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562 results for “genetic divergences”
Figure 16. Lectotype Pseudoanthidium karakalense. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 16. Lectotype Pseudoanthidium karakalense. A, labels; B, dorsal view; C, latero-ventral view S2; D, gonostyli; E, S8; F, S3; G, S4; H, S5 (showing sternal combs), S6.
Figure 13. S2, males. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 13. S2, males. A, Pseudoanthidium nanum (Dordogne, France); B, P. scapulare (Argèles-sur-Mer, France); C, P. stigmaticorne (Cabanes de Fleury, France); D, P. tenellum (Krasnoperekopsk, Crimea); E, P. palestinicum (Jerusalem, Israel); F, P. cribratum (Ayelet Hashar, Israel); G, P. kaspareki (Side, Turkey); H, P. rozeni (Hanna, Pakistan).
Figure 10. Gonostyli. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 10. Gonostyli. A, Pseudoanthidium nanum (Thüringen, Germany); B, P. scapulare (Villeneuve-lès- Maguelone, France); C, P. tenellum (Krasnoperekopsk, Crimea).
Figure 12. S3, males. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 12. S3, males. A, Pseudoanthidium nanum (Dordogne, France); B, P. scapulare (Argèles-sur-Mer, France); C, P. stigmaticorne (Cabanes de Fleury, France); D, P. tenellum (Krasnoperekopsk, Crimea); E, P. palestinicum (Jerusalem, Israel); F, P. cribratum (Ayelet Hashar, Israel); G, P. kaspareki (Side, Turkey); H, P. rozeni (Hanna, Pakistan).
Figure 11. Sternal combs. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 11. Sternal combs. A, Pseudoanthidium nanum (Dordogne, France); B, P. scapulare (Argèles-sur-Mer, France); C, P. stigmaticorne (Cabanes de Fleury, France); D, P. tenellum (Krasnoperekopsk, Crimea); E, P. palestinicum (Jerusalem, Israel); F, P. cribratum (Ayelet Hashar, Israel); G, P. kaspareki (Side, Turkey); H, P. rozeni (Hanna, Pakistan).
Figure 18. Gonostyli, Pseudoanthidium stigmaticorne. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 18. Gonostyli, Pseudoanthidium stigmaticorne. A, Cape Lukull, Crimea; B, Bet She'an, Israel; C, Agadir, Morocco; D, Restinclières, France; E, Cacela Velha, Portugal; F, Seui, Sardinia.
Figure 9. Dorsal habitus, females. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 9. Dorsal habitus, females. A, vertex Pseudoanthidium nanum (Kalpetran, Switzerland); B, vertex P. scapulare (Rich, Morocco); C, mesonotum P. nanum (Kalpetran, Switzerland); D, mesonotum P. scapulare (Rich, Morocco); E, metasoma P. nanum (Kalpetran, Switzerland); F, metasoma P. scapulare (Rich, Morocco).
Figure 8. Lectotype Icteranthidium floripetum A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 8. Lectotype Icteranthidium floripetum A, face; B, dorsal view; C, labels; D, vertex; E, T1–T3.
Figure 7. Lectotype, Anthidium sinuatum. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 7. Lectotype, Anthidium sinuatum. A, lateral view; B, labels; C, metasoma; D, T5–T6; E, mesonotum.
Figure 6 in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 6. Palaearctic distribution of A, Pseudoanthidium nanum; B, P. scapulare; C, P. stigmaticorne; D, P. tenellum.
Figure 4. Lectotype, Pseudoanthidium reptans. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 4. Lectotype, Pseudoanthidium reptans. A, face; B, dorsal view; C, labels; D, ventral view; E, apex of metasoma, showing tips of gonostyli.
Figure 2 in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 2. Best-scoring maximum likelihood tree based on analysis of COI data. Numbers shown at nodes are maximum likelihood bootstrap values based on 1000 bootstrap replicates in RAxML. Only bootstrap values greater than 50% are shown. Terminals are labelled with a DNA extraction code, species name, collection locality and either as male (m) or female (f). Barcodes were obtained using Sanger sequencing technology, except for those corresponding to specimens 1802 and 1805, which were obtained from non-UCE assemblies generated during UCE sequencing. A, Pseudoanthidium tenellum, Burgenland, Austria (m), photo Bernhard Jacobi; B, P. cribratum, Bukhara, Uzbekistan (f), photo Jessica Litman; C, P. canariense, Santa Cruz de Tenerife, Canary Islands, Spain (m), photo Jessica Litman; D, P. stigmaticorne, Crimea, Russia, photo Alexander V. Fateryga; E, P. scapulare, Portugal, photo Ian Cross; F, P. nanum, photo Entomologie/Botanik, ETH Zürich / Albert Krebs; G, P. palestinicum, photo Jessica Litman.
Figure 1. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 1. A, nest of Pseudoanthidium stigmaticorne, in a capsule of Tulipa biflora Pall. (Lisya Bay, Crimea). Insert in lower right shows close-up of the same nest. Three males eventually emerged (photo Alexander V. Fateryga); B, Pseudoanthidium stigmaticorne nesting in a stem of Crambe maritima L. (Arabatskaya Strelka sand spit, Crimea). A pin is inserted to mark the nest (photo Sergey P. Ivanov).
Figure 3 in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 3. Best-scoring maximum likelihood tree based on analyses of the (A) 75% UCE matrix and (B) 100% UCE matrix. Numbers shown at nodes are maximum likelihood bootstrap values based on 1000 bootstrap replicates in RAxML. Only bootstrap values greater than 50% are shown. Terminals are labelled with a DNA extraction code corresponding to the whole-body extraction performed for UCE sequencing, the DNA extraction code for the same specimen based on single leg extractions performed for barcode sequencing, the species name, collection locality and either as male (m) or female (f). Three specimens (1800, 1802 and 1805) were only sequenced following the UCE protocol and thus have only a UCE extraction code.
FIGURE 19. Ilyodromus hiatus n in Patterns of genetic divergence in the Ilyodromus amplicolis lineage (Crustacea, Ostracoda), with descriptions of three new species
FIGURE 19. Ilyodromus hiatus n. sp. ♂ (WAM57868) from granite rock pool on top of Wannara Rock, north of Wubin, Western Australia, Australia A–C. A. Prehensile palp of left L5. B. Hp. C. Prehensile palp of right L5. Scales: A–C = 77 µm.
FIGURE 16. Ilyodromus hiatus n in Patterns of genetic divergence in the Ilyodromus amplicolis lineage (Crustacea, Ostracoda), with descriptions of three new species
FIGURE 16. Ilyodromus hiatus n. sp. ♀ (WAM57872, RTJ2) from granite rock pool on top of Wannara Rock, north of Wubin, Western Australia, Australia A–G. A. A1. B. A1, detail of RO. C. A2. D. A2, detail of natatory setae. E. Md coxa. F. Md palp. Scales: A, C = 200 µm, B, D = 40 µm, E–F = 150 µm
FIGURE 12. Ilyodromus sensaddito. n in Patterns of genetic divergence in the Ilyodromus amplicolis lineage (Crustacea, Ostracoda), with descriptions of three new species
FIGURE 12. Ilyodromus sensaddito. n. sp. from Drummond Pool, Western Australia, Australia A–F. A. ♀, (WAM57857) Left and right A1, detail of RO (red) and additional seta. B. ♀ (WAM57857), Left A1, detail of RO (red). C. ♀ (WAM57857), A2, detail of natatory setae (red). D. ♀ (WAM57857), CR, detail of Sp (red). E. ♂ (WAM57858), Left and right L5, detail of prehensile palp first (blue) and second (yellow) segments. F. ♂ (WAM57858), Hp, detail of ls (blue) and ms (yellow). Colour only visible in electronic version. Scales: A, C = 50 µm, B = 10 µm, D = 150 µm, E = 100 µm, F = 200 µm
FIGURE 15. Ilyodromus hiatus n in Patterns of genetic divergence in the Ilyodromus amplicolis lineage (Crustacea, Ostracoda), with descriptions of three new species
FIGURE 15. Ilyodromus hiatus n. sp. (RTJ2) from granite rock pool on top of Wannara Rock, north of Wubin, Western Australia, Australia A–L. A. CpRl ♀ (WAM57875). B. CpRl ♂ (WAM57870). C. CpD ♀ (WAM57873). D. CpD ♂ (WAM57871). E. CpV ♀ (WAM57874). F. CpV ♂ (WAM57869). G. LVi ♀ (WAM57872). H. RVi ♀ (WAM57872). I. LVi ♂ (WAM57866). J. RVi ♂ (WAM57866). K. LVi ♀, detail of anterior peg (WAM57872). L. CpRl ♀ detail of valve striation pattern (WAM57873). Scales: A–J = 1000 µm, K = 400 µm, L = 10 µm
FIGURE 9. Ilyodromus armacutis. n in Patterns of genetic divergence in the Ilyodromus amplicolis lineage (Crustacea, Ostracoda), with descriptions of three new species
FIGURE 9. Ilyodromus armacutis. n. sp. ♂ (WAM57838, DJC17-A) from Drummond Pool, Western Australia, Australia A– C. A. Hp B. Prehensile palp of right L5. C. Prehensile palp of left L5. Scales: A–C = 77 µm.
FIGURE 7. Ilyodromus armacutis. n in Patterns of genetic divergence in the Ilyodromus amplicolis lineage (Crustacea, Ostracoda), with descriptions of three new species
FIGURE 7. Ilyodromus armacutis. n. sp. ♀ (WAM57836, DJC17-A) from Drummond Pool, Western Australia, Australia A– C. A. A1, detail of RO (red). B. A2, detail of natatory setae (red). C. CR, detail of Sp (red). Colour version of figure available online. Scales: A, C = 50 µm, B = 15 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.