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.
1,854
datasets available to search
ShareScore release 0.9.0
Dataset results
1,854 results for “Host plant”
FIG. 31 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 31. Cladogram of all Calophya species (except for C. clavuligera and C. pallidula), with previous combinations (C= Calophya, P= Pelmatobrachia, M= Microceropsylla), provenance (EPal= East Palaearctic, Or= Oriental, NAm= North American, SAm = South American) and host genus (adult characters, cf. tables 4, 5).
FIGS 32 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIGS 32±36. Cladograms: (32) selected Calophya spp. (adult and larval characters, cf. tables 6, 7); (33) Calophya rubra group (except for C. ¯oricola) (cf. tables 8, 9); (34) Calophya hermicitae group (cf. tables 10, 11); (35) Rhinocolinae (cf. tables 12, 13); (36) Tainarys (cf. tables 14, 15).
FIGS 63, 64 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIGS 63, 64. Tainarys spp.: (63) SEM picture of adult T. inopinata; (64) deformations (arrow) of T. sordida on Schinus montanus.
FIG. 26 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 26. Tainarys venata: A, male genitalia, in pro®le; B, paramere, inner face; C, distal segment of aedeagus; D, female genitalia, in pro®le.
FIG. 25 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 25. Tainarys spp.: A±E, T. maculipectus; F±J, T. venata. A, I, forewing; B, male genitalia, in pro®le; C, female genitalia, in pro®le; D, paramere, inner face; E, distal segment of aedeagus; F, head, dorsal view; G, frons; H, egg; J, metacoxa.
FIG. 23. L in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 23. L eurolophus spp.: A±H, L. oriformae; I, L. vittatus. A, forewing; B, head, dorsal view; C, frons; D, male genitalia, in pro®le; E, paramere, inner face; F, distal segment of aedeagus; G, female genitalia, in pro®le; H, I, metacoxa.
FIGS 38 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIGS 38± 49. (38) Taxon area cladogram (TAC) of the C. rubra group; (39) simpli®ed TAC of ®gure (38, 40) TAC of the C. hermicitae group; (41) TAC of Tainarys; (42) reduced area cladogram (RAC) of the C. rubra group; (43) RAC of the C. hermicitae group; (44) RAC of Tainarys; (45) TAC of the C. rubra group with three traceable vicariance events (TVE); (46) TAC of the C. hermicitae group with two TVE; (47) TAC of Tainarys without TVE; (48) diagram of vicariant events derived from cladogram of the C. rubra group (®gure 45); (49) diagram of vicariant events derived from cladogram of the C. hermicitae group (®gure 46).
FIG. 5 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 5. Calophya spp.: A±F, C. duvauae; G±K, C. ¯oricola. A, G, forewing; B, H, female genitalia, in pro®le; C, spermatheca; D, J, distal segment of aedeagus; E, K, male genitalia, in pro®le; F, I, paramere, inner face.
FIG. 8 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 8. Calophya spp.: A±F, C. patagonica; G±L, C. rubra. A, G, forewing; B, K, paramere, inner face; C, H, spermatheca; D, I, female genitalia, in pro®le; E, J, male genitalia, in pro®le; F, L, distal segment of aedeagus.
FIG. 9 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 9. Calophya spp.: A±E, G, C. schini; F, H±K, C. scrobicola. A, F, forewing; B, K, distal segment of aedeagus; C, spermatheca; D, H, female genitalia, in pro®le; E, J, paramere, inner face; G, I, male genitalia, in pro®le.
FIG. 2 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 2. Canonical variate analysis of 50 female specimens measured in the C. rubra group. (a) Distribution of eigenvalues among the discriminant axes; (b) plot of the specimens projected on discriminant axes 1 and 2; (c) correlation circle of variables projected on axes 1 and 2; (d) plot of the specimens projected on axes 3 and 4; (e) correlation circle of variables projected on axes 3 and 4. Species and variable codes as in ®gure 1.
FIG. 7 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 7. Calophya spp.: A±F, C. mammif ex; G±K, C. orbicola. A, H, forewing; B, spermatheca; C, K, paramere, inner face; D, G, distal segment of aedeagus; E, I, female genitalia, in pro®le; F, J, male genitalia, in pro®le.
FIG. 4 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 4. Calophya spp.: A±E, C. catillicola; F±K, C. clausa. A, F, forewing; B, H, female genitalia, in pro®le; C, I, male genitalia, in pro®le; D, K, distal segment of aedeagus; E, J, paramere, inner face; G, spermatheca.
FIG. 1 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 1. Canonical variate analysis of 44 male specimens measured in the C. rubra group. (a) Distribution of eigenvalues among the discriminant axes; (b) plot of the specimens projected on discriminant axes 1 and 2; (c) correlation circle of variables projected on axes 1 and 2; (d) plot of the specimens projected on axes 3 and 4; (e) correlation circle of variables projected on axes 3 and 4. Species codes as follows: 1 = C. andina, 2 = C. clausa, 3 = C. ¯oricola, 4 = C. gallifex, 5= C. mammif ex, 6 = C. orbicola, 7= C. patagonica, 8= C. rubra, 9= C. schini, 10 = C. scrobicola. Codes of variables (measurements) as detailed in the methods.
FIG. 10 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 10. Calophya terebinthifolii: A, forewing; B, distal segment of aedeagus; C, spermatheca; D, female genitalia, in pro®le; E, male genitalia, in pro®le; F, paramere, inner face.
FIG. 3 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 3. Calophya andina: A, forewing; B, C, female genitalia, in pro®le; D, E, spermatheca; F, G, male genitalia, in pro®le; H, I, paramere, inner face; J, K, distal segment of aedeagus.
FIG. 6 in The jumping plant-lice (Hemiptera, Psylloidea) associated with Schinus (Anacardiaceae): systematics, biogeography and host plant relationships
FIG. 6. Calophya spp.: A±E, C. gallifex; F±K, C. hermicitae. A, F, forewing; B, G, female genitalia, in pro®le; C, I, male genitalia, in pro®le; D, K, paramere, inner face; E, J, distal segment of aedeagus; H, spermatheca.
FIGURE 8 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 8. Lasiacantha aureolus sp. nov. (a) head dorsal (♀, 30 µm); (b) pronotum dorsal (♀, 100 µm); (c) mesepimeron and metepisternum (♀, 30 µm); (f) hemelytra (♀, 100 µm); (g) pygophore dorsal (♂, 30 µm); (h) abdomen ventral (♀, 100 µm). Scales in brackets, measured in µm.
FIGURE 9 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 9. Lasiacantha inaquosa sp. nov. (a) head dorsal (♀, 30 µm); (b) head ventral (♀, 30 µm); (c) head lateral (♀, 30 µm); (d) pronotum dorsal (♀, 100 µm); (e) mesepimeron and metepisternum (♀, 30 µm); (f) hemelytra (♀, 100 µm); (g) pygophore dorsal (♂, 30 µm); (h) abdomen ventral (♀, 100 µm). Scales in brackets, measured in µm.
FIGURE 6 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 6. Photographs of Australian Lasiacantha species: L. graminicola sp. nov. (habitus and lateral), L. gingera sp. nov, L. kosciuszko sp. nov., L. leai sp. nov, L. windorah sp. nov., L. discordis sp. nov. (habitus and lateral), L. vittata sp. nov. and L. serraseta sp. nov.. Scale = 1mm. Plate 2 of 2.
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.