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.
140
datasets available to search
ShareScore release 0.9.0
Dataset results
140 results for “fungus beetles”
FIGURE 5 in Episternus onthophagi: a new monotypic genus of epizoic fungus found on Onthophagus beetles (Scarabaeoidea)
FIGURE 5. Fragment of Episternus onthophagi thallus collected from Onthophagus verticicornis—arrows indicate round blastoconidia produced via multidirectional budding. Scale bars = 10 μm.
FIGURE 7 in Episternus onthophagi: a new monotypic genus of epizoic fungus found on Onthophagus beetles (Scarabaeoidea)
FIGURE 7. Combined LSU+SSU+ITS Bayesian phylogeny of newly described Ephisternus onthophagi (marked in bold) and 67 related species of Sordariomycetidae. Taxonomic affiliation after Ferrer et al. (2012), Maharachchikumbura et al. (2016), Zhang et al. (2017) and Réblová et al. (2018). Vertical bars to the right of the clades represent order level affiliation, family level affiliation is colour coded. * - no culture number provided in GenBank record.
FIGURE 6 in Episternus onthophagi: a new monotypic genus of epizoic fungus found on Onthophagus beetles (Scarabaeoidea)
FIGURE 6. Fragment of Episternus onthophagi thallus collected from Onthophagus verticicornis—arrows indicate round blastoconidia produced via multidirectional budding (SEM).
FIGURE 4 in Episternus onthophagi: a new monotypic genus of epizoic fungus found on Onthophagus beetles (Scarabaeoidea)
FIGURE 4. Fragment of Episternus onthophagi thallus collected from Onthophagus verticicornis.—arrows indicate one-septated cells. Scale bars = 10 μm.
FIGURE 3. A in Episternus onthophagi: a new monotypic genus of epizoic fungus found on Onthophagus beetles (Scarabaeoidea)
FIGURE 3. A cross section of the fragment of Episternus onthophagi thallus collected from Onthophagus verticicornis—braces indicate layers of the thallus: A—the blastoconidia producing, outer-most layer, B—the inner-most, carapace-adhered layer. Scale bars = 500 μm.
FIGURE 4 in Polypore fungus beetles (Coleoptera: Tetratomidae) in a remnant of semi-deciduous forest of the Brazilian Cerrado: checklist and the description of a new species of Eustrophopsis Champion, 1889
FIGURE 4. Illustrations of genitalia of Eustrophopsis species. (4) Median lobe of E. bilunulata Pic, 1912; (4) Ovipositor of E. laurae sp. nov. CXT, coxites; STL, stylus; VLV, vulva.
FIGURE 2. Eustrophopsis bilunulata Pic, 1912 in Polypore fungus beetles (Coleoptera: Tetratomidae) in a remnant of semi-deciduous forest of the Brazilian Cerrado: checklist and the description of a new species of Eustrophopsis Champion, 1889
FIGURE 2. Eustrophopsis bilunulata Pic, 1912, male, sampled in Malaise trap in the Parque Estadual Altamiro de Moura Pacheco, Goianápolis, Goiás, Brazil. (A) Dorsal view; (B) Ventral view.
FIGURE 1 in Polypore fungus beetles (Coleoptera: Tetratomidae) in a remnant of semi-deciduous forest of the Brazilian Cerrado: checklist and the description of a new species of Eustrophopsis Champion, 1889
FIGURE 1. Location of the Parque Estadual de Altamiro de Moura Pacheco (PEAMP), highlighting the sampling sites.
FIGURE 3 in Polypore fungus beetles (Coleoptera: Tetratomidae) in a remnant of semi-deciduous forest of the Brazilian Cerrado: checklist and the description of a new species of Eustrophopsis Champion, 1889
FIGURE 3. Eustrophopsis laurae sp. nov., female, holotype sampled in Malaise trap in the Parque Estadual Altamiro de Moura Pacheco, Goianápolis, Goiás, Brazil. (A) Dorsal view; (B) Ventral view.
FIGURE 12. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 12. Pselaphacus procerus Kuhnt, 1910. Early larvae under SEM. (A–B) head, ventral and lateral views; (C) mouthparts, ventral; (D) antenna; (E) mesothoracic tubercle near coxa; (F) mesonotum; (G–H) thorax, lateral and ventral views; (I) thoracic spiracle; (J) abdominal spiracle; (K) segments VIII–X, lateral view. Scale bar: A, B, F, G, H, K = 0.1 mm; C, D, E = 0.03 mm; I, J = 0.01 mm.
FIGURE 7. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 7. Pselaphacus procerus Kuhnt, 1910. Mature larvae. (A–B) head, dorsal and ventral views; (C–E) antenna, dorsal, ventral and frontal views; (F) clypeus and labrum; (G) epipharynx; (H–I) mandible, ventral and internal views; (J–K) maxilla, apex dorsal and ventral views; (L–M) apex of mala, ventral view, with and without setae; (N) hypopharynx; (O) labium. Scale bar: A–B = 0.5 mm, C–K, N–O = 0.1 mm, L–M = 0.05 mm.
FIGURE 11. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 11. Pselaphacus procerus Kuhnt, 1910. Early larvae. (A–B) head, dorsal and ventral views; (C–D) antenna, dorsal and ventral views; (E) clypeus and labrum; (F) epipharynx; (G–I) mandible, dorsal, external and internal views; (J–K) maxilla, dorsal and ventral views; (L–M) apex of mala, dorsal and ventral views; (N) labium. Scale bar: A = 0,5 mm, B–K, N = 0.1 mm, L, M = 0.05 mm.
FIGURE 6. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 6. Pselaphacus procerus Kuhnt, 1910. Mature larvae. Habitus. (A) dorsal view; (B) ventral view; (C) lateral view. Scale bar = 0.5 mm.
FIGURE 9. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 9. Pselaphacus procerus Kuhnt, 1910. Mature larvae under SEM. (A, C–D) head, lateral, frontal and ventral views; (B) head, thorax and abdominal segment I, lateral view; (E) ventral mouthparts; (F) abdominal spiracle; (G) pro and mesonotum; (H) prothoracic leg; (I) integument of coxa; (J–L) segments IX–X, lateral and ventral views; (K) segment X, dorsal view. Scale bar: A, C, D, E, G, H, J, K, L = 0.1 mm. B = 0.3 mm; F, I = 0.01 mm.
FIGURE 2. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 2. Pselaphacus procerus Kuhnt, 1910. Male. Habitus. (A) dorsal view; (B) ventral view; (C) frontal view; (D) head and pronotum, and anterior region of elytra; (E) lateral view. Scale bar = 0.5 mm.
FIGURE 10. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 10. Pselaphacus procerus Kuhnt, 1910. Early larvae. Habitus. (A) dorsal view; (B) ventral view; (C) lateral view. Scale bar = 0.5 mm.
Figures 92–115 in A review of the small carrion beetles and the round fungus beetles of the West Indies (Coleoptera: Leiodidae), with descriptions of two new genera and 61 new species.
Figures 92–115. Aedeagi, lateral and dorsal apical views, of Aglyptinus. 92, 93) A. puertoricensis (from Peck 1972). 94, 95) A. angulatus. 96, 97) A. grandis. 98, 99) A. longipalpus. 100, 101) A. hispaniolensis. 102, 103) A. kaszabi. 104, 105) A dominica. 106, 107) A. martiniquensis. 108, 109) A. luciae. 110, 111) A. parvus. 112, 113) A. grenadensis. 114, 115) A. vincentii. Scale line = 0.30 mm, Fig. 92-95, 98-115; 0.45 mm, Fig. 96, 97.
Figures 44–49 in A review of the small carrion beetles and the round fungus beetles of the West Indies (Coleoptera: Leiodidae), with descriptions of two new genera and 61 new species.
Figures 44–49. Aedeagi, dorsal view, of Zeadolopus. 44) Z. bicolor. 45) Z. carinatus. 46) Z. jamaicensis (from Peck 1977). 47) Z. microps (from Peck 1977). 48) Z. acinaces. 49) Z. caborojo. Scale line = 0.30 mm.
Figures 37–43 in A review of the small carrion beetles and the round fungus beetles of the West Indies (Coleoptera: Leiodidae), with descriptions of two new genera and 61 new species.
Figures 37–43. Aedeagi, dorsal view, of Zeadolopus. 37) Z. bahamensis. 38) Z. caymanensis. 39) Z. atratus. 40) Z. cubensis. 41) Z. flavidus. 42) Z. lucidus. 43) Z. pusillus. Scale line = 0.30 mm.
Figures 70–91 in A review of the small carrion beetles and the round fungus beetles of the West Indies (Coleoptera: Leiodidae), with descriptions of two new genera and 61 new species.
Figures 70–91. Aedeagi, lateral and dorsal apical views, of Aglyptinus. 70, 71) A. bahamensis. 72, 73) A. biseriatus. 74, 75) A. capitaneus. 76, 77) A. fortipunctatus. 78, 79) A. minutus. 80, 81) A. sinuatus. 82, 83) A. dimorphicus (from Peck 1972). 84, 85) A. jamaicensis (from Peck 1972). 86, 87) A. hemipterus. 88, 89) A. maculus. 90, 91) A. parvoculus. Scale line = 0.30 mm, Fig. 70–73, 76–85, 88, 89; 0.35 mm, Fig. 74, 75, 90, 91; 0.45 mm, Fig. 86, 87.
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.