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.
280
datasets available to search
ShareScore release 0.9.0
Dataset results
280 results for “endoparasites”
Figure 2 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 2 - Geographic distribution of Apodanthaceae based on label information from 785 herbarium collections.
Figure 1 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 1 - Phylogenetic relationships in Apodanthaceae obtained under maximum likelihood from the mitochondrial gene matR (A) and the nuclear ribosomal RNA gene 18S (B). Shown in red are the specimens we wanted to identify to species. Numbers indicate bootstrap support >70%.
Figure 4 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 4 - Tepals of Apodanthaceae. A Tepal of the outer whorl of Apodanthes caseariae B Tepal of the middle whorl of Apodanthes caseariae C Tepal of the inner whorl of Apodanthes caseariae D Tepal margin of Apodanthes caseariae. The scale bar corresponds to 0.2 mm.
Figure 3 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 3 - Phylogenetic relationships among the hosts of Apodanthaceae (legume relationships from Wojciechowski et al. 2006) and among the species of Apodanthaceae (from Bellot and Renner in review). Identical colors link parasite species and their host(s) and are also used in Figure 2. Dashed lines represent associations with rarely reported hosts; hosts in bold are the most common ones.
Figure 5 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 5 - Sexual organs of Apodanthaceae from rehydrated herbarium material. A Androecium of Pilostyles haussknechtii, note the two rings of pollen sacs topped by a ring of hairs B Style and stigma of Pilostyles haussknechtii C Ovary locule and ovules of Pilostyles haussknechtii D Androecium of Apodanthes caseariae after bursting of the pollen sacs, note the hairs covering the column apex E Gynoecium of Apodanthes caseariae. The scale bar corresponds to 0.2 mm.
Data from: Incongruence between morphological data sets: an example from the evolution of endoparasitism among parasitic wasps (Hymenoptera: Braconidae)
Open the record for dataset details and reuse information.
Data from: The transcriptome of Nacobbus aberrans reveals insights into the evolution of sedentary endoparasitism in plant-parasitic nematodes
Open the record for dataset details and reuse information.
TABLE 2 in Morphology, biology and phylogeny of Xenos gadagkari sp. nov. (Strepsiptera: Xenidae): an endoparasite of Polistes wattii (Hymenoptera: Vespidae)
<p>TABLE 2.</p><table><tbody><tr><th></th><th><i>X. gadagkari</i> (this study)</th><th><i>X. hebraei</i> (Kinzelbach 1978)</th><th><i>X. vesparum</i> (Beani <i>et al.</i> 2021)</th></tr></tbody><tbody><tr><th>Male Body length</th><td>4.12 ± 0.6 mm (n=7)</td><td>5</td><td>Not reported</td></tr><tr><th>Male Puparium length</th><td>4.53 ± 0.41 mm (n=7)</td><td>6.5 mm</td><td>4.9 ± 0.03 mm (n=7)</td></tr><tr><th>Male puparium width</th><td>1.50 ± 0.13 mm</td><td>1.5 mm</td><td>1.66 ± 0.03 mm (n=7)</td></tr><tr><th>#Ommatidia</th><td>65–70</td><td>80–82</td><td>65</td></tr><tr><th>Male body colour</th><td>Yellow</td><td>-</td><td>Dark brown to black</td></tr><tr><th>Female cephalothorax width</th><td>1.38 ± 0.13 (n=7)</td><td>2.0 mm</td><td>2.48 ± 0.05 mm (n=34)</td></tr><tr><th>Female body length</th><td>8.52 ± 0.9 (n=6)</td><td>7.5 mm</td><td>7.93 ± 0.12 mm (n=34)</td></tr><tr><th>Female body colour</th><td>Creamy white-light yellow with a dark brown birthing canal</td><td>Yellowish Brown,</td><td>Creamy white with brown birthing canal</td></tr><tr><th>Cephalothorax colour</th><td>Dark brown</td><td>-</td><td>Horny yellow to black-brown</td></tr></tbody></table><p>TABLE 2.</p>
FIGURE 58 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 58. Yunkeracarus lophuromys Bochkov et OConnor sp. nov., male. A, dorsal view; B, ventral view; C, aedeagus. Scale bars: 100 µm (A, B), 50 µm (C).
FIGURE 45 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 45. Mycteronyssus haplonycteri Bochkov et OConnor sp. nov., female tritonymph (A–I). A, ventral view; B, tarsus I in dorsal view; C, leg I in ventral view; D, tarsus II in dorsal view; E, leg II in ventral view; F, tarsus III in dorsal view; G, leg III in ventral view; H, tarsus IV in dorsal view; I, tibia and tarsus IV in ventral view. Male tritonymph (J–L). J, tarsus IV in dorsal view; K, tibia and tarsus IV in ventral view; L, ventral view. Scale bars: 100 µm (A, L), 50 µm (B– K).
FIGURE 72. Lemurnyssus galagoensis Fain, 1957 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 72. Lemurnyssus galagoensis Fain, 1957, female (A–H). A, tarsus I in ventral view; B, leg I dorsal view; C, tarsus II in ventral view; D, leg II in dorsal view; E, tarsus III in dorsal view; F, leg III in ventral view; G, tarsus IV in dorsal view; H, leg IV in ventral view. Male (I–M). I, gnathosoma in dorsal view; J, same in ventral view; K, palp in ventral view; M, aedeagus. Scale bars: 100 µm (L), 50 µm (A–J); 25 µm (K, M).
FIGURE 66. Yunkeracarus ascanicus Zabludovskaya, 1989 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 66. Yunkeracarus ascanicus Zabludovskaya, 1989 (= stepposus Zabludovskaya, 1990), female parastype. A, dorsal view; B, ventral view; C, tarsus I in dorsal view; D, same in ventral view; E, tarsus II in dorsal view; F, same in ventral view; G, tarsus III in dorsal view; H, same in ventral view; I, tarsus IV in dorsal view; J, same in ventral view. Scale bars: 100 µm (A, B), 50 µm (C–J).
FIGURE 30 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 30. Opsonyssus brutsaerti (Fain, 1956), female (A–D). A, ventral view; B, chelicera in lateral view; C, palp in ventral view; D, posterior margin of propodonotal shield. Male (E–K); E, leg I in ventral view; F, leg II in ventral view; G, leg III in ventral view; H, leg IV in ventral view; I, opisthosoma in ventral view; J, aedeagus; K, adanal shield. Scale bars: 100 µm (A, I), 50 µm (B–H, J, K).
FIGURE 3. Legs I–IV in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 3. Legs I–IV of endoparasitic sarcoptoids, general scheme. A, leg I in ventral view; B, tarsus I in dorsal view; C, leg II in ventral view; D, tarsus II in dorsal view; E, leg II in ventral view; F, tarsus III in dorsal view; G, leg IV in ventral view; H, tarsus IV in dorsal view. Abbreviations: c—condylophore, p.d.—pretarsal (ambulacral) disc, pr.s.—pretarsal (ambulacral) stalk, v.p.—ventral projections of trochanter.
FIGURE 31. Opsonyssus spp. O. brutsaerti indicus Fain, 1959 in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 31. Opsonyssus spp. O. brutsaerti indicus Fain, 1959, female, A, ventral view. O. eidoloni Fain, 1959 (B–G), female (B–E). B, ventral view; C, propodonotal shield; D, posterior projection of coxal field I; E, foramen between sternum and fusion of apodemes II. Male (F, G). F, aedeagus; G, adanal shields. Scale bars: 100 µm (A, B, C, G), 50 µm (D, F).
FIGURE 11. Paguritherium manggagaway n in A review of the endoparasitic isopods (Epicaridea: Entoniscidae) from hermit crabs, including description of the new subfamily Diogenioninae and a new species of Paguritherium Reinhard, 1945 from the Philippines
FIGURE 11. Paguritherium manggagaway n. sp., epicaridium larva (A–F= ZRC 2022.0965). A. Posterior end showing pereopods 4–6 and pleopods. B. Pereopod 6. C. Pereopod 6, close-up of propodus and dactylus (indicated by arrow). D. Pleopods 1–3. E. Pleopod 5. F. Pleotelson and uropods, dorsal view. Abbreviations: P6, pereopod 6; Pl1, pleopod 1; Pl5, pleopod 5. Scale bars: A = 50 μm; B, D, E = 15 μm; C = 5 μm; F = 25μm.
FIGURE 8. Paguritherium manggagaway n in A review of the endoparasitic isopods (Epicaridea: Entoniscidae) from hermit crabs, including description of the new subfamily Diogenioninae and a new species of Paguritherium Reinhard, 1945 from the Philippines
FIGURE 8. Paguritherium manggagaway n. sp., female paratype (A = USNM 1522346, B = USNM 1522347). A. Ovigerous female removed from host, dorsal view. Brood of female with eggs and epicaridium larvae. B. Female removed from host, parasite with calcified areas (shown by asterisks) and exhibiting signs of being degraded. Abbreviations: Hd, head. Scale bars: A, B = 2 mm.
FIGURE 11 in Morphology, biology and phylogeny of Xenos gadagkari sp.nov. (Strepsiptera: Xenidae): an endoparasite of Polistes wattii (Hymenoptera: Vespidae)
FIGURE 11. Mouth parts of male X. gadagkari.
FIGURE 71. Lemurnyssus galagoensis Fain, 1957, female. A in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 71. Lemurnyssus galagoensis Fain, 1957, female. A, dorsal view; B, ventral view.
FIGURE 18. Rodhainyssus longipilis Fain, 1959, female. A in Phylogeny and systematics of the endoparasitic astigmatid mites (Acari: Sarcoptiformes) of mammals: families Gastronyssidae, Lemurnyssidae, and Pneumocoptidae
FIGURE 18. Rodhainyssus longipilis Fain, 1959, female. A, dorsal view; B, ventral view.
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.