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FIGURE 9 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 9. ML tree figuring the relationships of the Eurytomidae based on the barcoding fragment of the nuclear gene EF1-α. Annotations identical to those of the Fig. 7.
FIGURES 16A–G. Bruchophagus asphodelinae. A–F in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 16A–G. Bruchophagus asphodelinae. A–F, ♀. G, ♂. A, head in frontal view. B, same in dorsal view. C, pedicel and flagellum. D, apex of antenna mounted on slide. E, mesosoma in dorsal view. F, fore wing venation. G, antenna. All specimens ex A. lutea, Vizzini, Monte Iblei, Sicilia, Italy.
FIGURE 8 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 8. ML tree figuring the relationships of the Eurytomidae based on the barcoding fragment of the mitochondrial gene CytB. Annotations identical to those of the Fig. 7.
FIGURE 7 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 7. ML tree figuring the relationships of the Eurytomidae associated with asphodels based on the barcoding fragment of the mitochondrial gene COI. RAxML analysis with 1000 rbs bootstrap replicates (support>70 % are indicated below nodes). Each line represents a sequenced individual with information in the following order: molecular code, species, country, region or island and associated asphodel.
FIGURES 6A–F in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 6A–F. Morphology of larval instars. A–C. Bruchophagus abscedus. A, fully grown larva. B, mouthparts. C, head in frontal view. D–F. Eurytoma asphodeli. D, fully grown larva. E, mouthparts. F, head in frontal view.
FIGURES 33A–F. A–D in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 33A–F. A–D. Puklina depilata Graham, ex A. ramosus from Aléria, Vaccaja, Corse, France. A–C, ♀; D, ♂. E–F. Puklina gelincika Doğanlar, paratype ♀ from Sivas, Turkey. A, habitus. B, antenna. C, head and mesosoma in dorsal view. D, genitalia. E, mesosoma in dorsal view. F, metasoma in dorsal view.
FIGURES 5A–F. A–B in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 5A–F. A–B, Female of Bruchophagus abscedus ovipositing in a seed of A. ramosus. C, female of Bruchophagus gijswijti Askew & Ribes sp. n. ovipositing in a seed of A. fistulosus. D, female of Eurytoma asphodeli on a flower of A. ramosus. E–F, Female of E. asphodeli ovipositing in seeds of A. ramosus (all photos by J. Lecomte, taken at Banyuls-sur-Mer, Pyrénées-Orientales, France).
FIGURES 3A–B in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 3A–B. Emergence holes in seed capsules of Asphodelus spp., Banyuls-sur-Mer, Pyrénées Orientales, France. A, A. ramosus. B, A. fistulosus.
FIGURE 19 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 19. Bruchophagus lecomtei Delvare sp. n., ♀ ex A. fistulosus, Banyuls-sur-Mer, Pyrénées-Orientales, France.
FIGURES 2A–F. A–B. A. albus albus. A in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 2A–F. A–B. A. albus albus. A, flowering in open mixed woodland near Châtellerault, Vienne, France, 9.v.2009. B, apex of flower spike. C–D. A. fistulosus cirerae. C, flowering in dry grassland near Torres de Segre, Lleida, Spain, 28.iv.2009. D, four flower spikes. E, A. albus delphinensis flowering at Saint-Dalmas-le-Selvage, Parc National du Mercantour, Alpes- Maritimes, France, 2000 m, 28.vi.2012. F, collecting chalcid wasps on A. ramosus at San Fratello, Passo dei Tre, in the Monte Nebrodi, Sicilia, Italy, 775 m, 26.vi.2014.
FIGURE 13 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 13. Bruchophagus insulare Delvare sp. n., ♀ ex A. ramosus, Vizzini, Monte Iblei, Sicilia, Italy.
FIGURE 1 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 1. Bruchophagus abscedus Askew sp. n., ♀ reared from A. ramosus, Banyuls-sur-Mer, Pyrénées-Orientales, France.
FIGURES 22A–G. Eurytoma asphodeli. A–F in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 22A–G. Eurytoma asphodeli. A–F, ♀. G, ♂. A, head in frontal view. B, same in posterior view. C, same in anterolateral view. D, mesopleuron in anterolateral view. E, propodeum. F, procoxa in anterior view. G, antenna. Abbreviations. epm, epicnemium; epmc, epicnemial carina; epst2-vf, ventral shelf of mesepisternum; pgl, postgenal lamina; ppt-mvt, medioventral tooth of prepectal belt. A, B & C, ex Asphodelus sp., Şirinköy village, Gökçe Ada Island, Aegean Sea, Turkey. D, on collected on spike of A. cerasiferus, Lapanouse-de-Cernon, Aveyron, France. E & G, ex A. albus delphinensis from Vielha, Lleida, Spain. F, ex A. cerasiferus, Aitona, Lleida, Spain.
FIGURE 40 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 40. Trophic web of A. albus delphinensis. Horizontal scale bars proportional to the numbers of reared specimens examined that are indicated in the bars. Arrows pointing out the direction of the trophic relationships: from phytophagous Bruchophagus spp. to the asphodel and from parasitoids to chalcid hosts.
FIGURES 25A–G. A–E, Eurytoma genale. A–D in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 25A–G. A–E, Eurytoma genale. A–D, ♀; E, ♂. A, head in frontal view. B, same in lateral view. C, antenna. D, pro- and mesonotum. E, antenna. F–G. Eurytoma pistaciae Rondani, ♀. F, antenna. G, hind leg and metasoma. All specimens from Vizzini, Monte Iblei, Sicilia, Italy; E. genale ex A. lutea, E. pistaciae from A. ramosus.
FIGURE 36 in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURE 36. Distribution map of Eurytoma asphodeli, E. genale and E. pistaciae (only reared from asphodels)
FIGURES 29A–F in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 29A–F. Idiomacromerus asphodeli Ribes sp. n., paratypes ex A. fistulosus from Vinaròs, Castellòn, Spain. A–E, ♀. F, ♂. A, habitus. B, head in dorsal view. C, same in frontal view. D, antenna. E, mesosoma in dorsal view. F, antenna.
FIGURES 30A–E in Exploring insect biodiversity: the parasitic Hymenoptera, chiefly Chalcidoidea, associated with seeds of asphodels (Xanthorrhoeaceae), with the description of nine new species belonging to Eurytomidae and Torymidae
FIGURES 30A–E. Eupelmus microzonus Förster. A–C, ♀. D–E, ♂. A, habitus. B, mesotarsus in lateroventral view. C, fore wing venation. D, habitus. E, fore wing venation. Specimens ex A. ramosus from Vizzini, Monte Iblei, Sicilia, Italy.
FIGURES 125–126. Afroptera spp and their associated labels. 125 in Revision of the southern African genera Nemopterella Banks and Nemia Navás (Neuroptera: Nemopteridae: Nemopterinae), with descriptions of new genera and species
FIGURES 125–126. Afroptera spp and their associated labels. 125, Paratype ♂, A. parva (Tjeder); 126, Holotype ♂, A. obtusa (Tjeder). Photos: Simon van Noort (SAMC).
FIGURE 1 in Neoaulonastus sidorchukae, a new species of quill mites (Acariformes Syringophilidae) associated with the purple-rumped sunbird Leptocoma zeylonica (Linnaeus) (Passeriformes: Nectariniidae) from Sri Lanka
FIGURE 1. Neoaulonastus sidorchukae sp. nov. Female. A, dorsal view; B, ventral view; C, peritremes; D, fan-like seta p'III. Scale bars: A, B = 50 μm, C, D = 20 μm.
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.