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Data from: Taxonomic status and distribution of Mirabilis himalaica (Nyctaginaceae)
Mirabilis himalaica (Nyctaginaceae) is endemic to the Himalayas where it is used in traditional Tibetan folk medicine and is the only Old World representative of a large New World genus. The systematic position of M. himalaica and historical biogeography of Mirabilis and related genera was evaluated using two loci (nrITS, rps16), with divergence times estimated using ITS sequences. All 16 sampled provenances of M. himalaica formed a strongly supported terminal clade and at the sectional level formed a clade with sect. Quamoclidion sensu stricto, despite their morphology. Sect. Oxybaphoides and sect. Oxybaphus were not closely related to M. himalaica, suggesting their apparent morphological similarities are convergent. BEAST analysis and ancestral area reconstruction indicated that M. himalaica separated from related North American species during the late Miocene to early Pleistocene ~5.22 Ma (95 % HPD: 2.53–8.18). Both migration via the Quaternary Bering land bridge (Beringia) and long-distance dispersal may have contributed to the present-day disjunction between M. himalaica and the American species. These results agree with previous studies that suggest Oxybaphus should be merged into Mirabilis. However, although the infrageneric position of M. himalaica is still uncertain, it is not close to sect. Oxybaphus as has been suggested previously.
FIGURES 1115. Elachiptera eulophus. 11 in A new species of Elachiptera Macquart from the Galápagos Islands, Ecuador, and the taxonomic status of Ceratobarys Coquillett (Diptera: Chloropidae)
FIGURES 1115. Elachiptera eulophus. 11. hind tibia, and basal tarsal segments (lateral); 12. scutellum; 13. antenna; 14. male genitalia (posterior); 15. male genitalia (lateral). Scale bar = 0.1mm (Figs. 1415).
FIGURES 610. Elachiptera attenuata. 6 in A new species of Elachiptera Macquart from the Galápagos Islands, Ecuador, and the taxonomic status of Ceratobarys Coquillett (Diptera: Chloropidae)
FIGURES 610. Elachiptera attenuata. 6. hind tibia, and basal tarsal segment (lateral); 7. scutellum; 8. antenna; 9. male genitalia (posterior); 10. male genitalia (lateral). Scale bar = 0.1mm (Figs. 910).
FIGURES 15. Elachiptera cultrata. 1 in A new species of Elachiptera Macquart from the Galápagos Islands, Ecuador, and the taxonomic status of Ceratobarys Coquillett (Diptera: Chloropidae)
FIGURES 15. Elachiptera cultrata. 1. hind tibia, and basal tarsal segments (lateral); 2. scutellum; 3. antenna; 4. male genitalia (posterior); 5. male genitalia (lateral). Abbreviations: basph basiphallus; cer cercus, epd epandrium; hyp hypandrium; phal phallus; spur hindtibial spur; sur surstylus. Scale bar = 0.1mm (Figs. 45).
FIGURES 78. Litarachna hongkongensis n in Two new species of the water mite family Pontarachnidae (Acari: Hydrachnidia), with a discussion of the taxonomic status of Pontarachna hinumaensis Imamura
FIGURES 78. Litarachna hongkongensis n. sp., paratype. 7, ventral view (male); 8, palp (female). Scale bar 50 Pm.
FIGURES 46. Litarachna hongkongensis n in Two new species of the water mite family Pontarachnidae (Acari: Hydrachnidia), with a discussion of the taxonomic status of Pontarachna hinumaensis Imamura
FIGURES 46. Litarachna hongkongensis n. sp., holotype female. 4, ventral view; 5, palp; 6, Ileg46. Scale bar 50 Pm.
FIGURE 2 in Taxonomic status of Pennatula argentina Acuña & Zamponi, 1992 (Cnidaria: Octocorallia)
FIGURE 2. Paratype of Pennatula argentina Acuña & Zamponi, 1992. (A) Peduncle with prominent bulb. Scale bar: 1,0 cm. (B) Detail of rachis. Scale bar: 0,25 cm. Abbreviations: p = peduncle; r = rachis; b = bulb; a = autozooid.
FIGURE 1 in Taxonomic status of Pennatula argentina Acuña & Zamponi, 1992 (Cnidaria: Octocorallia)
FIGURE 1. Paratype of Pennatula argentina Acuña & Zamponi, 1992. (A) Ventral view. (B) Dorsal view. Scale bar: 1,50 cm. Abbreviations: p = peduncle; r = rachis.
FIGURE 3 in Redescription of Apteronotus mariae (Eigenmann & Fisher, 1914) and the taxonomic status of Apteronotus jurubidae (Fowler, 1944) (Gymnotiformes: Apteronotidae)
FIGURE 3. Type locality of Apteronotus mariae at Giradort (black square); localities at Apulo (red) and Honda (green). Type locality of Apteronotus jurubidae at Río Jurubidá (black dot).
FIGURE 3 in The taxonomic status and sister group relationship of the cardinalfish species Jaydia striatodes (Percomorphaceae: Apogonidae)
FIGURE 3. Neighbour-joining tree based on the HKY + I + G model (-ln L = 2904.0452, A: C: G: T = 0.2642: 0.2966: 0.1605: 0.2787, I = 0.6360, G = 1.7440) using COI gene fragment sequence of J. striatodes, J. striata and six other Jaydia species. Numbers on the branches indicate bootstrap support for the nodes from the likelihood, parsimony and neighbor-joining analyses (from the left in that order, bootstrap values>50% from 1000 replicates are shown). The tree was rooted using Apogonichthyoides niger and Nectamia fusca as outgroups.
FIGURE 2 in The taxonomic status and sister group relationship of the cardinalfish species Jaydia striatodes (Percomorphaceae: Apogonidae)
FIGURE 2. (a) Jaydia striatodes (ZMNH AF0000119), 57.3 mm SL, Beibu Gulf, China (Zhengsen Yu); (b) Jaydia striata (KAUM–I. 47748), 53.2 mm SL, Ryoung, Thailand (Hiroyuki Motomura, courtesy of the Kagoshima University Museum, Japan).
FIGURES 1–8 in On the generic placement and taxonomic status of some Miltochrista taxa described by Franz Daniel (Lepidoptera, Erebidae, Arctiinae)
FIGURES 1–8. Lyclene (1–7) and Miltochrista (8) spp.: adults. 1, L. clara, holotype male, China, Li-kiang (ZFMK); 2, L. clara, paratype female, China, Li-kiang (ZFMK); 3, L. tibeta, holotype male, China, A-tun-tse (ZFMK); 4, L. tibeta, paratype male, China, A-tun-tse (ZFMK); 5, L. gilva, holotype male, China, Batang (Tibet) (ZFMK); 6, L. gilva, paratype female, China, Batang (Tibet) (ZFMK); 7, L. humilis, a type species of Lyclene, Nepal (CAV); 8, M. miniata, a type species of Miltochrista, West Siberia (CAV).
FIGURE 8–9 in Variation and taxonomic status of the aquatic coral snake Micrurus surinamensis (Cuvier, 1817) (Serpentes: Elapidae)
FIGURE 8–9. Maxillas of Micrurus surinamensis from state of Amazonas, Brazil. 8, inner face; 9, outer face. Scale bar 5 mm.
FIGURE 3–5 in Variation and taxonomic status of the aquatic coral snake Micrurus surinamensis (Cuvier, 1817) (Serpentes: Elapidae)
FIGURE 3–5. Skull of Micrurus surinamensis from state of Amazonas, Brazil. 3, dorsal view; 4, ventral view; 5, lateral view. Scale bar 5 mm.
FIGURE 10 in Variation and taxonomic status of the aquatic coral snake Micrurus surinamensis (Cuvier, 1817) (Serpentes: Elapidae)
FIGURE 10. Distribution of Micrurus surinamensis (closed circles: our records; open circles: literature records), and Micrurus nattereri (closed triangles: our records; open triangles: literature records). Material examined and literature records are cited in Appendix I.
FIGURE 3 in Taxonomic status of Ve i t h i a Oudemans, 1941 and redescriptions of two species described by Oudemans (Acari: Smarididae)
FIGURE 3. Fessonia schneideri (Oudemans, FIGURE 6. Fessonia assmuthi (Oudemans, 1941) 1941) Habitus (dorsal view). Habitus (dorsal view).
FIGURES 13.Pontarachna africana n in Two new species of the water mite family Pontarachnidae (Acari: Hydrachnidia), with a discussion of the taxonomic status of Pontarachna hinumaensis Imamura
FIGURES 13.Pontarachna africana n. sp., holotype female. 1, ventral view; 2, palp + capitulum; 3, Ileg46. Scale bar 50 Pm.
FIGURE 21 in The taxonomic status of the genus Moseria (Siphonophora, Physonectae)
FIGURE 21. Schematic representation of a possible phylogeny for the Siphonophora, based on the molecular data of Dunn et al. (2005b) and general morphological characters.
FIGURE 11. Resomia convoluta. A. A in The taxonomic status of the genus Moseria (Siphonophora, Physonectae)
FIGURE 11. Resomia convoluta. A. A single tentacle with its various forms of tentilla (a-l, x). Scale 1 mm. B. Individual tentilla (a-l) removed from the tentacle shown in A. (x not illustrated). Sizes of tentilla can be gauged from A.
FIGURE 4 in The taxonomic status of the genus Moseria (Siphonophora, Physonectae)
FIGURE 4. Pneumatophores of Resomia convoluta. A. from St. 67 specimen, B. from St. 94 specimen. Scale 1 mm.
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Allen Brain Atlas
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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.