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FIGURE 135 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURE 135. Cotesia vestalis (female, Pune-IIE 23182)—E. Profile view F. Mesopleuron and metasoma G. Wings.
FIGURES 31–38. 31 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURES 31–38. 31. Coccon of Buluka horni Gupta on Mangifera indica L.; 32. Cocoon of Buluka nr. noyesi from parasitized caterpillar of?Psimada quadripennis Walker; 33. Parasitized caterpillar of Udaspes folus (Cramer) with cocoons of Cotesia erionotae (Wilkinson); 34. Cocoons of Cotesia flavipes Cameron with caterpillar of Chilo partellus (Swinhoe) on maize; 35. Healthy caterpillar of Pieris brassicae L.; 36. Gregarious yellow cocoons of Cotesia glomerata (Linnaeus) with parasitized caterpillar of Pieris brassicae; 37. Solitary cocoon of Cotesia vestalis (Haliday) with caterpillars of Plutella xylostella (L.); 38. Cocoons of Cotesia ruidus Wilkinson with parasitized caterpillar of Eutectona machaeralis (Walker).
FIGURES 15–22. 15 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURES 15–22. 15. Caterpillar of Pammene critica Meyrick; 16. Apanteles mohandasi Sumodan & Narendran cocoon with parasitized caterpillar of Pammene critica; 17. Gregarious cocoons of Apanteles phycodis Viereck from host caterpillar Argina syringa Cramer; 18. Apanteles phycodis emerged from cocoons of Phycodes radiata Ochsenheimer; 19. Ficus sp. leaves with cocoon mass of Apanteles phycodis inside cottony mesh; 20. Parasitized caterpillar with cocoons of Apanteles phycodis (after removing cottony mesh); 21. Host caterpillar of Apanteles platyedrae Wilkinson; 22. Parasitized caterpillar with cocoons of Apanteles platyedrae.
FIGURES 9–14. 9 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURES 9–14. 9. Cocoons of Apanteles galleriae Wilkinson in debris of Galleria mellonella L.; 10. Enlarged view of Apanteles galleriae cocoons with caterpillars of Galleria mellonella; 11. Host caterpillar of Apanteles inquisitor Wilkinson; 12. Parasitized caterpillar of Pelopidas conjuncta (Herrich-Schaffer); 13. Parasitized caterpillar of Pelopidas conjuncta inside cottony mesh; 14. Parasitized caterpillar of Pelopidas mathias (Fab.) with Apanteles javensis Rohwer larvae spinning cocoons.
FIGURES 23–30. 23 in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURES 23–30. 23. Healthy caterpillar of Parotis marginata (Hampson); 24. Parasitized caterpillar of Parotis marginata; 25. Parasitized caterpillar of Parotis marginata with Dolichogenidea stantoni (Ashmead) cocoons; 26. Dolichogenidea stantoni cocoons along with healthy caterpillar of Olene?mendosa Hubner undergoing pupation; 27. Solitary cocoon of Apanteles taragamae Viereck with undetermined leaf webber; 28. Cocoons of Apanteles taragamae with caterpillar of Diaphania indica Saunders; 29. Healthy caterpillar of Acontia marmoralis Fab.; 30. Parasitized caterpillar of Acontia marmoralis with Apanteles sp. 01 cocoon.
FIGURES 1C–8. 1C in Diversity, host association, and cocoon variability of reared Indian Microgastrinae (Hymenoptera: Braconidae)
FIGURES 1C–8. 1C. Healthy caterpillars of Syllepte derogata (Fab.) on cotton; 2. Parasitized caterpillar of Syllepte derogata; 3. Cocoon of Apanteles diparopsidis Lyle; 4. Healthy caterpillar of Arhopala amantes (Hewitson); 5. Parasitized caterpillar of Arhopala amantes with cocoons of Apanteles folia Nixon; 6. Tajuria cippus (Fab.) caterpillar; 7. Parasitized caterpillar of Tajuria cippus with cocoon of Apanteles folia; 8. Spindasis vulcanus (Fab.) caterpillar with cocoon of Apanteles folia.
FIGURE 6 in Complete larval development of Thor amboinensis (De Man, 1888) (Decapoda: Thoridae) described from laboratory-reared material and identified by DNA barcoding
FIGURE 6. Thor amboinensis. Decapodid: A, total animal, lateral view; B, antennule; C, antenna; D, mandibles; E, maxillule; F, maxilla; G, first maxilliped; H, second maxilliped; I, third maxilliped; I', detail of proximal segment of third maxilliped endopod; I'', detail of distal segment of third maxilliped endopod; J, first pereiopod; K, second pereiopod; L, third pereiopod; M, fourth pereiopod; N, fifth pereiopod; O, first pleopod; P, second pleopod; Q, third pleopod; R, fourth pleopod; S, fifth pleopod; T, telson and uropods; T', detail of telson. Scale bars: 0.5 mm (B–D, I–T); 0.1 mm (A, E–H, I', I'', T').
FIGURE 3 in Complete larval development of Thor amboinensis (De Man, 1888) (Decapoda: Thoridae) described from laboratory-reared material and identified by DNA barcoding
FIGURE 3. Thor amboinensis. Third zoea: A, total animal, lateral view; B, second maxilliped; C, first pereiopod; D, second pereiopod; E, third pereiopod; F, telson and uropods. Fourth zoea: G, antenna; H, maxillule; I, maxilla; J, second pereiopod; K, third pereiopod; L, telson and uropods. Fifth zoea: M, total animal, lateral view; N, antennule; O, third pereiopod; P, fourth and fifth pereiopods; Q, telson and uropods; Q', detail of telson. Scale bars: 0.5 mm (F, L, O, Q); 0.1 mm (A–E, G–K, M–N, P, Q').
FIGURE 1 in Complete larval development of Thor amboinensis (De Man, 1888) (Decapoda: Thoridae) described from laboratory-reared material and identified by DNA barcoding
FIGURE 1. Phylogenetic tree of representatives of the family Thoridae and one outgroup based on the mitochondrial cytochrome c oxidase I (COI) barcode gene sequences (658 bp). Sequences were aligned with those available in GenBank. The phylogenetic reconstruction was carried out with the Maximum Likelihood (ML) analysis, implemented in MEGA version 6.0 (Tamura et al. 2013). Numbers are support values for 10000 bootstraps.
FIGURE 5 in Complete larval development of Thor amboinensis (De Man, 1888) (Decapoda: Thoridae) described from laboratory-reared material and identified by DNA barcoding
FIGURE 5. Thor amboinensis. Eighth zoea: A, total animal, lateral view; B, antennule; C, antenna; D, mandibles; E, first pereiopod; E', detail of propodus and dactylus of first pereiopod; F, second pereiopod; G, third pereiopod; G', detail of propodus and dactylus of third pereiopod; H, fourth pereiopod; I, fifth pereiopod; J, first pleopod; K, second pleopod; L, third pleopod; M, fourth pleopod; N, fifth pleopod; O, telson and uropods. Scale bars: 0.5 mm (B, C, E–G, I–O); 0.1 mm (A, D, E', G', H).
FIGURE 2 in Complete larval development of Thor amboinensis (De Man, 1888) (Decapoda: Thoridae) described from laboratory-reared material and identified by DNA barcoding
FIGURE 2. Thor amboinensis. First zoea: A, total animal, lateral view; B, antennule; C, antenna; D, mandibles; E, maxillule; F, maxilla; G, first maxilliped; H, second maxilliped; I, third maxilliped; J, first pereiopod; K, telson. Second zoea: L, total animal, lateral view; M, antennule; N, antenna; O, first pereiopod; P, second pereiopod; Q, telson. Scale bars: 0.5 mm (A, K, Q); 0.1 mm (B–J, L–P).
FIGURE 4 in Complete larval development of Thor amboinensis (De Man, 1888) (Decapoda: Thoridae) described from laboratory-reared material and identified by DNA barcoding
FIGURE 4. Thor amboinensis. Sixth zoea: A, total animal, dorsal view; B, antenna; C, third pereiopod; D, fourth pereiopod; E, fifth pereiopod; F, telson and uropods. Seventh zoea: G, total animal, lateral view; H, detail of antennules exopod; I, maxillule; J, maxilla; K, first maxilliped; L, second maxilliped; M, third maxilliped; N, detail of dactylus of third pereiopod; O, fourth pereiopod; P, fifth pereiopod; Q, pleopods. Scale bars: 0.5 mm (B, D, E, F); 0.1 mm (A, C, G–M, O–Q).
Figure 5 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 5. Megalopa of Rochinia gracilipes A. Milne Edwards, 1875. (A) dorsal view, pereiopods drawn trunctated; (B) lateral view; (C) antennules, aesthetascs drawn truncated; (D) antenna; (E) mandible; (F) maxillule; (G) maxilla. Scale bars = 0.1 mm.
Figure 4 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 4. Second zoea of Rochinia gracilipes A. Milne Edwards, 1875. (A) maxilliped I; (B) maxilliped II; (C) maxilliped III buds; (D) pereiopod buds; (E) dorsal view of abdomen and telson; (F) magnified view of right furca. Long setae maxillipeds I and II (A and B) were drawn truncated. Scale bars = 0.1 mm.
Figure 1 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 1. First zoea of Rochinia gracilipes A. Milne Edwards, 1875. (A) lateral view; (B) magnified latero-dorsal view showing the short rostrum; (C) antennule; (D) antenna; (E) mandible; (F) maxillule; (G) maxilla. Scale bars = 0.1 mm.
Figure 7 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 7. Megalopa of Rochinia gracilipes A. Milne Edwards, 1875. (A) maxilliped III; (B) pereiopod I; (C) pereiopod II; (D) dorsal view of abdomen; (E) pleopod I; (F) pleopod II; (G) pleopod III; (H) pleopod IV; (I) uropod. Long setae of all pleopods and uropods (E–I) were drawn truncated. Scale bars = 0.1 mm.
Figure 3 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 3. Second zoea of Rochinia gracilipes A. Milne Edwards, 1875. (A) lateral view; (B) magnified latero-dorsal view showing the short rostrum; (C) antennule; (D) antenna; (E) mandible; (F) maxillule; (G) maxilla. Scale bars = 0.1 mm.
Figure 2 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 2. First zoea of Rochinia gracilipes A. Milne Edwards, 1875. (A) maxilliped I; (B) maxilliped II; (C) maxilliped III buds; (D) pereiopod buds; (E) dorsal view of abdomen and telson; (F) magnified view of left furca. Long setae of the maxilliped I (A) were drawn truncated. Scale bars = 0.1 mm.
Figure 6 in The larval development of the spider crab Rochinia gracilipes (Crustacea: Majoidea: Epialtidae: Pisinae) reared in the laboratory
Figure 6. Megalopa of Rochinia gracilipes A. Milne Edwards, 1875. (A). maxilliped I; (B) maxilliped II. Scale bars = 0.1 mm.
FIGURES 1–8 in Rearing the larval stages of Distoleon tetragrammicus (Fabricius, 1798) (Neuroptera: Myrmeleontidae) from egg to adult, with notes on their behaviour
FIGURES 1–8. Adult, egg, first, second and third instar larvae of D. tetragrammicus. 1. Adult of D. tetragrammicus. 2. Unhatched egg viewed with light microscope, 3. First instar larva, dorsal view, 4. Same, ventral view, 5. Second instar larva, dorsal view, 6. Same, ventral view, 7. Third instar larva, dorsal view, 8. Same, ventral view.
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.