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391 results for “caterpillars”
Figure 8 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 8. Male genitalia of Hyposmocoma kawaikoi sp. nov. from specimen on slide PS198. A, tegumen, ventral aspect; B, sclerotized hook on abdominal segment VII, dorsal aspect; C, valvae with phallus, ventral aspect.
Figure 19 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 19. Male genitalia of Hyposmocoma moopalikea sp. nov. from specimen on slide PS170. A, tegumen, ventral aspect; B, valvae with phallus, ventral aspect.
Figure 7 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 7. Male genitalia of Hyposmocoma kahaiao sp. nov. from specimen on slide PS162. A, tegumen, ventral aspect; B, sclerotized hook on abdominal segment VII, ventral aspect; C, valvae with phallus, ventral aspect.
Figure 22 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 22. Typical habitat of aquatic Hyposmocoma species. The Wailua river on the eastern side of the island of Kauai shelters three different species from two different case types of aquatic case-bearing larvae: Hyposmocoma ipowainui sp. nov., Hyposmocoma uhauiole sp. nov., and Hyposmocoma wailua sp. nov.
Figure 6 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 6. Male genitalia of Hyposmocoma uhauiole sp. nov. from specimen on slide PS154. A, tegumen, ventral aspect; B, sclerotized hook on abdominal segment VII, ventral aspect; C, valvae with phallus, ventral aspect.
Figure 21 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 21. Maximum likelihood tree of Hyposmocoma species based on the combined analysis of three partial gene sequences: the mitochondrial gene cytochrome oxidase subunit I and, the nuclear genes elongation factor 1 alpha and carbamoylphosphate synthetase. The four monophyletic case lineages including the amphibious species described in the text are highlighted. Only bootstrap support values higher than 70% are given.
Figure 4 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 4. Larva of Hyposmocoma kahamanoa sp. nov. A, chaetotaxy of thorax; B, chaetotaxy of abdominal segments 1–2; C, chaetotaxy of abdominal segments 6–10; D, mandible. Seta designations: D, dorsal; L, lateral; SD, subdorsal; SV, subventral; XD, supernumary dorsal.
Figure 5 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 5. Male genitalia of Hyposmocoma kahamanoa sp. nov. from specimen on slide PS163. A, tegumen, ventral aspect; B, sclerotized hook on abdominal segment VII, ventral aspect; C, valvae with phallus, ventral aspect.
Figure 2 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 2. Cone case types of aquatic Hyposmocoma spp., larvae. A, Hyposmocoma kahamanoa sp. nov., lateral aspect; B, Hyposmocoma kawaikoi sp. nov., lateral aspect; C, Hyposmocoma wailua sp. nov., dorsal aspect.
Figure 3 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 3. Scanning electron micrographs of larva of Hyposmocoma kahamanoa sp. nov. A, frontolateral view of head capsule, scale bar = 100 Mm; B, sensilla of antenna: 1 = sensilla basiconica, 2 = sensillum chaetica, 3 = sensillum styloconicum, scale bar = 10 Mm; C, sensilla of maxillary palpus: A2 = sensillum styloconicum, A1, A3, M1-2, L1-3 = sensilla basiconica, scale bar = 10 Mm; D, left proleg on abdominal segment 4, scale bar = 10 Mm; E, distal portion of left prothoracic leg showing claw, scale bar = 100 Mm; F, left spiracle on abdominal segment 5, scale bar = 10 Mm; G, detail of the hydrophilic microstructure of the cuticle, scale bar = 10 Mm. Seta designations: A, anterior; AF, adfrontal; C, clypeal; P, parietal; S, stemmatal; SS, substemmatal. Sensilla designations: A, apical; L, lateral; M, medial.
Figure 1 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 1. Holotypes of aquatic cone-case Hyposmocoma spp., adult males. A, Hyposmocoma kahamanoa sp. nov.; B, Hyposmocoma uhauiole sp. nov.; C, Hyposmocoma kahaiao sp. nov.; D, Hyposmocoma kawaikoi sp. nov.; E, Hyposmocoma kamakou sp. nov.; F, Hyposmocoma wailua sp. nov.
Figure 9 in The Hawaiian amphibious caterpillar guild: new species of Hyposmocoma (Lepidoptera: Cosmopterigidae) confirm distinct aquatic invasions and complex speciation patterns
Figure 9. Male genitalia of Hyposmocoma kamakou sp. nov. from specimen on slide PS166. A, tegumen, ventral aspect; B, sclerotized hook on abdominal segment VII, ventral aspect; C, valvae with phallus, ventral aspect.
FIGURE 6 in First report of Meris paradoxa Rindge (Geometridae: Ennominae) in the central mountains of Mexico, description of its female and a comparison of caterpillar variation among kin
FIGURE 6. Caterpillar of Acronyctodes cautama found feeding on Cymbalaria muralis with caterpillars of M. paradoxa from Encarnación (Hidalgo, Mexico).
FIGURE 5 in First report of Meris paradoxa Rindge (Geometridae: Ennominae) in the central mountains of Mexico, description of its female and a comparison of caterpillar variation among kin
FIGURE 5. Caterpillar variation documented in species of Meris. (A, B, C) M. paradoxa from Arizona, US; (D) M. paradoxa from Hidalgo, MX; (E) M. alticola from Colorado and (F) from Arizona. Source of images: (A) southwestmoths.org Jennifer L. Bundy; (B, C) bugguide.net; (D) IJGO; (E) bugwood.org, William M. Ciesla, Forest Health Management International; (F) CUIC John G. Franclemont.
Lepidoptera caterpillars barcodes in FASTA format
<p>The dataset contains COI barcodes of Lepidoptera caterpillars collected from a subtropical forest in Jiangxi, China.</p>
Strong foraging preferences for Ribes alpinum (Saxifragales: Grossulariaceae) in the polyphagous caterpillars of Buff tip moth Phalera bucephala (Lepidoptera: Notodontidae)
<ol> <li>Herbivorous insects such as butterflies and moths are essential to natural and agricultural systems due to pollination and pest outbreaks. However, our knowledge of butterflies' and moths' nutrition is fragmented and limited to few common, charismatic, or problematic species.</li> <li>This gap precludes our complete understanding of herbivorous insects' natural history, physiological and behavioural adaptations that drive how species interact with their environment, the consequences of habitat destruction and climate change to invertebrate biodiversity, and pest outbreak dynamics.</li> <li>Here, we first report a population of the Buff tip moth <i>Phalera bucephala </i>(Lepidoptera: Notodontidae) feeding on a previously unknown family of hostplants, the mountain currant <i>Ribes alpinum </i>(Saxifragales: Grossulariaceae). This is the first report of a Notodontid moth feeding on Grossulariaceae hosts.</li> <li>Using no-choice and choice assays, we showed that <i>P. bucephala </i>has strong foraging preferences for a previously unknown hosts, the <i>R. alpinum </i>but also, although to a smaller extent, <i>R. uva-crispa </i>compared with a previously known host (the maple <i>Acer sp.</i>).</li> <li>These findings demonstrate that <i>P. bucephala </i>feed on – and show strong preference for Grossulariaceae hostplants, indicating flexible physiological mechanisms to accommodate hosts plants from various families. This makes this species a potential model organism to study the behavioural and physiological mechanisms underpinning insect-plant interactions and diet breadth evolution.</li> <li>We discuss the broad ecological implications of this observations to the biology of the species, the potential negative effects of interspecific competition with endemic specialist moths, and highlight questions for future research.</li> </ol>
FIGURE 43 in Revision of the New World species of Houghia Coquillett (Diptera, Tachinidae) reared from caterpillars in Area de Conservación Guanacaste, Costa Rica
FIGURE 43. General morphology of Houghia spathulata sp. nov. a. Dorsal habitus. b. Frontal view of head. c. Lateral habitus. d. Posterior view of male terminalia. e. Lateral view of male terminalia. f. Ventral view of sternite 5 + segments 7+8.
FIGURE 42 in Revision of the New World species of Houghia Coquillett (Diptera, Tachinidae) reared from caterpillars in Area de Conservación Guanacaste, Costa Rica
FIGURE 42. General morphology of Houghia sexmaculata sp. nov. a. Dorsal habitus. b. Frontal view of head. c. Lateral habitus. d. Posterior view of male terminalia. e. Lateral view of male terminalia.
FIGURE 39 in Revision of the New World species of Houghia Coquillett (Diptera, Tachinidae) reared from caterpillars in Area de Conservación Guanacaste, Costa Rica
FIGURE 39. General morphology of Houghia parmata sp. nov. a. Dorsal habitus. b. Frontal view of head. c. Lateral habitus. d. Posterior view of male terminalia. e. Lateral view of male terminalia. f. Ventral view of sternite 5 + segments 7+8.
FIGURE 34 in Revision of the New World species of Houghia Coquillett (Diptera, Tachinidae) reared from caterpillars in Area de Conservación Guanacaste, Costa Rica
FIGURE 34. General morphology of Houghia matarritai sp. nov. a. Dorsal habitus. b. Frontal view of head. c. Lateral habitus. d. Posterior view of male terminalia. e. Lateral view of male terminalia. f. Ventral view of sternite 5 + segments 7+8.
ScienceDex guides
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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.