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.
2,507
datasets available to search
ShareScore release 0.7.1
Dataset results
2,507 results for “Species list”
FIGURE 6 in The red-listed species Thamnurgus rossicus in East Europe is a synonym of the rare Central European species, T. petzi (Curculionidae: Scolytinae)
FIGURE 6. Phylogenetic trees resulting from three separate parsimony analyses of COI, EF1α and CAD nucleotides. Bootstrap support values are given on the nodes. Branch lengths are drawn to scale for each data set.
FIGURE 7 in The red-listed species Thamnurgus rossicus in East Europe is a synonym of the rare Central European species, T. petzi (Curculionidae: Scolytinae)
FIGURE 7. Host plants attacked by T. petzi. A, Aconitum napellus, with arrow pointing at entrance hole. Note the necrotic pattern along the stem, which reflects the length and direction of the egg tunnel. B, entrance hole at the base of leaf petiole in Delphinium cuneatum.
FIGURE 1 in Synthesis of Brazilian Collembola: an update to the species list
FIGURE 1. Number of species of Brazilian Collembola: bars indicate total number of species recorded in each family (values in gray); line indicates the species with known distribution restricted to Brazil (values in black).
FIGURE 1 in Species List And Habitat Preference Of Mesostigmata Mites (Acari, Parasitiformes) In Latvia
FIGURE 1: Similarity of habitats in occurrence of Mesostigmata species.
Vascular plant species list of managed oak stands in the Bory Stobrawskie Forest (SW Poland, Central Europe)
<p><span lang="EN-GB">This is the second version of the species list, which has been expanded to include additional ecological and statistical information for each species. </span></p> <p><span lang="EN-GB">The data were collected in the summer of 2023 from 100 circular plots (each measuring 314 m²) located in forest stands aged between 41 and 180 years, which were dominated by oak trees —pedunculate oak (<em>Quercus robur</em> L.) and/or sessile oak (<em>Quercus petraea</em> (Matt.) Liebl.). The study area was situated in the Bory Stobrawskie mesoregion in the Opole voivodeship, Poland (50°31'-50°59'N, 17°40'-18°35'E).</span></p> <p><span lang="EN-GB">The species list includes the percentage frequency, fidelity, and average cover values, which were calculated using the JUICE software for all plots and for plots located in middle-aged (41–80 years) and old (100–180 years) stands. For each species, information is also provided on: life form, life strategy and forest species category.</span></p> <p><span lang="EN-GB">The newly added data includes information on whether a species is considered an ancient forest species, its ecological indicator values for soil moisture, soil nitrogen, soil reaction, light, and temperature, and </span>its rarity in Poland.</p> <p> </p>
FIGURE 3 in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 3. Tenuibiotus bozhkae sp. nov.: A, Claws of the third pair of legs of the holotype (slide No. 5423). The arrow indicates the long common tract characteristic of the claws of the tenuis-type. It is evident that, due to the orientation of the claws, the angle between the main and secondary branches and the length of the common tracts may appear different in claws of the same pair of legs. B, Claws of the first pair of legs of the holotype (slide No. 5423). C, D, Claws of the fourth pair of legs of two paratypes (slide No. 5423). In C the arrow indicates the dentate margin of the lunules. In D the arrows indicate a pair of small gibbosities present on each hind leg. (Scale bars = 10 µm).
FIGURE 9. A, B in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 9. A, B, Hypsibius dujardini (slide No.2728). A, Bucco-pharyngeal apparatus. B, Claws of the second pair of legs. C, D, Hypibius allisoni (slide No. 4338). C, Bucco-pharyngeal apparatus (arrow indicates the small microplacoid). D, Claws of the third pair of legs. (Scale bars = 10 µm).
FIGURE 6. A, B, C in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 6. A, B, C, Xerobiotus pseudohufelandi (slide No. 2504): A, Bucco-pharyngeal apparatus. B, Claws of the second pair of legs; C, claws of the third pair of legs. D, E, Xerobiotus xerophilus (paratype, slide No. 2785): D, Bucco-pharyngel apparatus. E, Claws of the first and second pairs of legs. (Scale bars = 10 µm).
FIGURE 8. A, B in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 8. A, B, Hypsibius iskandarovi (paratype, slide No. 4334). A, Bucco-pharyngeal apparatus; septulum and pseudoseptulum are visible (arrow). B, Claws of the fourth pair of legs; the lunules (arrow) are visible. C, D, Hypsibius septulatus (holotype, slide No. 4780). C, Bucco-pharyngeal apparatus. D, Claws of the third pair of legs; the cuticular bar is visible (arrow). (Scale bars = 10 µm).
FIGURE 2 in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 2. Tenuibiotus bozhkae sp. nov.: A, Bucco-pharyngeal apparatus of a paratype (slide No. 5423). B, Bucco-pharyngeal apparatus of the holotype (slide No. 5423); C, Detail of the bucco-pharyngeal apparatus of a paratype (slide No. 5423); the first and the second macroplacoid appear clearly separated. D, New-born hatchling (slide No.5424). (Scale bars = 10 µm).
FIGURE 7. A–D in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 7. A–D, Hypsibius pallidoides sp. nov.: A, Bucco-pharyngeal apparatus of the holotype (slide No. 5430) (the arrow indicates the very small septulum). B, Bucco-pharyngeal apparatus of a paratype (slide No. 5430) (the arrow indicates the very small septulum). C, D, Claws of the second pair of legs of the holotype. E, Hypsibius pallidus: Bucco-pharyngal apparatus (slide No.1251). (Scale bars = 10 µm).
FIGURE 1 in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 1. Regions of Ukraine where tardigrades were studied. See Table 1 for number and names of the regions studied.
FIGURE 5. A–C in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 5. A–C, Xerobiotus euxinus sp. nov.: A, Bucco-pharyngeal apparatus of a parataype (slide N. 5431). B, Claws of the second pair of legs holotype (slide No. 5431). C, Claws of the hind legs; arrow indicates one visible lunula (paratype on slide No. 5431). (Scale bars = 10 µm).
FIGURE 4. A–C in Annotated list of Tardigrada records from Ukraine with the description of three new species
FIGURE 4. A–C, Tenuibiotus bozhkae sp. nov.: details of the egg (slide No 5424). A, The arrows indicate the ring of dots at basis of each process. B, The arrow indicates a very long process. C, The arrow 'a' indicates the ring of dots at basis of each process; the arrows 'b' indicate the very faint reticular design of the egg shell. D, Tenuibiotus willardi: bucco-pharyngeal apparatus of the holotype (slide No. 2114). (Scale bars = 10 µm).
FIGURES 10–11 in Redescription of Zinagon chilensis (Silvestri, 1903) from Chile, with a species list of Iulomorphidae from the Southern Hemisphere (Diplopoda: Spirostreptida: Epinannolenidea)
FIGURES 10–11. Zinagon chilensis (Silvestri, 1903), syntype male of Z. osorno Chamberlin, 1957, from Osorno, 10 km east of Puyehue. 10: body end with telson, right lateral view, 11: head and first body rings, right lateral view. Without scale. (photo by Z. Korsós)
FIGURES 12–13 in Redescription of Zinagon chilensis (Silvestri, 1903) from Chile, with a species list of Iulomorphidae from the Southern Hemisphere (Diplopoda: Spirostreptida: Epinannolenidea)
FIGURES 12–13. Zinagon chilensis (Silvestri, 1903), pair of vulvae of syntype female of Z. osorno Chamberlin, 1957, from Osorno, 10 km east of Puyehue. 12: anterior view, 13 posterior view. Scale 0.5 mm.
FIGURES 23–37 in Taxonomic study of Central Asian species of the genus Macropsis Lewis, 1836 (Homoptera: Auchenorrhyncha: Cicadellidae: Macropsinae). III: Descriptions of two new willow-dwelling species, new synonym, annotated check-list, and key to species
FIGURES 23–37. Macropsis milkoi sp. n., oscillograms of calling signals of males from different localities. 23, 25, 31–32, 37―Ferghana Mtn. Range, Urumbash River; 24, 26–27, 34―Chatkal Mtn. Range, Ala-Buka River; 28–29, 35―Alay Mtn. Range, Kurshab River (type locality); 30, 36―Turkestan Mtn. Range, Lyaylyak River. Faster oscillograms of the parts of signals indicated as "25–26", "31–32", and "34–37" are given under the same numbers.
FIGURES 89–104 in Taxonomic study of Central Asian species of the genus Macropsis Lewis, 1836 (Homoptera: Auchenorrhyncha: Cicadellidae: Macropsinae). III: Descriptions of two new willow-dwelling species, new synonym, annotated check-list, and key to species
FIGURES 89–104. Macropsis elaeagni Em., oscillograms of calling signals of males from different localities. 89, 95―Kara- Bulak East of Isfana, South Kyrgyzstan; 90, 96–97―Almaty, Kazakhstan, (96–97―syllables of different shape from the same signal); 91, 98–100―Chatkal Mtn. Range, 30 km North-East of Kerben, Kyrgyzstan (98–100―syllables of different duration in the males from the same sample); 92, 101–102―Ferghana Mtn. Range, North-East of Bazar-Korgon, Kyrgyzstan; 93, 103―Guberlya River, South Urals, Russia; 94, 104―Moscow, ornamental Elaeagnus angustifolia. Faster oscillograms of the parts of signals indicated as "95–104" are given under the same numbers.
Species list of vascular plants observed on Peberholm 1999–2020
<p><span>Peberholm is a constructed Danish island in the Øresund strait. It was primarily constructed by calcareous clay from the seafloor and is traversed by a highway and a railway. Being constructed from material without a seed bank, Peberholm constituted a good opportunity to study primary succession in an anthropogenic context. In this study, data from a survey of the vascular plant community of Peberholm was studied. The data span a 22-year period, between 1999 and 2020. The development of the flora was analysed with regards to indicators for environmental factors and vegetation types, as well as occurrence of alien species or species of conservation concern. Peberholm experienced a rapid succession during its first 5 years. The effects of the initial ground disturbance quickly wore off, resulting in a relative decline in plant communities associated with ruderal land. These highly anthropogenic habitats were replaced with grasslands. The shrubification also began early on. The rapid initial changes were then replaced with a much slower but also more continuous change, resulting in the development of both more natural grasslands and an increased shrubification. Although several rare or threatened species colonized Peberholm from the beginning, the conservation value of the flora on a whole increased during the succession process of forming more natural vegetation types. The succession process demonstrated at Peberholm has more in common with the succession at urban soils than with naturally occurring primary succession.</span></p>
FIGURE. DnaSP DNA polymorphism analysis - Nucleotide variability (Pi) comparison between Strobilanthes lupulina and S. glandulata. The window length and step size were set to 600bp and 200bp respectively. The most varying regions and the commonly used barcoding regions are listed against the base-pair differences found. in Strobilanthes glandulata (Acanthaceae), a new species from Sri Lanka based on the morphological and molecular evidences
FIGURE. DnaSP DNA polymorphism analysis - Nucleotide variability (Pi) comparison between Strobilanthes lupulina and S. glandulata. The window length and step size were set to 600bp and 200bp respectively. The most varying regions and the commonly used barcoding regions are listed against the base-pair differences found.
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.