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199 results for “digger wasps”
FIGURES 17–24. 17–19 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 17–24. 17–19. Gastrosericus alwathbaensis ♁ holotype; 17. Sterna. 18. Apex of abdomen. 19. Forewing. 20–24. Gastrosericus barqaalsuqoorensis; 20. ♀ holotype, lateral view. 21. ♀ holotype, clypeus. 22. tergum 6. 23. ♁ lateral view. 24. ♁ face.
FIGURES 25–32. 25–26 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 25–32. 25–26. Gastrosericus drewseni; 25. ♀ from Israel, lateral view. 26. ♁ from Israel, lateral view. 27–32. Gastrosericus electus; 27. ♀ lateral view. 28. ♀ face. 29. # pronotum laterally. 30. ♀ tergum VI. 31. ♁ lateral view. 32. ♁ face.
FIGURES 89–96. 89–94. Fig. 89 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 89–96. 89–94. Fig. 89. Odontosphex leleji ♁; 89. Dorsal view. 90. Face. 91. Ocellar region. 92. Antenna. 93. Forewing. 94. Genitalia, lateral view. 95–96. Oxybelus sajae ♀ holotype; 95. Laterodorsal view. 96. Face.
FIGURES 9–16. 9–14 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 9–16. 9–14. Gastrosericus albidaaensis; 9. ♀ holotype, lateral view, 10. ♀ holotype, clypeus. 11. ♁ lateral view. 12. ♁ clypeus. 13. ♁ apex of abdomen. 14. ♁ sterna. 15–16. Gastrosericus alwathbaensis ♁ holotype; 15. lateral view., 16. face.
FIGURES 81–88. 81–86 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 81–88. 81–86. Gastrosericus waltlii; 81. ♀ from Yemen, lateral view. 82. ♀ from Yemen, face. 83. ♀ from Yemen, clypeus. 84. ♁ from Morocco, lateral view. 85. ♁ from Morocco, forewing. 86. ♁ from Morocco, sterna. 87–88. Nitela feltoni ♁; 87. lateral view. 88. Face.
FIGURES 113–116 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 113–116. Parapiagetia huwrobertsi; 113. ♀ holotype, clypeus. 114. ♀ holotype, tergum VI. 115. ♁ lateral view. 116. ♁ face.
FIGURES 105–112. 105 in Additions to the digger wasps (Hymenoptera, Spheciformes) of the United Arab Emirates with description of ten new species
FIGURES 105–112. 105. Parapiagetia arabica ♁ mesosoma and tergum I, dorsal view. 106–110. Parapiagetia haladai ♁ holotype; 106. Lateral view. 107. Face. 108. Antenna. 109. Forwing.110. Genitalia, lateral view. 111–112. Parapiagetia huwrobertsi ♀ holotype; 111. Lateral view. 112. Face.
Data from: Release from prey preservation behavior via prey switch allowed diversification of cuticular hydrocarbon profiles in digger wasps
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Supplementary Table S1 in Phylogenetic notes on the rare Mediterranean digger wasp Psenulus fulvicornis (Schenck, 1857) (Hymenoptera: Crabronidae) new to Switzerland
Supplementary Table S1 Collection information for sequences produced in our lab. Sequences acquired from GenBank (GB) or the Barcode of Life Data System (BOLD) are listed below.
Supplementary Figure S1 in Phylogenetic notes on the rare Mediterranean digger wasp Psenulus fulvicornis (Schenck, 1857) (Hymenoptera: Crabronidae) new to Switzerland
Supplementary Figure S1 Phylogenetic tree representing species of the wasp genus Psenulus (Kohl, 1897). Bayesian analysis was based on cox1 sequences (201 polymorphic nucleotides out of 637 sites), including 37 Psenulus and five outgroup specimens [Diodontus minutus (Fabricius, 1793) and Pemphredon lethifer (Shuckard, 1837)]. The analysis was performed with the substitution model GTR+G, estimated with jModelTest 0.1.1, and run in two chains with 5 million generations each. After discarding the burn-in, 37,501 trees were sampled of a total of 100,002 trees from both chain files. Bifurcations with posterior probabilities of <0.9 were collapsed, except for branches with ambiguous Maximum Likelihood and Bayesian results (thick grey bifurcations). All thick black branches represent posterior probabilities of at least 0.99. Specimens are labelled with the specimen ID, the GenBank accession number or the Barcode Index Number BIN of the BOLD System.
Fig. 4. Cox1 polymorphic sites within a 561 in Phylogenetic notes on the rare Mediterranean digger wasp Psenulus fulvicornis (Schenck, 1857) (Hymenoptera: Crabronidae) new to Switzerland
Fig. 4. Cox1 polymorphic sites within a 561 bp alignment of the P. fulvicornis-Group. Vertical numbers indicate the position of the segregation site in the alignment. Of 561 sites 539 were invariable, 10 singleton variable, and 12 parsimony informative sites. At position 543 of the alignment were three mutations, and replacements at the positions 178 and 472 were nonsynonymous (asterisks). Specimens are arranged according to their genetic distance. The Caucasian specimen PSC-11 was divergent from P. fulvicornis and P. schencki but it was similarly distant to both. Specimens are labelled with the specimen ID, the GenBank accession number or the Barcode Identification Number of the BOLD System (see supplementary Table S1). Rectangles include specimens belonging to the clades I–VI in the phylogenetic analysis (Fig. 5).
Fig. 3 in Phylogenetic notes on the rare Mediterranean digger wasp Psenulus fulvicornis (Schenck, 1857) (Hymenoptera: Crabronidae) new to Switzerland
Fig. 3. Main discriminant characters between females of Psenulus fulvicornis (Schenck, 1857) and P. schencki (Tournier, 1889). (A) Propodeal surface and (B) pygidial area of P. fulvicornis from the City of Zurich, Switzerland (D. Frey & A. Zanetta leg.; M. Řiha det.; R. Neumeyer conf.; WSL coll; GenBank accession Nr. KY039438). (C) Propodeal surface and (D) pygidial area of P. schencki from the City of Zurich (25.05.2015; D. Frey & A. Zanetta leg.; M. Řiha det.; R. Neumeyer conf.; WSL coll; GenBank accession Nr. KY039439). In P. fulvicornis, the lateral surface of the propodeum (A) has short crosswise carinas which gives the texture coarse appearance. This character is unique among females of Central European Psenulus. In P. schencki such crosswise carinas are lacking (C), and the texture is finer. The pygidal area is longer and broader in P. fulvicornis (B) than in P. schencki (D), but this character can be difficult to observe in certain specimens.
Fig. 2 in Phylogenetic notes on the rare Mediterranean digger wasp Psenulus fulvicornis (Schenck, 1857) (Hymenoptera: Crabronidae) new to Switzerland
Fig. 2. (A) Female Psenulus fulvicornis (Schenck, 1857) from the City of Zurich, Switzerland (D. Frey & A. Zanetta leg.; M. Řiha det.; R. Neumeyer conf.; WSL coll; GenBank accession Nr. KY039438). (B) Female Psenulus schencki (Tournier, 1889) from the City of Zurich (25.05.2015; D. Frey & A. Zanetta leg.; M. Řiha det.; R. Neumeyer conf.; WSL coll; GenBank accession Nr. KY039439). Note the (barely visible) oblong spot at the lower end of the mid-tibia, which is a unique and shared character for both taxa among Central European Psenulus species (Jacobs, 2007).
Figure 1 in Antennation and sexual performance of male digger wasps Sphex ingens Smith (Hymenoptera: Sphecidae)
Figure 1. Variation in the number of antennal touches in relation to courtship duration in male Sphex ingens (Hymenoptera, Sphecidae): (a) males that had successful copulations (r = 0.867; t = 15.983; df = n–2; p <0.001), (b) males that had unsuccessful copulations (r = 0.882; t = 16.567; df = n–2; p <0.001).
Figure 7 from: Mokrousov MV, Proshchalykin MY, Maharramov M (2020) Digger wasps of the genus Hoplisoides Gribodo (Hymenoptera, Crabronidae, Bembicinae) from the Palaearctic region, with description of two new species. Journal of Hymenoptera Research 79: 213-233. https://doi.org/10.3897/jhr.79.56839
Figure 7 Hoplisoides leleji Mokrousov, sp. nov., holotype, female (A–B), and H. latifrons Spinola from Azerbaijan [MMPC] (C–H), female (A–E, G), male (F, H): A, C midtarsus, dorsal view B, D, H antenna, dorsal view E, F tentorial pit and adjacent area, frontal view G scutellum, metanotum and propodeum, posterolateral view.
Figure 8 from: Mokrousov MV, Proshchalykin MY, Maharramov M (2020) Digger wasps of the genus Hoplisoides Gribodo (Hymenoptera, Crabronidae, Bembicinae) from the Palaearctic region, with description of two new species. Journal of Hymenoptera Research 79: 213-233. https://doi.org/10.3897/jhr.79.56839
Figure 8 Hoplisoides craverii (A. Costa), female (A–C), and H. punctuosus (Eversmann), female, from Dagestan, Russia [MMPC] (D–F): A, D head, frontal view B, E metasoma, ventral view C, F scutellum, metanotum and propodeum, posterolateral view.
Figure 4 from: Mokrousov MV, Proshchalykin MY, Maharramov M (2020) Digger wasps of the genus Hoplisoides Gribodo (Hymenoptera, Crabronidae, Bembicinae) from the Palaearctic region, with description of two new species. Journal of Hymenoptera Research 79: 213-233. https://doi.org/10.3897/jhr.79.56839
Figure 4 Hoplisoides leleji Mokrousov, sp. nov., male, paratype: A habitus, lateral view B tentorial pit and adjacent area, frontal view C antenna, dorsal view D head, frontal view E head, dorsal view.
Figure 5 from: Mokrousov MV, Proshchalykin MY, Maharramov M (2020) Digger wasps of the genus Hoplisoides Gribodo (Hymenoptera, Crabronidae, Bembicinae) from the Palaearctic region, with description of two new species. Journal of Hymenoptera Research 79: 213-233. https://doi.org/10.3897/jhr.79.56839
Figure 5 Hoplisoides gazagnairei (Handlirsch) from Tunisia [FSCV] (A–C), and H. distinguendus (Yasumatsu) from Buryatia, Russia [FSCV] (D–F), males: A, D clypeus, frontolateral view B, E scutellum, metanotum and propodeum, posterolateral view C, F metasoma, ventral view.
Figure 6 from: Mokrousov MV, Proshchalykin MY, Maharramov M (2020) Digger wasps of the genus Hoplisoides Gribodo (Hymenoptera, Crabronidae, Bembicinae) from the Palaearctic region, with description of two new species. Journal of Hymenoptera Research 79: 213-233. https://doi.org/10.3897/jhr.79.56839
Figure 6 Hoplisoides gazagnairei (Handlirsch) from Tunisia [FSCV] (A–B), and H. distinguendus (Yasumatsu) from Buryatia, Russia [FSCV] (C–F), males: A, C antenna, dorsal view B, D foretarsus, dorsal view E midtarsus, dorsal view F hindtarsus, dorsal view.
Figure 3 from: Mokrousov MV, Proshchalykin MY, Maharramov M (2020) Digger wasps of the genus Hoplisoides Gribodo (Hymenoptera, Crabronidae, Bembicinae) from the Palaearctic region, with description of two new species. Journal of Hymenoptera Research 79: 213-233. https://doi.org/10.3897/jhr.79.56839
Figure 3 Hoplisoides leleji Mokrousov, sp. nov., holotype, female: A habitus, dorsolateral view B labels C head, frontal view D head, dorsal view E fore wing, dorsal view F tentorial pit and adjacent area, frontal view G scutellum, metanotum and propodeum, posterolateral view H metasoma, ventral view.
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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.