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.
963
datasets available to search
ShareScore release 0.7.1
Dataset results
963 results for “Gobies”
FIGURE 15 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 15. Live coloration in its natural habitat of Gobius cruentatus. Photo by S. Guerrieri, Tuscany, Italy.
FIGURE 17 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 17. Live coloration in its natural habitat of Lesueurigobius friesii. Photo by R. Svensen, Stavanger, Norway.
FIGURE 14 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 14. Live coloration in its natural habitat of Didogobius splechtnai. Photo by A. Pagano, Sicily, Italy.
FIGURE 24 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 24. Live coloration in its natural habitat of Chromogobius quadrivittatus, photos by A) S. Engin, Aegean Sea, Turkey and B) M. Colombo, Area Marina Protetta Capo Caccia-Isola Piana, Alghero, Sardinia, Italy.
FIGURE 35 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 35. Live coloration in its natural habitat of Hazeus ingressus. Photo by S. Engin, Fethiye, Turkey, Levant.
FIGURE 10 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 10. Live coloration in its natural habitat of Gobius vittatus. Photo by S.V. Bogorodsky, Turkey, Aegean Sea.
FIGURE 27 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 27. Live coloration of Millerigobius macrocephalus. Broad pale crescent-shaped band across anterior nape behind eyes extending onto rear part of eyes. A) Transverse coloration pattern with pale vertical bars, photo by M. Kovačić, Karinsko ždrilo, eastern Adriatic Sea (in aquarium). B) Coloration pattern reduced to pale dorsal saddles while the rest of body lateral side is more or less uniformly colored or mottled brown, photo by J. Renoult, Corsica, France. C) Anterior nostril without tentacle, photo by J. Renoult, Argelès-sur-Mer, Southern France.
FIGURE 9 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 9. Live coloration in its natural habitat of Tridentiger trigonocephalus. Photo by Sascha Schulz/iNaturalist Australasian Fishes Project, Victoria, Australia.
FIGURE 23 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals
FIGURE 23. Head clearly depressed (dorsoventrally flattened). A) Chromogobius quadrivittatus, photo by M. Colombo. B) Chromogobius zebratus, photo by M. Kovačić, photographed in a tank.
Distribution. Main range from SE Altai and Tuva (S Russia), through Mongolian Great Lakes Depression, to Gobi Altai in W & S Mongolia, but also several enclaves located in E Mongolia, S Mongolia (Trans-Altai Gobi) and N China (Dzungarian and Southern Gobi in Xinjiang and Inner Mongolia=Nei Mongol). in Ochotonidae
Distribution. Main range from SE Altai and Tuva (S Russia), through Mongolian Great Lakes Depression, to Gobi Altai in W & S Mongolia, but also several enclaves located in E Mongolia, S Mongolia (Trans-Altai Gobi) and N China (Dzungarian and Southern Gobi in Xinjiang and Inner Mongolia=Nei Mongol).
Data from: Prey preference of snow leopard (Panthera uncia) in South Gobi, Mongolia
Accurate information about the diet of large carnivores that are elusive and inhabit inaccessible terrain, is required to properly design conservation strategies. Predation on livestock and retaliatory killing of predators have become serious issues throughout the range of the snow leopard. Several feeding ecology studies of snow leopards have been conducted using classical approaches. These techniques have inherent limitations in their ability to properly identify both snow leopard feces and prey taxa. To examine the frequency of livestock prey and nearly-threatened argali in the diet of the snow leopard, we employed the recently developed DNA-based diet approach to study a snow leopard population located in the Tost Mountains, South Gobi, Mongolia. After DNA was extracted from the feces, a region of ~100 bp long from mitochondrial 12S rRNA gene was amplified, making use of universal primers for vertebrates and a blocking oligonucleotide specific to snow leopard DNA. The amplicons were then sequenced using a next-generation sequencing platform. We observed a total of five different prey items from 81 fecal samples. Siberian ibex predominated the diet (in 70.4 % of the feces), followed by domestic goat (17.3 %) and argali sheep (8.6 %). The major part of the diet was comprised of large ungulates (in 98.8 % of the feces) including wild ungulates (79 %) and domestic livestock (19.7 %). The findings of the present study will help to understand the feeding ecology of the snow leopard, as well as to address the conservation and management issues pertaining to this wild cat.
FIGURE 5 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman
FIGURE 5. Head dorsal view of Oxyurichthys omanensis, showing the upper lip constriction at premaxillary symphysis. A) ZM-CBSU S105-2, stained; B) ZM-CBSU S105-4; C) ZM-CBSU S105-8; and D) ZM-CBSU S105-3, paratypes.
FIGURE 4 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman
FIGURE 4. Live specimens of Oxyurichthys omanensis collected from Yeti, northern Oman. Upper) ZM-CBSU S105-1, 54.5 mm SL, male, paratype; lower) ZM-CBSU S105-3, 61.9 mm SL, male, paratype.
FIGURE 3 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman
FIGURE 3. Oxyurichthys omanensis, paratypes, A: ZM-CBSU S105-14, male, 63.25 mm SL, B: ZM-CBSU S105-10, male, 46.36 mm SL, collected from Yeti, northern Oman.
FIGURE 7 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman
FIGURE 7. Geographic distribution of Oxyurichthys omanensis (yellow circle: Yeti, northern Oman), O. cornutus and O. ophthalmonema [records from Froese & Pauly (2022), Pezold & Larson (2015), Isari et al. (2017), Chang et al. (2017), and Viswambharan et al. (2015)].
FIGURE 1 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman
FIGURE 1. Bayesian Inference (BI) and Maximum Likelihood (ML) phylogeny of the genus Oxyurichthys reconstructed based on COI sequences, showing phylogenetic placement of the new species. The values beside the branches before and after a slash are BI posterior probabilities and ML bootstrap values, respectively. Grey bars to the right indicate species delimitation results from ABGD, ASAP, mPTP, bPTP and SP.
FIGURE 6 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman
FIGURE 6. Head lateral line system (left side, composite drawing based on more than one specimen) of Oxyurichthys omanensis collected from Yeti, northern Oman. Terminology is given in the text.
FIGURE 33 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 33. Ponticola syrman. ZM-CBSU S065.2-1, 183.2 mm SL, off Neka, Mazandaran Province, Iran (Zarei et al. 2022a).
FIGURE 28 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 28. Ponticola goebelii. ZM-CBSU S014-1, female, 55.4 mm SL, off Anzali, Gilan Province, Iran.
FIGURE 27 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 27. Distributions of (A) Ponticola hircaniaensis, Ponticola iranicus, Ponticola patimari, and Ponticola cyrius, (B) Ponticola gorlap, (C) Ponticola goebelii, (D) Ponticola syrman, and (E) Proterorhinus nasalis in the Caspian Sea basin.
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.