 4, maximal caudal-peduncle depth; 5, predorsal length; 6, prepelvic length; 7, preanal length; 8, pectoral – pelvic distance; 9, pelvic – anal distance; 10, vent distance; 11, caudal-peduncle length; 12, dorsal-fin depth; 14, depth of 1st branched dorsal-fin ray; 19, anal-fin depth; 20, pectoral-fin length; 21, pelvic-fin length; 22, length of axillary scale; 23, head length; 24, head depth at nape; 25, head depth at eye; 26, head width at posterior end of operculum; 27, head width at eyes; 28, width between nostrils; 29, snout length; 30, eye horizontal diameter; 31, orbit – operculum distance; 32, interorbital width; 33, anterior barbel length; 34, posterior barbel length; 35, disc length; 36, length of torus; 37, length of pulvinus; 38, length of labrum; 39, disc width; 40, width between anterior barbels; 41, width of mouth; 42, width of torus; 43, width of pulvinus. Not illustrated are: 13, depth of last unbranched dorsal-fin ray; 15, depth of 2nd branched dorsal-fin ray; 16, depth of 3rd branched dorsal-fin ray; 17, depth of 4th branched dorsal-fin ray; 18, depth of 5th branched dorsal-fin ray.
Figure 11 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 11 ML tree based on CO1 sequences (611 bp; MT946130 paralectotype of G. makiensis, 451 bp), showing phylogenetic relationships of Garra species from Awash with congeneric lineages from Africa and the Middle East. Numbers above branches represent Bayesian posterior probability (BPP) of BI/bootstrap values (bs) of ML. Only values above .70/70 are shown. On the top left, small map showing the distribution of Clade A in Ethiopia and the Arabian Peninsula; distribution of species on the Arabian Peninsula according to Krupp (1983) (source of map: Google Earth Pro v. 7.3). Colours of branches in Clade A correspond to those in the map. Countries of origin of the sequences are represented with ISO codes. The topology of the BI analysis is given in Suppl. material 2: Fig. S4.
Figure 5 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 5 Garra makiensis, alive, NMW 99224, 52.0 mm SL, Awash River at Lafessa (S6). Photograph by W. Graf.
Figure 9 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 9 Axial skeletons and supraneural bones in Garra makiensis. ANMW 99223, 56.0 mm SL, Awash River at Wonji (S7), 10 showing last predorsal abdominal vertebra and 21 last abdominal vertebra, total vertebrae 36:21+15, B lectotype of G. makiensis, same specimen as in Fig. 4A, 10 showing last predorsal abdominal vertebra and 20 last abdominal vertebra, total vertebrae 36:20+16, The Trustees of the Natural History Museum, London, C syntype of G. rothschildi, same specimens as in Fig. 4B, 10 showing last predorsal abdominal vertebra and 21 last abdominal vertebra, total vertebrae 37:21+16, The Muséum national d'Histoire naturelle, Paris. Arrows showing position and numbers of preanal caudal vertebrae.
Figure 10 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 10 Habitat of Garra makiensis in the Awash River drainage and sampling site in the Lower Meki River where G. makiensis was absent. A Awash River at Lafessa (S6, 1,608 m a.s.l.), B Awash River at Yimre (S10, 797 m a.s.l.), C Middle Borkana River (T3, 1,417 m a.s.l.), D Lower Meki River, upstream of Meki town (1,663 m a.s.l.).
Supplementary material 1 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Supplementary tables
Supplementary material 2 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Supplementary figures
Figure 1 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 1 Map of the study area in the Northern and Central Main Ethiopian Rift (NMER, CMER) showing sampling sites and examined material; thick lines denoting Main Rift faults, dashed lines showing transversal faults (Bonini et al. 2005). Study sites: S1–S6 and T1–T8 Awash River drainage, G1 Gotta River (type locality of G. rothschildi), M1 Meki River (type locality of G. makiensis), Z1–Z2 Lake Ziway, and L1 Lake Langano. Sampling sites in red showing localities where G. makiensis is known from examined material or was recorded during recent surveys. The small inserted map showing known distribution range of G. makiensis in the Awash and Meki River drainages.
Figure 8 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 8 Ventral view of head, in Garra makiensis from the Awash River. A same specimen as in Fig. 6B, B same specimen as in Fig. 6C, C same specimen as in Fig. 6D.
Figure 3 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 3 Results of APCA and BDFA, comparing Garra species from the Awash River with type specimens of G. makiensis from the Meki River (lectotype: BMNH 1905.7.25.87, paralectotype: BMNH 1905.7.25.88). Analyses are based on 17 morphometric and six meristic characters as given in Suppl. material 1: Table S3.
Figure 7 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 7 Lateral and dorsal view of head, in Garra makiensis from the Awash River. A and D same specimen as in Fig. 6B, B and E same specimen as in Fig. 6C, C and F same specimen as in Fig. 6D.
Figure 6 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 6 General appearance and morphological variability of Garra makiensis from the Awash River. ANMW 99485, female, 85.8 mm SL, Adayitu (S13), BNMW 99485, female, 82.2 mm SL, Adayitu (S13), CNMW 99491, male, 106.1 mm SL, Dubti (S14), DNMW 99504, female, 147.9 mm SL, Jara River (T3).
Figure 4 from: Englmaier GK, Viñuela Rodríguez N, Waidbacher H, Palandacic A, Tesfaye G, Gessl W, Meulenbroek P (2020) New data on Garra makiensis (Cyprinidae, Labeoinae) from the Awash River (Ethiopia) with remarks on its relationships to congeners on the Arabian Peninsula. ZooKeys 984: 133-163. https://doi.org/10.3897/zookeys.984.55982
Figure 4 General appearance of Garra makiensis. ABMNH 1905.7.25.87, lectotype of G. makiensis, female, 67.1 mm SL, Maki [Meki] River, Ethiopia, The Trustees of the Natural History Museum, London, BMNHN-1905-0246, syntype of G. rothschildi, 135.3 mm SL, Gotta [Gota] River, Ethiopia, The Muséum national d'Histoire naturelle, Paris.
FIGURE 50 in The Canacidae of the Arabian Peninsula (Diptera: Brachycera: Carnoidea)
FIGURE 50. Countries of the Arabian Peninsula.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.