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.
14
datasets available to search
ShareScore release 0.9.0
Dataset results
14 results for “Ceropales”
FIGURE 5 in Ceropales pallida sp. nov. (Hymenoptera, Pompilidae, Ceropalinae) described from northern Europe
FIGURE 5. Distribution map for Ceropales pallida sp. nov. in Fennoscandia based on the studied material.
FIGURE 1. A–C in Ceropales pallida sp. nov. (Hymenoptera, Pompilidae, Ceropalinae) described from northern Europe
FIGURE 1. A–C. Habitus of Ceropales. A. Holotype male, Ceropales pallida sp. nov.; B. Female, C. pallida sp. nov; C. Female, C. maculata.
FIGURE 4 in Ceropales pallida sp. nov. (Hymenoptera, Pompilidae, Ceropalinae) described from northern Europe
FIGURE 4. ID-tree of Ceropales from selected sequences of COI-5P markers, based on neighbor joining clustering, using the Kimura 2-parameter substitution model. Sample ID, sex, locality, sequence length, and their respective BINs are presented for each specimen.
FIGURE 3. A–B in Ceropales pallida sp. nov. (Hymenoptera, Pompilidae, Ceropalinae) described from northern Europe
FIGURE 3. A–B. Genitalia, ventral view; A. Ceropales pallida sp. nov.; B. C. maculata. C–D. Subgenital plate (sternite 8) of male, dorsal view; C. Ceropales pallida sp. nov.; D. C. maculata. E–F. Subgenital plate (sternite 8) of male, lateral view; E. Ceropales pallida sp. nov.; F. C. maculata.
FIGURE 2. A–B in Ceropales pallida sp. nov. (Hymenoptera, Pompilidae, Ceropalinae) described from northern Europe
FIGURE 2. A–B. Head of male in frontal view; A. Ceropales pallida sp. nov.; B. C. maculata. C–D. Head of female in dorsal view; C. Ceropales pallida sp. nov.; D. C. maculata.
FIGURE 1. Ceropales species, habitus photographs. a in Two new species of Ceropales (Ceropales) Latreille (Hymenoptera, Pompilidae), with a key to species from China
FIGURE 1. Ceropales species, habitus photographs. a. Ceropales (C.) longisulcata Lu & Li, sp. nov., ♀. Habitus, lateral view. b–c. Ceropales (C.) longisulcata Lu & Li, sp. nov., b. ♀. Habitus, lateral view. c. ♂. Habitus, lateral view. Scale bar: a = 1 mm; b = 1.35 mm; c = 1.125 mm.
FIGURE 4. Ceropales species. a–f in Two new species of Ceropales (Ceropales) Latreille (Hymenoptera, Pompilidae), with a key to species from China
FIGURE 4. Ceropales species. a–f. Ceropales (C.) yunnanensis Lu & Li, sp. nov., ♂. a. Head, lateral view. b. Fore tarsus II–V and inner claw. c. Gastral sternum IX, dorsal view. d. Sternum IX, lateral view. e. Genitalia, ventral view. f. Genitalia, dorsal view. g. Ceropales (C.) longabdominalis Jiang et Li, ♀. Metasoma, lateral view. Scale bar: a = 1 mm; b = 0.27 mm; c–d = 0.31 mm; e–f = 0.33 mm; g = 3.04 mm.
FIGURE 3 in Two new species of Ceropales (Ceropales) Latreille (Hymenoptera, Pompilidae), with a key to species from China
FIGURE 3. Ceropales (C.) yunnanensis Lu & Li, sp. nov., ♀. a. Head, frontal view. b. Head, upper frons. c. Head, dorsal view. d. Head, lateral view. e. Mesosoma, lateral view. f. Scutum, metanotum, metapostnotum and propodeum, dorsal view. g. Metasoma, lateral view. h. Wings. Scale bar: a = 0.47 mm; b = 0.32 mm; c = 0.38 mm; d = 0.43 mm; e = 0.51 mm; f = 0.48 mm; g = 0.61 mm; h = 1 mm.
FIGURE 2 in Two new species of Ceropales (Ceropales) Latreille (Hymenoptera, Pompilidae), with a key to species from China
FIGURE 2. Ceropales (C.) longisulcata Lu & Li, sp. nov., ♀. a. Head, frontal view. b. Head, upper frons. c. Head, dorsal view. d. Head, lateral view. e. Mesosoma, lateral view. f. Scutum, metanotum, metapostnotum and propodeum, dorsal view. g. Wings. h. Metasoma, lateral view. Scale bar: a = 0.85 mm; b = 0.80 mm; c = 0.74 mm; d = 0.79 mm; e = 0.97 mm; f = 0.76 mm; g = 1.64 mm; h = 1 mm.
Around the world in 10 million years: rapid dispersal of a kleptoparasitoid spider wasp (Pompilidae: Ceropales)
<p><b>Aim: </b>Our aim was to estimate the historical biogeography of the kleptoparasitoid genus <i>Ceropales</i> and to determine the processes leading to its current worldwide distribution<i>. </i>We tested hypotheses of dispersal and vicariance scenarios underlying its widespread distribution.</p> <p><b>Location: </b>Worldwide.</p> <p><b>Methods: </b>Data from two nuclear markers (the D2–D3 regions of the 28S ribosomal RNA and long-wavelength rhodopsin) and one mitochondrial marker (cytochrome c oxidase I) for 52 specimens of <i>Ceropales </i>were used to reconstruct a dated phylogeny based on Bayesian inference. Two calibration points were used from previous analyses including all pompilids under a lognormal relaxed molecular clock to estimate lineage divergence times. We compared the fit of 12 biogeographical models, modifying the base BioGeoBEARS models to include a dispersal adjacency matrix. Base BioGeoBEARS models<b> </b>allow different cladogenetic processes: DEC (subset sympatry, narrow<b> </b>vicariance), DIVALIKE (narrow and wide vicariance), BAYAREALIKE (widespread<b> </b>sympatry), and +J versions of these that allow jump dispersal. Using the model with the best AIC score, we performed Biogeographic Stochastic Mapping (BSM) in order to infer biogeographic processes. We simulated 200 BSM using the DEC+J model and the consensus tree for the BEAST analysis.</p> <p><b>Results: </b>The origin of crown-group <i>Ceropales </i>was in the early Miocene, ca. 10.6 Ma (15.7–6.5 95% HPD), and eight dispersal events explain its widespread distribution. A constrained model, where only adjacent areas were allowed for dispersal had the highest likelihood under DEC+J model.</p> <p><b>Main Conclusions: </b>The widespread distribution of <i>Ceropales </i>can be explained by eleven jump-dispersal events that took place in a period of ca. 10 million years. Two separate dispersals at different times happened from the Eurasia to the Nearctic. These probably occurred across the Bering land bridge in the late Miocene and Pliocene. Dispersal from North and Mesoamerica to South America took place four independent times from the late Miocene to close to present time. Dispersal to the Ethiopian region from Eurasia occurred in the late Miocene and Pliocene. Dispersal back to Eurasia from the Ethiopian region took place three times independently in the Pliocene to close to present time. Dispersal to the Australian region took place from the late Miocene to the Pleistocene.</p>
FIGURES 11–20 in Taxonomic study on the spider wasp genus Ceropales Latreille, 1796 (Pompilidae: Ceropalinae) with description of two new species from India
FIGURES 11–20. Ceropales (Ceropales) keralaensis Anju, Binoy & Thejass, sp. nov., holotype, ♀. 11, habitus, lateral view; 12, habitus, dorsal view; 13, head, lateral view; 14, head, frontal view; 15, head, dorsal view; 16, mesosoma, dorsal view; 17, mesosoma, lateral view; 18, wings; 19, metasoma, lateral view; 20, metasoma, dorsal view. Scale bar: 11–2 mm; 12, 13, 17, 18, 20–1 mm; 14, 15, 16, 19–0.5 mm.
Around the world in 10 million years: rapid dispersal of a kleptoparasitoid spider wasp (Pompilidae: Ceropales)
Open the record for dataset details and reuse information.
FIGURES 21–23 in Taxonomic study on the spider wasp genus Ceropales Latreille, 1796 (Pompilidae: Ceropalinae) with description of two new species from India
FIGURES 21–23. Ceropales (Ceropales) keralaensis Anju, Binoy & Thejass, sp. nov., paratype, J. 21, habitus, lateral view; 22, hypopygium; 23, genitalia, dorsal view. Scale bar: 21–2 mm; 22, 23–0.5 mm.
FIGURES 1–10 in Taxonomic study on the spider wasp genus Ceropales Latreille, 1796 (Pompilidae: Ceropalinae) with description of two new species from India
FIGURES 1–10. Ceropales (Ceropales) anaghae Anju, Girish Kumar & Thejass, sp. nov., holotype, ♀. 1, habitus, lateral view; 2, habitus, dorsal view; 3, head and antenna, lateral view; 4, head, frontal view; 5, head, dorsal view; 6, mesosoma, dorsal view; 7, mesosoma, lateral view; 8, wings; 9, metasoma, lateral view; 10, metasoma, dorsal view. Scale bar: 1, 2, 8–2 mm; 3, 6, 9, 10–1 mm; 4, 5, 7–0.5 mm.
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.