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FIGS. 25–28. Amplaria arcata, A. baughi. Figs. 25, 26. Amplaria arcata. Fig. 25. Right gonopod. posterior view. Fig. 26. Gonopods, posterior view. Figs. 27. 28. A. baughi. Fig. 27 in The millipede family Striariidae Bollman, 1893. II. New records and species of the genus Amplaria Chamberlin, 1941 (Diplopoda, Chordeumatida, Striarioidea)
FIGS. 25–28. Amplaria arcata, A. baughi. Figs. 25, 26. Amplaria arcata. Fig. 25. Right gonopod. posterior view. Fig. 26. Gonopods, posterior view. Figs. 27. 28. A. baughi. Fig. 27. Collum and second ring, dorsal view. Fig. 28. Gonopods, posterior view.
FIGS. 14–19. Amplaria rykkenae, A. arcata. Fig. 14 in The millipede family Striariidae Bollman, 1893. II. New records and species of the genus Amplaria Chamberlin, 1941 (Diplopoda, Chordeumatida, Striarioidea)
FIGS. 14–19. Amplaria rykkenae, A. arcata. Fig. 14. Amplaria rykkenae, posterior end of male, dorsal view. Figs. 15–19. A. arcata. Fig. 15. Left side of head and first two legpairs of male, anterior view. Fig. 16. Tarsus of legpair 1, lateral view. Fig. 17. Special setae of tarsus 1. Fig. 18. Second and third legpair of male, ventral view. Fig. 19. Pygidium, ventral view.
FIGURE 3 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 3. Outline of Meisterfeldia bitsevi: ventral (left) and lateral (right) views. 1–5—characters of the shell measurements. Scale bar: 15 μm.
FIGURE 2 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 2. Scanning electron microscopic image of Meisterfeldia bitsevi: a—ventral view, b—lateral view, c—dorsal view. Scale bar 10 µm. Magnification x 2,500.
FIGURE 1 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 1. Light micrographs of Meisterfeldia bitsevi: a—ventral view, b—dorsal view, c, d—lateral views. Scale bar—15 µm. Magnification x 400.
FIGURE 5 in Meisterfeldia bitsevi-new testate amoeba of the family Cryptodifflugiidae Jung 1942 (Amoebozoa: Arcellinida) from the tree hollow in the urban park (Moscow Russia) with a key to species of the genus Meisterfeldia
FIGURE 5. Outlines of the species from the genus Meisterfeldia: a, b—M. bitsevi, c, d—M. chibisovi, e, f—M. wegeneri, g, h—M. vanhoornei, i, j—M. polygonia, k—M. turfacea; a, d, f, h, j—ventral views; b, c, e, g, i, k—lateral views; c–f, i, j—from Bobrov, 2016; g, h—from Beyens et al., 1986; k—from Zacharias, 1903. Scale bar 15 µm.
FIGURE 2 in Three new species of oribatid mites of the family Galumnidae (Acari, Oribatida) from South Africa
FIGURE 2. Pilogalumna hogsbackensis sp. nov., adult: A—subcapitulum, ventral view; B—chelicera, left, paraxial view; C—palp, left, antiaxial view; D—leg I (trochanter omitted), left, paraxial view; E—leg II, right, antiaxial view; F—leg III, left, antiaxial view; G—leg IV, left, antiaxial view. Scale bar 20 μm (A–C), 50 μm (D–G).
FIGURE 1 in Three new species of oribatid mites of the family Galumnidae (Acari, Oribatida) from South Africa
FIGURE 1. Pilogalumna hogsbackensis sp. nov., adult: A—dorsal view; B—ventral view (gnathosoma and legs omitted); C—lateral view (pteromorph, gnathosoma and legs omitted); D—posterior view (pteromorphs omitted). Scale bar 100 μm.
FIGURE 4 in Three new species of oribatid mites of the family Galumnidae (Acari, Oribatida) from South Africa
FIGURE 4. Stictozetes ihaguensis sp. nov., adult: A—dorsal view; B—ventral view (gnathosoma and legs omitted); C—lateral view (pteromorph, gnathosoma and legs omitted); D—posterior view (pteromorphs omitted). Scale bar 50 μm.
FIGURE 3 in Three new species of oribatid mites of the family Galumnidae (Acari, Oribatida) from South Africa
FIGURE 3. Pergalumna amatholensis sp. nov., adult: A—dorsal view; B—ventral view (gnathosoma and legs omitted); Clateral view (pteromorph, gnathosoma and legs omitted); D—posterior view (pteromorphs omitted). Scale bar 50 μm.
FIGURES 12–15 in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 12–15. Males of new species of Striaria. 12, 13. S. aculeata, n. sp. 12. Tips of left gonopod, lateral view. 13. Tips of right gonopod mesal view. 14, 15. S. bombillus, n. sp. 14. Head and collum, frontal view. 15. Pleurotergite 8, lateral view, anterior to the right. Abbreviations: col, collum; ct, cerotegument; aac, anterior angiocoxite; fc, flagellocoxite; lab, labrum; lcc, lateral lobe of colpocoxite; pac, posterior angiocoxite.
FIGURES 7–11. Male Striaria aculeata, n in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 7–11. Male Striaria aculeata, n. sp. 7. Specialized seta of prefemur of legpair 3. 8. Specialized seta of distal tibia of legpair 3. 9. Gonopods, anterior view. 10. Right gonopod, mesal view. 11. Left gonopod, lateral view. Abbreviations: aac, anterior angiocoxite; cx, coxa; fc, flagellocoxite; lcc, lateral lobe of colpocoxite; pac, posterior angiocoxite; s, sternum.
FIGURES 20, 21. Striaria orator, n in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 20, 21. Striaria orator, n. sp. 20. Left gonopod complex, lateral view. 21. Gonopod tips of right side, mesal view. Abbreviations: aac, anterior angiocoxite; cx, coxa; cxp, coxal process; lcc, lateral lobe of colpocoxite; pac, posterior angiocoxite; ptr7, modified margin of pleurotergite 7; t9, telopodite of leg 9.
FIGURES 31–36 in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 31–36. Gonopods of new species of Striaria. 31, 32. S. vagabundus, n. sp. 31. Right gonopod, mesal view. 32. Right gonopod, lateral view. 33–36. S. orator, n. sp. 33. Right gonopod, mesal view. 34. Right gonopod, lateral view. 35. Tip of anterior angiocoxite, mesal view. 36. Same, lateral view. Abbreviations: aac, anterior angiocoxite; lcc, lateral lobe of colpocoxite; pac, posterior angiocoxite; pcc, posterior lobe of colpocoxite.
FIGURES 16–19 in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 16–19. New species of Striaria. 16, 17. S. bombillus, n. sp. 16. Pygidium of male, dorsal view. 17. Pygidium of female, dorsal view. 18. Right ninth leg of S. vagabundus, n. sp., anterior view. 19. Second and third legpairs of S. orator, n. sp., ventroposterior view. Abbreviations: cf, coxal flask; cx, coxa; cxp, coxal process; numerals, pleurotergite numbers; pcb, postcoxal bar; pf3, prefemur of leg 3, ptr7, modified margin of pleurotergite 7; pyg, pygidium; s, sternum; t9, telopodite of leg 9.
FIGURES 1–6. Male Striaria aculeata, n in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 1–6. Male Striaria aculeata, n. sp. 1. Head and collum, lateral view; 2. Lateral view of head, showing ommatidia (e) and Tömösváry organ (to); 3. Right leg 1, posterior view. 4. Specialized setae of femur and tibia of leg 1. 5. Legpair 2, posterior view. 6. Legpairs 3–5, anterioventral view. Abbreviations: cf, coxal flask; col, collum; cs, cuticle surface; ct, cerotegument; cx3, coxa of leg 3; cxt2, coxotrochanter of leg 2; e, ocularium; lab, labrum; lh, labral hook; man, mandible; pcb, postcoxal bar; pf2, prefemur of leg 2; pf3, prefemur of leg 3, s, sternum to, Tömösváry Organ; tr1, tarsus of leg 1; tp2, trochanteral process of leg 2; vd, openings of vasa deferentia.
FIGURES 22–30 in The millipede family Striariidae Bollman, 1893: III. Four new species of Striaria Bollman, 1888 (Diplopoda, Chordeumatida, Striariidae) from Idaho, USA
FIGURES 22–30. Gonopods of new species of Striaria. 22–24. S. aculeata., n. sp. 22. Right gonopod, mesal view. 23. Tip of anterior angiocoxite, lateral view. 24. Same, mesal view. 25–28. S. bombillus, n. sp. 25. Right gonopod, mesal view. 26. Right gonopod, lateral view. 27. Tip of anterior angiocoxite, lateral view. 28. Same, mesal view. 29, 30. S. vagabundus, n. sp. 29. Tip of anterior angiocoxite, lateral view. 30. Same, mesal view. Abbreviations: aac, anterior angiocoxite; lcc, lateral lobe of colpocoxite; pac, posterior angiocoxite; pcc, posterior lobe of colpocoxite.
Data from: A genomic perspective on a new bacterial genus and species from the Alcaligenaceae family, Basilea psittacipulmonis
Background: A novel Gram-negative, non-haemolytic, non-motile, rod-shaped bacterium was discovered in the lungs of a dead parakeet (Melopsittacus undulatus) that was kept in captivity in a petshop in Basel, Switzerland. The organism is described with a chemotaxonomic profile and the nearly complete genome sequence obtained through the assembly of short sequence reads. Results: Genome sequence analysis and characterization of respiratory quinones, fatty acids, polar lipids, and biochemical phenotype is presented here. Comparison of gene sequences revealed that the most similar species is Pelistega europaea, with BLAST identities of only 93% to the 16S rDNA gene, 76% identity to the rpoB gene, and a similar GC content (~43%) as the organism isolated from the parakeet, DSM 24701 (40%). The closest full genome sequences are those of Bordetella spp. and Taylorella spp. High-throughput sequencing reads from the Illumina-Solexa platform were assembled with the Edena de novo assembler to form 195 contigs comprising the ~2 Mb genome. Genome annotation with RAST, construction of phylogenetic trees with the 16S rDNA (rrs) gene sequence and the rpoB gene, and phylogenetic placement using other highly conserved marker genes with ML Tree all suggest that the bacterial species belongs to the Alcaligenaceae family. Analysis of samples from cages with healthy parakeets suggested that the newly discovered bacterial species is not widespread in parakeet living quarters. Conclusions: Classification of this organism in the current taxonomy system requires the formation of a new genus and species. We designate the new genus Basilea and the new species psittacipulmonis. The type strain of Basilea psittacipulmonis is DSM 24701 (= CIP 110308 T, 16S rDNA gene sequence Genbank accession number JX412111 and GI 406042063).
Data from: A new species of burnetiid (Therapsida, Burnetiamorpha) from the early Wuchiapingian of South Africa and implications for the evolutionary ecology of the family Burnetiidae.
Burnetiidae is a family of basal therapsids that is known from late Permian-aged (Lopingian) sequences from southern and eastern Africa and European Russia. Recent discoveries of related genera within the broader clade Burnetiamorpha have added to our understanding of morphological variation in the group but have eroded the list of characters defining the family Burnetiidae. We describe a new burnetiid taxon, Leucocephalus wewersi gen. et sp. nov., and argue that Burnetiidae can be defined by, among other characters, the presence of two bosses on the ventrolateral surface of suborbital bar and zygomatic arch, high skull angulation between the orbits, and a median frontal crest that becomes wider and lower posteriorly. The new specimen was found in the early Wuchiapingian Tropidostoma Assemblage Zone of the Main Karoo Basin and, along with previous discoveries, indicates that the family reached its greatest diversity and abundance in the early Wuchiapingian. Diversity declined into the later Wuchiapingian and Changhsingian. Although the clade Burnetiamorpha, including the family Burnetiidae, contains at least 11 genera, each of these is exceptionally rare, with most represented by only one specimen. This could be attributed to a genuine ecological characteristic or may be the result of biogeographic factors, particularly if the Main Karoo Basin was on the periphery of their range.
Data from: Phylogeny and generic delimitation in Molluginaceae, new pigment data in Caryophyllales, and the new family Corbichoniaceae
The circumscription of Molluginaceae has changed radically in recent years, with Corbichonia being moved to Lophiocarpaceae, Limeum to Limeaceae, Macarthuria to Macarthuriaceae and all species of Hypertelis, except the type, to Kewa in Kewaceae. In a broad analysis of core Caryophyllales using plastid trnK-matK and rbcL sequences, the position of Molluginaceae in a strict sense as sister to the Portulacineae clade is corroborated, as are the positions of Corbichonia, Limeum and Kewa outside the family. The phylogeny of Molluginaceae is reconstructed based on trnK-matK and nuclear ITS sequences of about half of the currently recognized species in the family and with representatives from all recognized genera. Mollugo is found to be polyphyletic and a new taxonomy for the family with 11 genera is proposed. Mollugo in its new restricted sense is a mainly American genus of about 15 species, including M. ulei comb. nov., previously placed in the monotypic Glischrothamnus. The Australian and Asian genus Trigastrotheca is resurrected for T. molluginea, T. pentaphylla comb. nov. and T. stricta comb. nov. The name Paramollugo nom. nov. is proposed for the Mollugo nudicaulis group and the combinations P. angustifolia comb. nov., P. cuneifolia comb. nov., P. decandra comb. nov., P. deltoidea comb. nov., P. navassensis comb. nov. and P. nudicaulis comb. nov. are made. Hypertelis is expanded to include, besides the type H. spergulacea, also H. cerviana comb. nov., H. fragilis comb. nov., H. umbellata comb. nov. and H. walteri comb. nov. In Pharnaceum, the new combination P. namaquense comb. nov. is made, Hypertelis longifolia is treated as a synonym of P. lineare and Mollugo tenella as a synonym of P. subtile. Corbichonia is proposed to be treated as a family of its own, Corbichoniaceae fam. nov. Several names are lectotypified, including the Linnaean Mollugo pentaphylla and M. stricta. An anthocyanin is reported for the first time from Simmondsiaceae. The detection of anthocyanins in members of Kewaceae and Molluginaceae agree with previous reports and corroborate the view that these families represent reversals from betalains to anthocyanins. The report of an anthocyanin in Limeaceae, previously regarded as unpigmented, apparently represents a newly detected reversal from betalains to anthocyanins in this family.
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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.