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283 results for “host-plants”
Figure 2 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 2 - Maximum likelihood phylogenetic tree obtained from the combined analysis of cox1, rrnL and H3. Node numbers represent bootstrap support values. Only support values higher than 0.7 are shown. Numbers accompanying the subgeneric classification of the Chrysolina species on the right correspond to the systematic groups defined by Bourdonné and Doguet (1991). Clades mentioned in the text are highlighted.
Figure 1 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 1 - Bayesian phylogenetic tree obtained from the combined analysis of cox1, rrnL and H3. Node numbers represent Bayesian posterior probability values. Only support values higher than 0.9 are shown. Numbers accompanying the subgeneric classification of the Chrysolina species on the right correspond to the systematic groups defined by Bourdonné and Doguet (1991). Clades mentioned in the text are highlighted.
Data from: Tritrophic interactions at a community level: effects of host-plant species quality on bird predation of caterpillars
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Data from: Phylogenetic Analyses of DNA and Allozyme Data Suggest that Gonioctena Leaf Beetles (Coleoptera; Chrysomelidae) Experienced Convergent Evolution in their History of Host-Plant Family Shifts
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Reduced host-plant specialization is associated with the rapid range expansion of a Mediterranean butterfly
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Generalised host-plant feeding can hide sterol specialised foraging behaviours in bee-plant interactions
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Data from: Differential responses of sexual and asexual <em>Aphis gossypii</em> lineages to climate change: shifts in distribution, phenology, and host-plant interactions
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Intraspecific difference among herbivore lineages and their host-plant specialization drive the strength of trophic cascades
<p>Dataset from the publication Intraspecific difference among herbivore lineages and their host-plant specialization drive the strength of trophic cascades</p>
Figure 9 from: Huemer P, Schmid J (2021) Relict populations of Lyonetia ledi Wocke, 1859 (Lepidoptera, Lyonetiidae) from the Alps indicate postglacial host-plant shift to the famous Alpenrose (Rhododendron ferrugineum L.). Alpine Entomology 5: 101-106. https://doi.org/10.3897/alpento.5.76930
Figure 9 Habitat of Lyonetia ledi in Engadine/Switzerland with Rhododendron ferrugineum.
FIGURES 7–15. Species transferred from Austrothrips. Teuchothrips flavitibia 7–9 in Taxonomic confusion among gall-thrips and host-plants, with three new combinations from the genus Austrothrips (Thysanoptera, Phlaeothripidae)
FIGURES 7–15. Species transferred from Austrothrips. Teuchothrips flavitibia 7–9: (7) holotype head and pronotum; (8) holotype meso and metanotum; (9) paratype pelta and tergite II. Solomonthrips vanuaensis holotype 10–15: (10) head; (11) antenna; (12) pronotum; (13) tergites VII–X; (14) sternites VII–IX; (15) pelta and tergite I.
FIGURES 283–312 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 283–312. Mitrapsylla spp., parameres, dorsal view: 283. M. aeschynomenis sp. nov.; 284. M. amazonica sp. nov.; 285. M. andirae sp. nov.; 286. M. aurantia sp. nov., 287. M. brevigenis sp. nov.; 288. M. cassiae sp. nov.; 289. M. ceplaciensis (White & Hodkinson); 290. M. clavata sp. nov.; 291. M. cubana Crawford; 292. M. cujabensis sp. nov.; 293. M. cuspidata sp. nov.; 294. M. didyma sp. nov.; 295. M. domahovskii sp. nov.; 296. M. halbertae sp. nov.; 297. M. hamata sp. nov.; 298. M. holocalycis sp. nov.; 299. M. itacoatiara sp. nov.; 300. M. itaparica (Crawford); 301. M. machaerii sp. nov.; 302. M. melanothorax sp. nov.; 303. M. ochra sp. nov.; 304. M. pallida sp. nov.; 305. M. periandrae sp. nov.; 306. M. pterodontis sp. nov.; 307. M. pterogynis sp. nov.; 308. M. securigera sp. nov.; 309. M. soror sp. nov.; 310. M. truncata sp. nov.; 311. M. villosi sp. nov.; 312. M. xanthoptera sp. nov. Anterior part up.
FIGURES 211–219 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 211–219. Mitrapsylla spp., male terminalia, lateral view: 211, 214, 217: paramere, outer surface; 212, 215, 218: paramere, inner surface; 213, 216, 219: distal segment of aedeagus. 211‾213. M. ceplaciensis (White & Hodkinson); 214‾216. M. clavata sp. nov.; 217‾219. M. cubana Crawford. Scale bar = 0.05 mm.
FIGURES 373–376 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 373–376. Distribution of Mitrapsylla in Brazil: 373. M. adusta Burckhardt & Queiroz (triangle), M. aeschynomenis sp. nov. (inverted triangle), M. amazonica sp. nov. (circle), M. andirae sp. nov. (rhombus), M. aurantia sp. nov. (square); 374. M. borealis Burckhardt & Queiroz (triangle), M. brevigenis sp. nov. (square), M. cassiae sp. nov. (circle), M. ceplaciensis (White & Hodkinson) (inverted triangle), M. clavata sp. nov. (rhombus); 375. M. compta Burckhardt & Queiroz (square), M. copaiferae Burckhardt & Queiroz (triangle), M. cubana Crawford (circle), M. cujabensis sp. nov. (rhombus), M. cuspidata sp. nov. (inverted triangle); 376. M. didyma sp. nov. (square), M. domahovskii sp. nov. (rhombus), M. fumipennis Burckhardt & Queiroz (circle), M. gloriae Burckhardt & Queiroz (inverted triangle), M. halbertae sp. nov. (triangle). For abbreviations of state names see Fig. 1.
FIGURES 35–37 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 35–37. Mitrapsylla spp., forewing: 35. M. pterogynis sp. nov.; 36. M. hamata sp. nov.; 37. M. periandrae sp. nov. Scale bar = 0.2 mm.
FIGURES 2–4 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 2–4. Morphological terminology and measurements: Mitrapsylla cassiae sp. nov. 2. Head, dorsal view; 3. Forewing, nomenclature of veins and cells; dashed lines indicate extent of areas covered by surface spinules; 4. Forewing, measurements. Abbreviations: FL = forewing length; FW = forewing width; GL = genal process length; HW = head width; VL = vertex length.
FIGURES 23–34 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 23–34. Mitrapsylla spp., head, dorsal view: 23. M. melanothorax sp. nov.; 24. M. pterogynis sp. nov.; 25. M. holocalycis sp. nov.; 26. M. periandrae sp. nov.; 27. M. aeschynomenis sp. nov.; 28. M. didyma sp. nov.; 29. M. cubana Crawford; 30. M. amazonica sp. nov.; 31. M. xanthoptera sp. nov.; 32. M. cassiae sp. nov.; 33. M. cuspidata sp. nov.; 34. M. pallida sp. nov. Scale bar = 0.2 mm.
FIGURES 38–43 in Taxonomy and host-plant relationships of the psyllid genus Mitrapsylla (Hemiptera: Psylloidea: Psyllidae) in Brazil
FIGURES 38–43. Mitrapsylla spp., forewing surface spinules: 38. M. cassiae sp. nov.; 39. M. securigera sp. nov.; 40. M. pterogynis sp. nov.; 41. M. aurantia sp. nov.; 42. M. itaparica (Crawford); 43. M. pallida sp. nov. Scale bar = 0.02 mm.
FIGURES 74–79 in Discovery of the new Coptotriche species in China revealed two novel host-plant families and host-plant orders for Tischeriidae, a family of stenophagous, leafmining lepidopterans
FIGURES 74–79. Leaf mines of Coptotriche asiana Diškus & Stonis, sp. nov. on Symplocos poilanei Guill. (Symplocaceae), sample no. 5193, Lao Cai Province, Vietnam
FIGURES 5–11 in Discovery of the new Coptotriche species in China revealed two novel host-plant families and host-plant orders for Tischeriidae, a family of stenophagous, leafmining lepidopterans
FIGURES 5–11. Adults of new Coptotriche species. 5, 7, C. turpinia Xu & Dai, sp. nov., male paratype, Lao Cai Province, Vietnam (ZIN); 6, 8–11, C. asiana Diškus & Stonis, sp. nov., male paratype, Lao Cai Province, Vietnam (ZIN)
FIGURES 19–24 in Documenting trumpet leaf-miner moths (Tischeriidae): new Neotropical Coptotriche and Astrotischeria species, with notes on Sapindaceae as a host-plant family
FIGURES 19–24. Adults of new Astrotischeria species. 19–22, Astrotischeria mystica Diškus & Stonis, sp. nov.; 23, 24, Astrotischeria yungasi Diškus & Stonis, sp. nov. (ZIN)
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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.