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1,509 results for “host association”
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.
FIGURE 11 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 11. Lasiacantha serraseta sp. nov. (a) head dorsal (♀, 30 µm); (b) head ventral (♀, 100 µm); (c) head lateral (♀, 100 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 4 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 4. Lasiacantha habitats and hosts: (a) locality for L. discordis: Western Australia, 11 km N of Coolgardie-Esperance Hwy on Kambalda Rd; (b) host of L. discordis: Eremophila dempsteri; (c) locality and host for L. darwini: Eremophila sp., Western Australia, Charles Darwin Reserve, edge of claypans N of Wanarra East Rd; (d) & (e) host of L. aureolus: Eremophila sp.; (f) locality for L. aureolus: Northern Territory, ~ 75 km E of Stuart Hwy on Ernest Giles Rd; (g) locality for L. luritja: Northern Territory, 33 km E of Alice Springs on Ross Hwy; (h) host for L. luritja: Eremophila freelingii; (i) host for L. nipha: Eremophila sp., Western Australia, Charles Darwin Reserve, Wanarra East Rd, at Breakaway Well.
FIGURE 12 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 12. Male pygophore, dorsal and ventral, of three Australian Lasiacantha species, from the three species groups: (a) and (b) L. aureolus; (c) and (d) L. discordis; (e) and (f) L. graminicola. Scale = 0.1mm.
FIGURE 7 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 7. (a) Photographs of Australian Lasiacantha larvae, L. aureolus sp. nov and L. luritja sp. nov; (b) Photograph of holotype of Lasiacantha aemula (Drake, 1947) nov. comb..
FIGURE 14 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 14. Male endosoma, ventral, of three Australian Lasiacantha species, from the three species groups: (a) L. aureolus; (b) L. discordis; (c) L. graminicola. Abbreviations: DUES, distal u-shaped endosomal sclerite; bb, basal branches of DUES; cl, cleft of DUES. Scale = 0.1mm.
FIGURE 10 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 10. Lasiacantha luritja sp. nov. (a) head dorsal (♂, 30 µm); (b) head lateral (♂, 30 µm); (c) pronotum dorsal (♂, 100 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. Abbreviations: FS, frontal spine; MS, medial spine; OS, occipital spine; Bu, bucculae; PD, pronotal disc; Co, collum; Pa, paranota; MC, medial carina; LC, lateral carina; PL, posterior lobe; SG, scent gland; R+M, radius and media vein; Cu, cubitus vein; CoA, costal area; ScA, subcostal area; SuA, sutural area; DiA, discoidal area; RP, right paramere; LP, left paramere; Py, Pygophore; SgP, subgenital plate.
FIGURE 13 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 13. Male paramere, dorsal, of seven Australian Lasiacantha species, from the three species groups: (a) L. eremophila; (b) L. aureolus; (c) L. luritja; (d) L. serraseta; (e) L. discordis; (f) L. graminicola. Abbreviations: Ap, apophysis; SL, sensory lobe. Scale = 0.1mm.
FIGURE 1 in Systematics, biogeography and host plant associations of the lace bug genus Lasiacantha Stål in Australia (Insecta: Hemiptera: Heteroptera: Tingidae) 2818
FIGURE 1. Implied weights phylogeny for Australian Lasiacantha Stål, 1873, with nodes numbered (refer to Table 3 for character state changes at nodes), bootstrap values are given as branch supports, and biogeographic area and host plant mapped next to the species name. Map of areas of endemism, redrawn from Crisp et al. (1995). Abbreviations for biogeographic areas as follows: ED = Eastern Desert; EQ = Eastern Queensland; MM = Macleay-McPherson; P = Pilbara; SE = Southeast New South Wales; SW = Southwest Western Australia; TAS = Tasmania; and, WD = Western Desert.
Fig. 2. A in A New State Record for Chelobasis bicolor Gray (Coleoptera: Chrysomelidae: Cassidinae: Arescini) and New Host Association with Heliconia bourgaeana Peterson (Heliconiaceae) in Mexico
Fig. 2. A) Flower of Heliconia bourgaeana, B) H. bourgaeana plant, C) Chelobasis bicolor inside a young rolled leaf.
Fig. 1 in A New State Record for Chelobasis bicolor Gray (Coleoptera: Chrysomelidae: Cassidinae: Arescini) and New Host Association with Heliconia bourgaeana Peterson (Heliconiaceae) in Mexico
Fig. 1. Polymorphism of adults of Chelobasis bicolor collected at Lacandona jungle, Chiapas, Mexico, in leafrolls of Heliconia bourgaeana.
Figures 55–61 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 55–61. Asphondylia silva sp. nov.: 55, male head; 56, female head; 57, female flagellomere 5; 58, female abdomen; 59, male terminalia, dorsal; 60, 61, larval spatulae. Scale bars: 0.1 mm.
Figures 50–54 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 50–54. Asphondylia pseudorosa sp. nov. larval spatulae: 50, 51, from inflorescence galls; 52–54, from bud galls. Scale bars: 0.1 mm.
Figures 38–44 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 38–44. Asphondylia larval spatulae: 38, 39, Asphondylia solidaginis; 40, 41, Asphondylia rosulata sp. nov.; 42–44, spatulae of larvae taken from Solidago gigantea snap galls. Scale bars: 0.1 mm.
Figures 31–37 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 31–37. Asphondylia monacha, larva: 31, head and prothorax; 32–34, spatula of spring-generation larvae; 35– 37, spatula of summer-generation larvae. Scale bars: 0.1 mm.
Figures 45–49 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 45–49. Asphondylia pseudorosa sp. nov.: 45, male head; 46, female head; 47, female flagellomeres 10–12; 48, male terminalia, dorsal; 49, male hypoprocts showing intraspecific morphological diversity. Scale bars: 0.1 mm.
Figures 28–30 in Taxonomy and phylogeny of the Asphondylia species (Diptera: Cecidomyiidae) of North American goldenrods: challenging morphology, complex host associations, and cryptic speciation
Figures 28–30. Asphondylia monacha, male terminalia: 28, dorsal; 29, ventral; 30, lateral. Scale bars: 0.1 mm.
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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.