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.
4,034
datasets available to search
ShareScore release 0.8.0
Dataset results
4,034 results for “Species associations”
FIGURE 1 in Vallissiana universitaria (Lepidoptera: Gracillariidae): a new genus and species of leaf-mining moth associated with Erythroxylum (Erythroxylaceae) in the Atlantic Forest of Brazil
FIGURE 1. Bayesian consensus tree for Vallissiana universitaria based on the analysis the mitochondrial cytochrome oxidase c subunit I gene ('DNA barcode' region). Colored branches indicate Bayesian posterior probability (BPP), as indicated in the legend.
FIGURE 8 in Vallissiana universitaria (Lepidoptera: Gracillariidae): a new genus and species of leaf-mining moth associated with Erythroxylum (Erythroxylaceae) in the Atlantic Forest of Brazil
FIGURE 8. Life history of V. universitaria: (A) host plant Erythroxylum argentinum at the type locality; (B) leaf mines; (C) egg on the adaxial surface; (D) leaf mine bearing a sap-feeding larva (viewed through transparent epidermis as indicated by arrow); dissected leaf mines showing (E) sap-feeding, (F) tissue-feeding larvae, and (G) pupa, dorsal; (H) pupal exuvium partially protruding from leaf-mine. Scale bars: (B) 10, (C) 0.1, (D) 5, (E) 0.5 (F–H) 1 mm.
FIGURE 2 in Vallissiana universitaria (Lepidoptera: Gracillariidae): a new genus and species of leaf-mining moth associated with Erythroxylum (Erythroxylaceae) in the Atlantic Forest of Brazil
FIGURE 2. Adult male of V. universitaria: (A) wing spread moth, dorsal; head (B) dorsal, and (C) lateral. Scale bars: (A) 1 mm, (B–C) 200 µm.
Supplementary material 2 from: Gómez JF, Nieves MH, Gayubo SF, Nieves-Aldrey JL (2017) Terminal-instar larval systematics and biology of west European species of Ormyridae associated with insect galls (Hymenoptera, Chalcidoidea). ZooKeys 644: 51-88. https://doi.org/10.3897/zookeys.644.10035
Character states of Ormyrus larvae included in the systematic study : Explanation note: Observed character states of characters listed in Appendix 1. Explanation of symbols: monomorphic states 0–3; not applicable (*); unknown (?). Characters are unordered.
Supplementary material 1 from: Gómez JF, Nieves MH, Gayubo SF, Nieves-Aldrey JL (2017) Terminal-instar larval systematics and biology of west European species of Ormyridae associated with insect galls (Hymenoptera, Chalcidoidea). ZooKeys 644: 51-88. https://doi.org/10.3897/zookeys.644.10035
Characters of Ormyrus larvae used for systematic study : Explanation note: Characters are listed by body region, for the body, head and under lip complex, which for the latter is subdivided between labrum, maxillae and mandibles.
Supplementary material 2 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
Semantic statements of natural language phenotypes composed in Protégé 5.0 (http://protege.stanford.edu/) using the OWL Manchester syntax. : Explanation note: Semantic statements of natural language phenotypes composed in Protégé 5.0 (http://protege.stanford.edu/) using the OWL Manchester syntax.
Supplementary material 1 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
URI table (Seltmann et al. 2013) containing anatomical terms, definitions and uniform resource identifiers of Hymenoptera specific classes in the Hymenoptera Anatomy Ontology (http://hymao.org). : Explanation note: URI table (Seltmann et al. 2013) containing anatomical terms, definitions and uniform resource identifiers of Hymenoptera specific classes in the Hymenoptera Anatomy Ontology (http://hymao.org).
FIGURE 4 in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 4. Labels of Neotropical Phyllocnistis types found in museums. (A) P. abatiae; (B) P. aurilinea; (C) P. baccharidis; (D) P. bourquini; (E) P. citrella; (F) P. dorcas; (G) P. drimiphaga; (H) P. helios; (I) P. jupiter; (J) P. kawakitai; (K) P. maxberryi; (L) P. meliacella; (M) P. norak; (N) P. ohshimai; (O) P. ourea; (P) P. perseafolia; (Q) P. petronellii; (R) P. phoebus; (S) P. puyehuensis; (T) P. rotans; (U) P. sciophanta; (V) P. selene; (W) P. sexangula; (X) P. tethys; (Y) P. tropaeolicola; (Z) P. wygodzinskyi; (AA) P. xylopiella.
FIGURE 2. A in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 2. A Neighbor-Joining tree of the studied taxa, based on COI barcode fragments, generated under the K2P nucleotide substitution model. Each specimen is identified by its Process ID code (see Tab. 3). Branch lengths represent the number of substitutions per site. BIN numbers from BOLD system are given in parentheses for all clusters.
FIGURE 3 in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 3. Forewings of Neotropical Phyllocnistis. (A) P. abatiae holotype (left forewing reversed); (B) P. aurilinea lectotype (left, reversed); (C) P. baccharidis holotype (left, reversed); (D) P. bourquini holotype (right); (E) P. citrella lectotype (left, reversed); (F) P. dorcas holotype (right); (G) P. drimiphaga holotype (right); (H) P. helios holotype (right); (I) P. jupiter paratype (left, reversed); (J) P. kawakitai holotype (left, reversed); (K) P. maxberryi holotype (right); (L) P. meliacella holotype (right); (M) P. norak holotype (right); (N) P. ohshimai holotype (right); (O) P. ourea paratype (right); (P) P. perseafolia holotype (left, reversed); (Q) P. petronellii paratype (right); (R) P. phoebus paratype (left, reversed); (S) P. puyehuensis holotype (right); (T) P. rotans lectotype (right); (U) P. sciophanta holotype (left, reversed); (V) P. selene specimen (left, reversed); (W) P. sexangula lectotype (left, reversed); (X) P. tethys specimen (right); (Y) P. tropaeolicola holotype (right); (Z) P. wygodzinskyi holotype (left, reversed); (AA) P. xylopiella holotype (right). Scale bars: 1 (A–H, K, L, O, P, R–Z), 0.5 mm (I, J, M, N, Q, AA).
FIGURE 6 in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 6. Genital morphology of the new species of Phyllocnistis. (A) P. helios; (B) P. jupiter; (C) P. ohshimai; (D, E, I) P. xylopiella; (G, J) P. norak; (F, K) P. kawakitai; (H) P. petronellii. (A–D) male genitalia, ventral view; (E–H) female genitalia, lateral; (I–K) detail of female signa. Scale bars: 50 (A–D), 100 (E–H), 50 µm (I–K).
Few juveniles or males were collected. Only four males from groups 7, 8, 9, and 11, all in clade D, were included in the dataset. The male in Fig. 13E–H conforms to the general morphological description of males in Lobocriconema with an undifferentiated labial region, the absence of a stylet, a degenerate pharyngeal region, a FIGURE 7. SEM images of specimens representing clades D (A–H) and B (I). NID numbers are associated with unique specimens, all are females except image C. A) Lobocriconema sp., face view with conspicuous labial disc surrounded by irregular labial structure, Nine-Mile Prairie, Nebraska, NID 4533. B) Lobocriconema sp., face view lacking submedian lobes and displaying subcuticular labial structure, Big Thicket National Preserve, Texas, NID 4560. C) Lobocriconema sp., juvenile, head with visible submedian lobes, body scales with fine terminal projections, Spring Creek Prairie, Nebraska, NID 4514. D) Lobocriconema sp., face view lacking submedian lobes and displaying subcuticular labial structure, Nine-Mile Prairie, Nebraska, NID 4527 E) Lobocriconema sp., cephalic profile with protruding stylet, Nine-Mile Prairie, Nebraska, NID 4529. F) Lobocriconema sp., head profile lacking submedian lobes, Tunica Hills, Louisiana, NID 4574. G) Lobocriconema sp., tail with closed vulva, Nine-Mile Prairie, Nebraska, NID 4533. H) Lobocriconema sp., tail with closed vulva, Nine-Mile Prairie, Nebraska, NID 4526. I) Lobocriconema sp., face view lacking submedian lobes, Great Smoky Mountains National Park, Purchase Knob, NID 4570. in Species discovery and diversity in Lobocriconema (Criconematidae: Nematoda) and related plant-parasitic nematodes from North American ecoregions
Few juveniles or males were collected. Only four males from groups 7, 8, 9, and 11, all in clade D, were included in the dataset. The male in Fig. 13E–H conforms to the general morphological description of males in Lobocriconema with an undifferentiated labial region, the absence of a stylet, a degenerate pharyngeal region, a FIGURE 7. SEM images of specimens representing clades D (A–H) and B (I). NID numbers are associated with unique specimens, all are females except image C. A) Lobocriconema sp., face view with conspicuous labial disc surrounded by irregular labial structure, Nine-Mile Prairie, Nebraska, NID 4533. B) Lobocriconema sp., face view lacking submedian lobes and displaying subcuticular labial structure, Big Thicket National Preserve, Texas, NID 4560. C) Lobocriconema sp., juvenile, head with visible submedian lobes, body scales with fine terminal projections, Spring Creek Prairie, Nebraska, NID 4514. D) Lobocriconema sp., face view lacking submedian lobes and displaying subcuticular labial structure, Nine-Mile Prairie, Nebraska, NID 4527 E) Lobocriconema sp., cephalic profile with protruding stylet, Nine-Mile Prairie, Nebraska, NID 4529. F) Lobocriconema sp., head profile lacking submedian lobes, Tunica Hills, Louisiana, NID 4574. G) Lobocriconema sp., tail with closed vulva, Nine-Mile Prairie, Nebraska, NID 4533. H) Lobocriconema sp., tail with closed vulva, Nine-Mile Prairie, Nebraska, NID 4526. I) Lobocriconema sp., face view lacking submedian lobes, Great Smoky Mountains National Park, Purchase Knob, NID 4570.
FIGURES 36, 37 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 36, 37. Beebeomyia taccarivora sp. nov., THIRD-INSTAR LARVA, CEPHALOPHARYNGEAL SKELETON: 36. VENTRAL VIEW; 37. LATERAL VIEW. SCALES LINES: 0.1MM.
FIGURES 17–26 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 17–26. Beebeomyia taccarivora sp. nov., PARATYPE FEMALE: 17–22. DRAWINGS OF STERNITES: 17. STERNITE 1; 18. STERNITE 2; 19. STERNITE 3; 20. STERNITE 4; 21. STERNITE 5; 22. STERNITE 6; 23. TERMINALIA, GENERAL VIEW: OVISCAPE, TAENIA, EVERSIBLE MEMBRANE, STERNITE 8, CERCI; 24. SPERMATHECAE AND SPERMATHECAL DUCT; 25. STERNITE 8 AND CERCI; 26. CERCI IN DETAIL. SCALES LINES: 0.2 MM.
FIGURES 1–7 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 1–7. Beebeomyia taccarivora sp. nov.: 1. HOLOTYPE MALE, HABITUS, LATERAL VIEW; 2–3. PARATYPE FEMALE: 2. HABITUS, LATERAL VIEW; 3. WING; 4. PARATYPE MALE PRESERVED IN ALCOHOL, DORSAL VIEW; 5–7. HOLOTYPE MALE, HEAD: 5. FRONTAL VIEW; 6. DORSAL VIEW; 7. LATERAL VIEW. SCALES LINES: FIGS 1–4: 1.0 MM; FIGS 5–7: 0.5 MM.
FIGURES 27–35 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 27–35. Beebeomyia taccarivora sp. nov., THIRD-INSTAR LARVA: 27. GENERAL VIEW, LATERAL; 28. ANTERIOR REGION, VENTRAL; 29, 30: ANTERIOR SPIRACLE (NOT CLAREAD AND CLEARED, RESPECTIVELLY); 31. DRAWING LINE OF POSTERIOR SPIRACLE; 32. POSTERIOR REGION, VENTRAL; 33 – 35: POSTERIOR SPIRACLES: 33. GENERAL VIEW; 34. IN DETAIL, NOT CLAREAD; 35. IN DETAIL, CLAREAD. ABBREVIATIONS: An: ANTENNA; ES: ECDYSIAL SCAR; MSO: MAXILLARY SENSE ORGAN; OA: ORAL AREA; P: PERITREME; SH: SPIRACULAR HAIRS; SO: SPIRACULAR OPENING. SCALES LINES: FIG. 27: 2.0MM; FIGS 28, 29, 32–34: 0.2 MM; FIG. 30 = 0.1 MM.
FIGURES 8–16 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 8–16. Beebeomyia taccarivora sp. nov., PARATYPE MALE: 8–11. DRAWINGS OF STERNITES: 8. STERNITE 2; 9. STERNITE 3; 10. STERNITE 4; 11. STERNITE 5; 12–13. DRAWING OF EPANDRIUM (SETAE NOT REPRESENTED), LATERAL AND MEDIAL SURSTYLI, AND CERCI: 12. POSTERIOR VIEW; 13 LATERAL VIEW; 14. LATEROPOSTERIOR GENERAL VIEW: STERNITE 6, SYNTERGOSTERNITE 7 + 8, SPIRACLES 6 AND 7, EPANDRIUM, LATERAL AND MEDIAL SURSTYLI, CERCI, BASIPHALLUS AND DISTIPHALLUS (BLACK ARROW INDICATES THE VESTIGIAL SPIRACLE ON STERNITE VI); 15. DISTIPHALLUS, APEX IN DETAIL; 16. MEDIAL SURTYLUS IN DETAIL. SCALES LINES: FIGS 8–14: 0.2 MM; FIGS 15, 16: 0.1 MM.
FIGURES 46–52 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 46–52. Beebeomyia taccarivora sp. nov., PUPARIUM: 46. LATERAL VIEW; 47. DORSAL VIEW; 48. VENTRAL VIEW, PUPARIUM DISSECTED AND CLARIFIED, 49–52: ABDOMINAL SEGMENTS: 49. CREEPING WELT I; 50. CREEPING WELT V; 51. SPIRACULAR PLATE, POSTERIOR SPIRACLE; 52. PERIANAL PAD AND CREEPING WELT VIII. ABBREVIATIONS: CW: CREEPING WELT; T1, 2, 3: THORAXIC SEGMENT 1, 2, 3. SCALE LINES: FIGS 46–48: 1.0 MM; FIGS 49–52 =0.2MM.
FIGURES 38–45 in A new species of Beebeomyia Curran (Diptera: Richardiidae) from Brazil, with description of immature stages and notes on their association with Taccarum ulei (Araceae)
FIGURES 38–45. Beebeomyia taccarivora sp. nov., THIRD-INSTAR LARVA, ABDOMINAL SEGMENT, LOCOMOTORY STRUCTURES, VENTRAL VIEW: 38. CREEPING WELT I (CW I); 39. CREEPING WELT II (BLACK BAR INDICATES THE EVIDENT DISTANCE BETWEEN THE MEDIAL ROW AND NEXT ROW); 40. CREEPING WELT III; 41. CREEPING WELT IV; 42. CREEPING WELT V;43. CREEPING WELT VI; 44. CREEPING WELT VII; 45. CREEPING WELT VIII. ABBREVIATIONS: CW: CREEPING WELT. BLACK ARROWS INDICATE THE MEDIAL, ALMOST CONTINUOUS AND REGULAR ROW. SCALE LINES: 0.1MM.
Figure 15 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 15. Leucothoe bonelliae holotype (SMBL-V0661): (A) upper lip, dorsal; (B) left mandible, dorsal; (C) right mandible, dorsal; (D) left maxilla 1, ventral; (E) left maxilla 2, ventral; (F) lower lip, dorsal; (G) right maxilliped, dorsal. Scale bar = 100 µm.
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.