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.
67
datasets available to search
ShareScore release 0.9.0
Dataset results
67 results for “moss-inhabiting”
Figure 15. Mniophila turcica. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 15. Mniophila turcica. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, median lobe of aedeagus in ventral view; E, median lobe of aedeagus in lateral view; F, median lobe of aedeagus in dorsal view; G, detailed view of the aedeagus apex (up: ventral view; below: dorsal view); H, spermatheca; I, vaginal palpi; J, tignum.
Figure 14. Mniophila taurica. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 14. Mniophila taurica. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, median lobe of aedeagus in ventral view; E, median lobe of aedeagus in lateral view; F, median lobe of aedeagus in dorsal view; G, detailed view of the aedeagus apex (up: ventral view; below: dorsal view); H, spermatheca; I, vaginal palpi; J, tignum.
Figure 12. Mniophila transcaucasica. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 12. Mniophila transcaucasica. A, holotype in dorsal view; B, holotype in lateral view; C, holotype in ventral view; D, voucher specimen assigned preliminarily as a possible M. transcaucasica in dorsal view; E, voucher specimen assigned preliminarily as a possible M. transcaucasica in lateral view; F, voucher specimen assigned preliminarily as a possible M. transcaucasica in ventral view; G, median lobe of aedeagus (holotype) in ventral view; H, median lobe of aedeagus (holotype) in lateral view; I, median lobe of aedeagus (holotype) in dorsal view; G, detailed view of the holotype aedeagus apex (up: ventral view; below: dorsal view); H, spermatheca of a voucher assigned preliminarily to M. transcaucasica; I, vaginal palpi of a voucher assigned preliminarily to M. transcaucasica; J, tignum of a voucher assigned preliminarily to M. transcaucasica.
Figure 11. Mniophila caucasica. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 11. Mniophila caucasica. A, holotype in dorsal view; B, holotype in lateral view; C, holotype in ventral view; D, voucher specimen assigned preliminarily as a possible M. caucasica in dorsal view; E, voucher specimen assigned preliminarily as a possible M. caucasica in lateral view; F, voucher specimen assigned preliminarily as a possible M. caucasica in ventral view; G, median lobe of aedeagus (holotype) in ventral view; H, median lobe of aedeagus (holotype) in lateral view; I, median lobe of aedeagus (holotype) in dorsal view; J, detailed view of the holotype aedeagus apex (up: ventral view; below: dorsal view); K, spermatheca of a voucher assigned preliminarily to M. caucasica; L, vaginal palpi of a voucher assigned preliminarily to M. caucasica; M, tignum of a voucher assigned preliminarily to M. caucasica.
Figure 13 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 13. Comparison of the head morphology of different Mniophila species. A, M. muscorum; B, M. haveli; C, M. wroblewskii; D, M. bosnica; E, M. turcica; F, M. caucasica; G, M. transcaucasica; H, M. taurica.
Figure 4 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 4. Results from the BioGeoBEARS ancestral range reconstruction mapping based on the phylogenetic tree inferred from the BEAST time-calibrated Bayesian phylogenetic analysis. Above: historic biogeography scenario based on the DEC+j model; below: a map showing the delimitations of the distributional areas used in the analysis: W, Western Europe; E, Central Europe; I, Italy; B, Balkan; P, Pontus; C, Caucasus.
Figure 1 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 1. Maps showing datapoints of sampling sites where voucher specimens for our study were collected. A, M. muscorum; B, M. wroblewskii; C, M. haveli (blue circles) and M. bosnica (yellow squares); D, M. turcica (orange squares), M. cf. caucasica (green circles) and M. cf. transcaucasica (purple diamond).
Figure 9. Mniophila muscorum. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 9. Mniophila muscorum. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, median lobe of aedeagus in ventral view; E, median lobe of aedeagus in lateral view; F, median lobe of aedeagus in dorsal view; G, detailed view of the aedeagus apex (up: ventral view; below: dorsal view); H, spermatheca; I, vaginal palpi; J, tignum.
Figure 10. Mniophila wroblewskii. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 10. Mniophila wroblewskii. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, median lobe of aedeagus in
Figure 3 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 3. Timetrees estimating the diversification times of Mniophila resulting on Bayesian phylogenetic analyses performed in BEAST2. The trees were calibrated using two different estimates of the Alticini/Galerucini split based on Zhang et al. (2018). A, a timetree from the minitree dataset calibrated using the younger calibration point (60.05 Mya); B, a timetree from the minitree dataset calibrated using the older calibration point (67.5 Mya); C, a timetree from the smalltree dataset calibrated using the younger calibration point (60.05 Mya); D, a timetree from the smalltree dataset calibrated using the older calibration point (67.5 Mya); E, F, timetrees of Mniophila extracted from (C) and (D) with confidence intervals.
Figure 7. Mniophila bosnica. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 7. Mniophila bosnica. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, median lobe of aedeagus in ventral view; E, median lobe of aedeagus in lateral view; F, median lobe of aedeagus in dorsal view; G, detailed view of the aedeagus apex (up: ventral view; below: dorsal view); H, spermatheca; I, vaginal palpi; J, tignum.
Figure 2 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 2. Majority-rule consensus phylogenetic tree of Mniophila inferred from the Bayesian analysis. Node labels represent Bayesian posterior probabilities and bootstrap values inferred from the ML analysis. Species are marked and named; tip labels indicate areas and countries of
Figure 6 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 6. Examples of biotopes and sampling sites inhabited by Mniophila: A, Massif Central, France; B, East Carpathians, Romania; C, Rhodopes, Bulgaria; D, Pontic Mountains, Georgia; E, example of a sissing sample prepared for sorting (Scotland, UK); F, Mniophila muscorum in its natural habitat (Alps, Austria, picture by Lukáš Janošík).
Figure 8. Mniophila haveli. A in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 8. Mniophila haveli. A, habitus in dorsal view; B, habitus in lateral view; C, habitus in ventral view; D, median lobe of aedeagus in ventral view; E, median lobe of aedeagus in lateral view; F, median lobe of aedeagus in dorsal view; G, detailed view of the aedeagus apex (up: ventral view; below: dorsal view); H, spermatheca; I, vaginal palpi; J, tignum.
Figure 5 in From Europe to Caucasus: cryptic diversity and unexpected biogeographic history of a Western Palaearctic moss-inhabiting flea beetle (Chrysomelidae: Mniophila)
Figure 5. Illustration of estimated dispersal routes of Mniophila colonizing Europe and the Caucasus from the Balkans in the Late Miocene (5.5 Mya), and Pliocene (2.6 Mya) based on the BioGeoBEARS analyses.
Figure 2 in Moss-inhabiting flea beetles (Coleoptera: Chrysomelidae: Galerucinae: Alticini) with description of a new genus from Cangshan, China
Figure 2. Scanning electron micrographs of Cangshanaltica nigra sp. nov. (A) Head, ventrolateral view; (B) head and prothorax, ventral view; (C) mouthparts, ventral view; (D) head, lateral view; (E) last maxillary palpomere; (F) maxillary palpi; (G) antennomeres 6–9.
Figure 5 in Moss-inhabiting flea beetles (Coleoptera: Chrysomelidae: Galerucinae: Alticini) with description of a new genus from Cangshan, China
Figure 5. Scanning electron micrographs of Cangshanaltica nigra sp. nov. (A) Protarsus, ventral view; (B) mesotarsus, ventral view; (C) apex of right elytron; (D) apex of left elytron; (E) base of right elytron with elytral lock; (F) sensillar patch on ventral side of right elytron; (G) base of left elytron with elytral lock.
Figure 8 in Moss-inhabiting flea beetles (Coleoptera: Chrysomelidae: Galerucinae: Alticini) with description of a new genus from Cangshan, China
Figure 8. Habiti of flea beetles. (A) Mniophila muscorum (Koch); (B) Paraminota lauribina Konstantinov; (C) Paraminotella nigrita Döberl and Konstantinov; (D) Phaelota mauliki Prathapan and Konstantinov.
Figure 4 in Moss-inhabiting flea beetles (Coleoptera: Chrysomelidae: Galerucinae: Alticini) with description of a new genus from Cangshan, China
Figure 4. Scanning electron micrographs of Cangshanaltica nigra sp. nov. (A) Foreleg; (B) middle leg; (C) metatarsus; (D) hind leg.
Figure 3 in Moss-inhabiting flea beetles (Coleoptera: Chrysomelidae: Galerucinae: Alticini) with description of a new genus from Cangshan, China
Figure 3. Scanning electron micrographs of Cangshanaltica nigra sp. nov. (A) Thorax and abdomen, ventral view; (B) thorax, lateral view; (C) pronotum, lateral view; (D) metasternum.
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.