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1,023 results for “host record”
Figs 10–12 in Neofidia Strother, a new name for Fidia Baly, 1863 and redescription of Fidia kanaraensis (Jacoby, 1895) with a new host record and notes on natural history (Coleoptera, Chrysomelidae, Eumolpinae)
Figs 10–12. Endophallus of Fidia kanaraensis (Jacoby, 1895) comb. nov., lateral view. 10. Endophallus, everted through apical opening or ostium. 11. Endophallus, everted through basal opening. 12. Apical phallomere with three pairs of lobes. Abbreviations: AP = apical phallomere; AS = apical sclerite; BP = basal phallomere; L 1 = first pair of lobes; L 2 = second pair of lobes; L 3 = third pair of lobes; MP = median phallomere.
Figure 5 from: Sakagami K, Shimizu S, Fujie S, Maeto K (2020) Revisiting the host use and phylogeny of Colastomion Baker (Hymenoptera, Braconidae, Rogadinae), with a new host record from Japan. Journal of Hymenoptera Research 77: 175-186. https://doi.org/10.3897/jhr.77.52774
Figure 5 Bayesian majority-rule consensus tree of Colastomion species based on CO1. Posterior probabilities (> 0.80) and bootstrap values (> 50%) are indicated at below of each node (PP / BT). Lifestyles are indicated as shown in Quicke et al. (2012), except for C. formosanum.
Figure 4 from: Sakagami K, Shimizu S, Fujie S, Maeto K (2020) Revisiting the host use and phylogeny of Colastomion Baker (Hymenoptera, Braconidae, Rogadinae), with a new host record from Japan. Journal of Hymenoptera Research 77: 175-186. https://doi.org/10.3897/jhr.77.52774
Figure 4 A larva of Nevrina procopia (Stoll) mummified by Colastomion formosanum (Watanabe), lateral view.
Figure 2 from: Sakagami K, Shimizu S, Fujie S, Maeto K (2020) Revisiting the host use and phylogeny of Colastomion Baker (Hymenoptera, Braconidae, Rogadinae), with a new host record from Japan. Journal of Hymenoptera Research 77: 175-186. https://doi.org/10.3897/jhr.77.52774
Figure 2 Female adult wasp of Colastomion formosanum (Watanabe) from Amami Ōshima Is., Japan A habitus B head, frontal view C head and mesosoma, lateral view D head and mesosoma, dorsal view E propodeum, dorsal view F metasoma, dorsal view.
Figure 8 from: Dabek EZ, Whitfield JB, Hallwachs W, Janzen DH (2020) Two new reared species of Heteropteron Brullé (Hymenoptera, Braconidae, Cardiochilinae) from northwest Costa Rica, with the first definitive host records for the genus. Journal of Hymenoptera Research 77: 151-165. https://doi.org/10.3897/jhr.77.50577
Figure 8 Heteropteron hasegawai Dabek & Whitfield A lateral view of mesosoma B lateral view of hypopygium tip and ovipositor with sheaths C tibial spines D last tarsal segment, showing pectinate claws and whitish arolium.
Figure 5 from: Dabek EZ, Whitfield JB, Hallwachs W, Janzen DH (2020) Two new reared species of Heteropteron Brullé (Hymenoptera, Braconidae, Cardiochilinae) from northwest Costa Rica, with the first definitive host records for the genus. Journal of Hymenoptera Research 77: 151-165. https://doi.org/10.3897/jhr.77.50577
Figure 5 Heteropteron kidonoi Dabek & Whitfield A lateral view of mesosoma B lateral view of hypopygium tip and ovipositor with sheaths C tibial spines D last tarsal segment, showing pectinate claws and dark arolium.
Figure 7 from: Dabek EZ, Whitfield JB, Hallwachs W, Janzen DH (2020) Two new reared species of Heteropteron Brullé (Hymenoptera, Braconidae, Cardiochilinae) from northwest Costa Rica, with the first definitive host records for the genus. Journal of Hymenoptera Research 77: 151-165. https://doi.org/10.3897/jhr.77.50577
Figure 7 Heteropteron hasegawai Dabek & Whitfield A frontal view of face B dorsal view of frons and ocelli, showing y-shaped ridge C wings, showing banding pattern.
Figure 1 from: Dabek EZ, Whitfield JB, Hallwachs W, Janzen DH (2020) Two new reared species of Heteropteron Brullé (Hymenoptera, Braconidae, Cardiochilinae) from northwest Costa Rica, with the first definitive host records for the genus. Journal of Hymenoptera Research 77: 151-165. https://doi.org/10.3897/jhr.77.50577
Figure 1 A live photo of Stenoma cathosiota caterpillar, host of Heteropteron kidonoi Dabek & Whitfield, sp. nov. B live photo of Carthara abruptaDHJ02 caterpillar, host of H. hasegawai Dabek & Whitfield, sp. nov.
Figure 4 from: Dabek EZ, Whitfield JB, Hallwachs W, Janzen DH (2020) Two new reared species of Heteropteron Brullé (Hymenoptera, Braconidae, Cardiochilinae) from northwest Costa Rica, with the first definitive host records for the genus. Journal of Hymenoptera Research 77: 151-165. https://doi.org/10.3897/jhr.77.50577
Figure 4 Heteropteron kidonoi Dabek & Whitfield A frontal view of face B dorsal view of frons and occiput, showing y-shaped ridge C wings, showing banding pattern.
Figure 6 from: Tennakoon DS, Thambugala KM, Wanasinghe DN, Gentekaki E, Promputtha I, Kuo C-H, Hyde KD (2020) Additions to Phaeosphaeriaceae (Pleosporales): Elongaticollum gen. nov., Ophiosphaerella taiwanensis sp. nov., Phaeosphaeriopsis beaucarneae sp. nov. and a new host record of Neosetophoma poaceicola from Musaceae. MycoKeys 70: 59-88. https://doi.org/10.3897/mycokeys.70.53674
Figure 6 Neosetophoma poaceicola (MFLU 18–2597, new host record) a appearance of ascomata on host b close up of ascomata c vertical section through ascoma d peridium e pseudoparaphyses f–h asci i–k ascospores l germinated ascospore in PDAm colony from above n colony from below. Scale bars: 50 µm (c), 20 µm (d), 30 µm (e–h), 15 µm (i–l).
Figure 5 from: Tennakoon DS, Thambugala KM, Wanasinghe DN, Gentekaki E, Promputtha I, Kuo C-H, Hyde KD (2020) Additions to Phaeosphaeriaceae (Pleosporales): Elongaticollum gen. nov., Ophiosphaerella taiwanensis sp. nov., Phaeosphaeriopsis beaucarneae sp. nov. and a new host record of Neosetophoma poaceicola from Musaceae. MycoKeys 70: 59-88. https://doi.org/10.3897/mycokeys.70.53674
Figure 5 Phaeosphaeriopsis beaucarneae (MFLU 18-2586, paratype) a appearance of conidiomata on host b close up of conidiomata c vertical section through conidioma d conidiomatal wall e, f conidiogenous cells and developing conidia g–i conidia j germinated conidium in PDAk colony from above l colony from below. Scale bars: 100 µm (c), 20 µm (d), 3 µm (e, f), 5 µm (g–j).
Figure 4 from: Tennakoon DS, Thambugala KM, Wanasinghe DN, Gentekaki E, Promputtha I, Kuo C-H, Hyde KD (2020) Additions to Phaeosphaeriaceae (Pleosporales): Elongaticollum gen. nov., Ophiosphaerella taiwanensis sp. nov., Phaeosphaeriopsis beaucarneae sp. nov. and a new host record of Neosetophoma poaceicola from Musaceae. MycoKeys 70: 59-88. https://doi.org/10.3897/mycokeys.70.53674
Figure 4 Phaeosphaeriopsis beaucarneae (MFLU 18-2586, holotype) a appearance of ascomata on host b close up of ascoma c vertical section through ascoma d peridium e pseudoparaphyses f–i asci j–n ascospores o germinated ascospore in PDAp colony from above q colony from below. Scale bars: 100 µm (c), 15 µm (d), 50 µm (e–i), 10 µm (j–o).
Figure 2 from: Tennakoon DS, Thambugala KM, Wanasinghe DN, Gentekaki E, Promputtha I, Kuo C-H, Hyde KD (2020) Additions to Phaeosphaeriaceae (Pleosporales): Elongaticollum gen. nov., Ophiosphaerella taiwanensis sp. nov., Phaeosphaeriopsis beaucarneae sp. nov. and a new host record of Neosetophoma poaceicola from Musaceae. MycoKeys 70: 59-88. https://doi.org/10.3897/mycokeys.70.53674
Figure 2 Elongaticollum hedychii (MFLU 18-2542, holotype) a specimen b appearance of conidiomata on host c close up of conidiomata on host d vertical section through conidioma e, f squash mount of conidioma g conidioma wall h, i elongated conidiomatal necks j conidiogenous cells k conidia l, m germinated conidia n colony from below o colony from above p, q pycnidia formed on PDA. Scale bars: 100 µm (c), 50 µm (d–h), 10 µm (g), 30 µm (i), 3 µm (j–m), 100 µm (p, q).
Figure 1 from: Tennakoon DS, Thambugala KM, Wanasinghe DN, Gentekaki E, Promputtha I, Kuo C-H, Hyde KD (2020) Additions to Phaeosphaeriaceae (Pleosporales): Elongaticollum gen. nov., Ophiosphaerella taiwanensis sp. nov., Phaeosphaeriopsis beaucarneae sp. nov. and a new host record of Neosetophoma poaceicola from Musaceae. MycoKeys 70: 59-88. https://doi.org/10.3897/mycokeys.70.53674
Figure 1 RAxML tree inferred from combined dataset of ITS, LSU, SSU and tef1-α partial sequences of 168 strains of Phaeosphaeriaceae. Bootstrap support values for maximum likelihood (ML), maximum parsimony (MP) values ≥70%, and Bayesian posterior probabilities (BYPP) ≥0.95 are given above each branch respectively. The new species are highlighted in red, and the new record in green. Ex-type strains are in bold. The tree is rooted by Leptosphaeria doliolum (CBS 505.75) and Paraleptosphaeria dryadis (CBS 643.86).
Figure 3 from: Tennakoon DS, Thambugala KM, Wanasinghe DN, Gentekaki E, Promputtha I, Kuo C-H, Hyde KD (2020) Additions to Phaeosphaeriaceae (Pleosporales): Elongaticollum gen. nov., Ophiosphaerella taiwanensis sp. nov., Phaeosphaeriopsis beaucarneae sp. nov. and a new host record of Neosetophoma poaceicola from Musaceae. MycoKeys 70: 59-88. https://doi.org/10.3897/mycokeys.70.53674
Figure 3 Ophiosphaerella taiwanensis (MFLU 18-2534, holotype) a, b appearance of ascomata on host c close-up of ascomata d vertical section through ascoma e apex of ascoma f peridium g pseudoparaphyses h–j asci k, l ascospores m germinated ascospore in PDAn colony from above o colony from below. Scale bars: 100 µm (d, e), 15 µm (f), 50 µm (g–m).
Figure 1 in First record of a non-pollinating fig wasp (Hymenoptera: Sycophaginae) from Dominican amber, with estimation of the size of its host figs
Figure 1. Idarnes thanatos sp. nov. female. (a) habitus in lateral view; (b) antenna; (c) detail of antenna; (d) mesosoma in dorsal view; (e) detail of profemur and protibia; (f) wings.
Figure 3 in Observations on the nesting behaviour of the spider wasp Eragenia congrua (Hymenoptera: Pompilidae), with the first record of the host
Figure 3. (A, B) Eragenia congrua inside the nest pulling the spider by the spinnerets; (C) opened nest of E. congrua with the host spider in the bottom and entrance closed with pieces of wood; (D) host spider with an egg (indicated by arrow) inside an opened nest of E. congrua.
Figure 2 in Observations on the nesting behaviour of the spider wasp Eragenia congrua (Hymenoptera: Pompilidae), with the first record of the host
Figure 2. (A) Spider host stored underneath a loose piece of bark (indicated by arrow) and Eragenia congrua searching for the nest entrance; (B) Eragenia congrua filling nest entrance with pieces of wood. (C) Eragenia congrua grooming a spider before storing it in the nest; (D) Eragenia congrua grasping spider by the base of chelicerae.
FIGURES 15–16 in New genera and host plant records of Asteraceaefeeding Tephritidae (Diptera) from Brazil
FIGURES 15–16. Lewinsohnia magna, female habitus: 15, dorsal; 16, lateral.
FIGURES 1–3 in New genera and host plant records of Asteraceaefeeding Tephritidae (Diptera) from Brazil
FIGURES 1–3. Wings: 1, Cipomyia totofusca; 2, Eutretopsis albipunctata; and Lewinsohnia magna.
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.