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FIGURE 33 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURE 33. Maximum Likelihood phylogenetic trees from analyses of CO1 (top) and 16S rRNA (bottom) partial sequences (see Material and Methods for species sampling; only excerpts of trees shown here). Species names are followed by GenBank accession numbers (preceded by voucher number for sequences produced in the context of this study). Country of origin is given for Hydroporus gyllenhalii sequences. The two sequences without species names are from Ribera & Vogler (2004) and were produced from two unidentified North American Hydroporus specimens. Numbers associated with the branches are bootstrap values calculated with Maximum Likelihood (first value) and with Maximum Parsimony (second value). A dash indicates bootstrap value lower than 50%. All branches are proportional to inferred number of substitutions per site (scale bars) except for the branch in purple in the 16S tree, which has a null length in the ML analysis despite significant bootstrap support.
FIGURES 22–31 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURES 22–31. Male and female genitalia of (22–26) Hydroporus rifensis sp. n. (paratypes) and (27–31) H. gyllenhalii (specimens from Plévenon, Bretagne, France). (22, 27) Median lobe of aedeagus in profile view; (23, 28) median lobe of aedeagus in ventral view; (24, 29) left paramere (external view); (25, 30) left gonocoxosternum (external view); (26, 31) gonocoxa (ventral view). Homologous structures shown at same scale for both species. Scale bars: 22–25, 27–30: 0.1 mm; 26, 31: 0.05 mm.
FIGURES 18–21 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURES 18–21. Drawings of fifth protarsomere and anterior claw (top) and posterior claw (bottom) in male (18, 20) and female (19, 21) of (18–19) Hydroporus rifensis sp. n. and (20–21) H. gyllenhalii. All drawings at same scale (scale bar: 0.1 mm).
FIGURES 14–17 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURES 14–17. SEM views of ventral side of left protarsus in male (14, 16) and female (15, 17) of (14–15) Hydroporus rifensis sp. n. (paratypes) and (16–17) H. gyllenhalii (16: male specimen from Fontainebleau, Ile-de-France, France; 17: female specimen from Rigny-Ussé, Touraine, France). Anterior on the left in all pictures. Scale bars: 0.1 mm.
FIGURES 8–13 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURES 8–13. SEM views of selected structures of the ventral side of (8–10) Hydroporus rifensis sp. n. (8, 10: paratype, female; 9: paratype, male) and (11–13) H. gyllenhalii (female specimen from Rigny-Ussé, Touraine, France). (8, 11) Prosternal process; (9, 12) anterior extremity of prosternal process and file in front of prosternal process; (10, 13) metacoxal lines and metacoxal apophysis. Anterior on top in all pictures. Scale bars: 8, 10, 11, 13: 0.1 mm; 9, 12: 0.05 mm.
FIGURE 1 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURE 1. Habitus of Hydroporus rifensis sp. n. (left) (holotype, male) and Hydroporus gyllenhalii (right) (male specimen from Puente de Sanabria, Zamora province, Spain, Fery leg. 22 VII 1987).
FIGURES 2–7 in A new species of the genus Hydroporus Clairville, 1806 from the Central Rif mountains of northern Morocco (Coleoptera: Dytiscidae)
FIGURES 2–7. Microsculpture of pronotal disc (2, 3), anterior juxta-sutural region of elytral disc (4, 5) and antero-lateral region of metacoxal plate (6, 7) of (2, 4, 6) Hydroporus rifensis sp. n. (2, 4: paratype, male; 6: paratype, female) and (3, 5, 7) H. gyllenhalii (3, 5: male specimen from Rigny-Ussé, Touraine, France; 7: female specimen from same locality). Figures 2–5 were done using a stereomicroscope with a nearly horizontal light source; pictures 6–7 are SEM views. All pictures shown at same scale (scale bar: 0.1 mm).
FIGURES 30–33 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURES 30–33. Dilar taibaishanus sp.nov. 30. Male genitalia, dorsal view; 31. Male genitalia, ventral view; 32. Male genitalia, lateral view; 33. Male ectoproct, caudal view. Scale bars: 0.5 mm.
FIGURES 24–29 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURES 24–29. Dilar spectabilis sp.nov. 24. Male genitalia, dorsal view; 25. Male genitalia, ventral view; 26. Male genitalia, lateral view; 27. Male ectoproct, caudal view. 28. Female genitalia, lateral view; 29. Female genitalia, ventral view. Scale bars: 0.5 mm.
FIGURES 18–23. Dilar sinicus Nakahara. 18 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURES 18–23. Dilar sinicus Nakahara. 18. Male genitalia, dorsal view; 19. Male genitalia, ventral view; 20. Male genitalia, lateral view; 21. Male ectoproct, caudal view; 22. Female genitalia, lateral view; 23. Female genitalia, ventral view. ag: bursal accessory gland; cg: colleterial gland; e: ectoproct; g: gonarcus = eleventh gonocoxites; gx9: ninth gonocoxite; gx10: tenth gonocoxite; hi: hypandrium internum; sb: sclerite at the basal part of the bursa copulatrix; S7–9: sternite 7–9; T7–9: tergite 7–9. Scale bars: 0.5 mm.
FIGURE 34 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURE 34. Geographic distribution of the species of Dilar group. ▲: D. hastatus sp.nov.; ★: Dilar septentrionalis Navás; ●: Dilar sinicus Nakahara; ■: D. spectabilis sp.nov.; ☆: D. taibaishanus sp.nov.
FIGURES 12–17 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURES 12–17. Dilar septentrionalis Navás. 12. Male genitalia, dorsal view; 13. Male genitalia, ventral view; 14. Male genitalia, lateral view; 15. Male ectoproct, caudal view; 16. Female genitalia, lateral view; 17. Female genitalia, ventral view. Scale bars: 0.5 mm.
FIGURES 6–11 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURES 6–11. Dilar hastatus sp.nov. 6. Male genitalia, dorsal view; 7. Male genitalia, ventral view; 8. Male genitalia, lateral view; 9. Male ectoproct, caudal view; 10. Female genitalia, lateral view; 11. Female genitalia, ventral view. Scale bars: 0.5 mm.
FIGURES 1–5 in Revision of Chinese Dilaridae (Insecta: Neuroptera) (Part I): Species of the genus Dilar Rambur from northern China
FIGURES 1–5. Adults of Dilar spp. 1. D. hastatus sp.nov., male holotype; 2. D. septentrionalis Navás, male; 3. D. sinicus Nakahara, male; 4. D. spectabilis sp.nov., male holotype; 5. D. taibaishanus sp.nov., male holotype. Scale bars: 1.0 mm.
FIGURE 2 in A new frog species (Myobatrachidae: Uperoleia) from the Northern Deserts region of Australia, with a redescription of U. trachyderma
FIGURE 2. Map of the Australian Monsoonal Tropics showing the distribution of (a) nDNA groups, (b) mtDNA clades, (c) acoustic variation, and (d) total known distribution of U. stridera sp. nov (green) and U. trachyderma (yellow) based on our data and previous taxonomic descriptions. Half coloured shapes in (b) indicate locations with multiple mtDNA clades present. Arrowheads in (d) indicate type localities. In (a), major bioregions are in bold, and biogeographical barriers are in italics. In (b), dashed lines indicate major roads and dots indicate locations. Modified from Catullo et al. 2013.
FIGURE 1 in A new frog species (Myobatrachidae: Uperoleia) from the Northern Deserts region of Australia, with a redescription of U. trachyderma
FIGURE 1. Mitochondrial (a) and nuclear (b) phylogenies of U. stridera sp. nov. and U. trachyderma (modified from Catullo et al. 2013). Patterned bars indicate final species allocation based on genetics, morphology, and acoustics. Individuals with differing mitochondrial versus nuclear haplotypes are indicated by arrows. Oscillogram and spectrograms for the holotype of U. stridera sp. nov. (Up0261, WAM R164738, from near Fitzroy Crossing, WA) and U. trachyderma (Up1091, NTM R36190, from Bullwaddy Conservation Reserve, NT) are pictured in (c). Oscillograms display amplitude (y-axis) against time (x-axis), and spectrograms display frequency (y-axis) against time (x-axis). Time for each graph is one second.
FIGURE 3 in A new frog species (Myobatrachidae: Uperoleia) from the Northern Deserts region of Australia, with a redescription of U. trachyderma
FIGURE 3. (a) Dorsal, dorsolateral, and ventral photos of the holotype of Uperoleia stridera sp. nov. (WAM R164738); (b) Photos of U. trachyderma in life (NTM R36190, R36194, & R36202); and (c) Photos of U. stridera sp. nov. (NTM R36209, R36212, & R36213). Photos by M. Whitehead & R. Catullo.
FIGURE 1 in Rotylenchus castilloi n. sp. (Nematoda: Hoplolaimidae), a new species with long stylet from northern Iran
FIGURE 1. Line drawings of Rotylenchus castilloi n. sp. (type population). A, Details of pharynx; B, Anterior genital tract showing fine spherical sperm in spermatheca; C, D, Anterior end in detail; E, Vagina and protruding double epiptygma; F, G, I- K, Female tail; H, Male tail. (Scale-bars: A, 25 Μm; B, 50 Μm; C, 15 Μm; D, 30 Μm; E, 20 Μm; F-K, 30 Μm).
FIGURE 6. Bayesian inference analysis 50 in Rotylenchus castilloi n. sp. (Nematoda: Hoplolaimidae), a new species with long stylet from northern Iran
FIGURE 6. Bayesian inference analysis 50% majority rule consensus tree as inferred from ITS1 rDNA sequence alignment under the GTR+G+I model. Bayesian posterior probabilities and maximum likelihood bootstrap values more than 50% are given for appropriate clades in the form: BPP/ML BS. New sequences are in bold font.
FIGURE 3 in Rotylenchus castilloi n. sp. (Nematoda: Hoplolaimidae), a new species with long stylet from northern Iran
FIGURE 3. Light micrographs of Rotylenchus castilloi n. sp. (type population). A–D, Variation in female tail morphology; E–H, Male tail region; I, Female tail showing phasmid. (Scale-bars:10 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.