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Fig. 5 in Systematic revision one clade at a time: A new genus of onchidiid slugs from the Indo-West Pacific (Gastropoda: Euthyneura: Pulmonata)
Fig. 5. Live specimens, dorsal (A–H) and ventral (I–K) views, Marmaronchis vaigiensis, Indonesia. A, Bali, 23 mm long [3081] (UMIZ 00186); B, Bali, 17 mm long [3083] (UMIZ 00186); C, Halmahera, 18 mm long [5046] (UMIZ 00187); D, Halmahera, 19 mm long [5153] (UMIZ 00187); E, Kei, 10 mm long [2908] (UMIZ 00185); F, Sulawesi, 8 mm long [2224] (UMIZ 00182); G, Sulawesi, 8 mm long [2243] (UMIZ 00183); H, Sulawesi, 14 mm long [2244] (UMIZ 00183); I, same as A; J, same as C; K, same as H.
Fig. 10 in Systematic revision one clade at a time: A new genus of onchidiid slugs from the Indo-West Pacific (Gastropoda: Euthyneura: Pulmonata)
Fig. 10. Habitats, Marmaronchis vaigiensis (A–H) and Marmaronchis marmoratus (H), Indonesia (A–E), Singapore (F), and Papua New Guinea (G, H). A, Halmahera, station 217 (UMIZ 00187); B, Same as A; C, Sulawesi, station 91 (UMIZ 00184); D, Kei, station 140 (UMIZ 00185); E, Bali, station 155 (UMIZ 00186); F, Singapore, station 10 (ZRC.MOL.3007); G, New Ireland, Kavieng, station KM20 (MNHN IM-2013-54460, -54467, -54463); H, Madang, station PM24 (MNHN IM-2013-13760, -15566).
Fig. 9 in Systematic revision one clade at a time: A new genus of onchidiid slugs from the Indo-West Pacific (Gastropoda: Euthyneura: Pulmonata)
Fig. 9. Geographic distribution of the two known species of the genus Marmaronchis. The red and dark blue dots correspond to the records for each species from the material included in the present study (the same colour are used on the phylogenetic trees represented in Figs. 1–4). The dark red dot (Ambon, Indonesia) corresponds to a record of Marmaronchis vaigiensis for an old specimen for which no DNA sequences was available (Dayrat, 2010). The four green dots corresponds to type localities of M. vaigiensis and its synonyms. The black dots correspond to paralectotypes of synonyms of M. vaigiensis. The yellow dot corresponds to the type locality of M. marmoratus. The many light blue dots correspond to regions where we collected gastropods in the past few years and where Marmaronchis was not found (acknowledging that it may have been missed in some of them). The orange dot (Guam) corresponds to a record of a Marmaronchis species (likely M. viagiensis) based on a picture and so it is not included within the species distribution area (see Discussion). Finally, the coloured areas correspond to hypothetical ranges based on known records.
Fig. 6 in Systematic revision one clade at a time: A new genus of onchidiid slugs from the Indo-West Pacific (Gastropoda: Euthyneura: Pulmonata)
Fig. 6. Digestive system and reproductive system, Marmaronchis vaigiensis (A, C, F) and Marmaronchis marmoratus (B, D, E). A, Digestive system (type I), dorsal view, scale bar = 3 mm, Indonesia, Sulawesi [2244] (UMIZ 00183); B, Digestive system (type I), dorsal view, scale bar = 3 mm, Papua New Guinea, New Ireland, Kavieng [6092] (MNHN IM-2013-55527); C, Posterior reproductive parts, scale bar = 2 mm, same as A; D, Posterior reproductive parts, scale bar = 2 mm, same as B; E, Anterior male copulatory parts, scale bar = 2 mm, same as B; F, Anterior male copulatory parts, scale bar = 2 mm, Papua New Guinea, Madang [5435] (MNHN IM-2013-11718). Abbreviations: dd, deferent duct; ddg, dorsal lobe of digestive gland; fgm, female gland mass; hd, hermaphroditic duct; hg, hermaphroditic gland; i, intestine; ov, oviduct; pdg, posterior lobe of the digestive gland; ps, penial sheath; rg, rectal gland; rm, penial retractor muscle; rs, receptaculum seminis; sp, spermatheca; st, stomach; v, vestibule.
Fig. 1 in Systematic revision one clade at a time: A new genus of onchidiid slugs from the Indo-West Pacific (Gastropoda: Euthyneura: Pulmonata)
Fig. 1. Phylogenetic tree showing relationships between Marmaronchis individuals based on mitochondrial COI sequences. Numbers above branches are the bootstrap values (Maximum Likelihood analysis) and below are the posterior probabilities (Bayesian analysis); only significant numbers (>75% and>0.9) are indicated. All other sequences serve as outgroups. Information on individually-identified Marmaronchis specimens can be found in the list of material examined.
Text-fig. 3. Tumidopteris astra sp. nov., holotype GIN 4851/343h, morphology of sori. a: part of fertile pinnule; b: one practically complete sorus located on the terminal part of a lateral vein; c: sorus with four visible sporangia; d: partly damaged sorus with three visible sporangia; e: two neighbouring sori. Locality: the borehole IK-675, depth 961.7 m. Scale 1 mm (a, b, e), 500 Μm (c), 100 Μm (d). in A New Species Of The Genus Tumidopteris Naugolnykh From The Permian Of The Pechora Cis-Urals, Russia
Text-fig. 3. Tumidopteris astra sp. nov., holotype GIN 4851/343h, morphology of sori. a: part of fertile pinnule; b: one practically complete sorus located on the terminal part of a lateral vein; c: sorus with four visible sporangia; d: partly damaged sorus with three visible sporangia; e: two neighbouring sori. Locality: the borehole IK-675, depth 961.7 m. Scale 1 mm (a, b, e), 500 Μm (c), 100 Μm (d).
Fig. 3 in One new recorded species of the genus Strongylium (Coleoptera: Tenebrionidae) from China
Fig. 3. Habitat and habitus of Strongylium rufipenne. A, B – habitat in Sichuan Province, Baoxing county, Muping town, Dachigou; C – habitus.
Figs 1–5 in One new genus and three new species of wingless grasshoppers from Xizang, China (Orthoptera: Acridoidea)
Figs 1–5. Pseudozubovskia xizangensis sp. nov. 1. Body. 2. Head and pronotum. 3–5. Terminalia. 3–4. ♂. 5. ♀. 1, 4. Lateral view. 2–3, 5. Dorsal view. Scare bar = 1 mm.
Figs 6–11 in One new genus and three new species of wingless grasshoppers from Xizang, China (Orthoptera: Acridoidea)
Figs 6–11. Eokingdonella gongbugyanda sp. nov. 6. Body. 7. ♂, terminalia. 8. Head and pronotum. 9–11. ♀, terminalia. 6, 10. Lateral view. 7–8, 11. Dorsal view. 9. Ventral view. Scare bar = 1 mm.
Figs 12–15 in One new genus and three new species of wingless grasshoppers from Xizang, China (Orthoptera: Acridoidea)
Figs 12–15. Dysanema magna sp. nov. 12. Body. 13. Head and pronotum. 14–15. ♀, terminalia. 12. Lateral view. 13–14. Dorsal view. 15. Ventral view. Scare bar = 1 mm.
FIG. 9 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 9. — Tropicoporus tropicalis (M.J.Larsen & Lombard) L.W.Zhou & Y.C.Dai and T. stratificans G.Coelho & Yurchenko: A, T. tropicalis basidioma of URM94078 in situ; B, vertical section of URM94078; C, setae of URM94078 in 3% KOH; D, basidiospores of URM94078 in 3% KOH; E, dried T. stratificans basidioma of URM94063; F, tube trama of URM94063 in CB, immersed rhomboid crystals; G, hymenial setae of URM94063 in 3% KOH; H, basidiospores of URM94063 in 3% KOH. Scale bars: A, B, 5 cm; C, 1 cm; D, 5 mm;
FIG. 8 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 8. — Tropicoporus nullisetus Xavier de Lima, V.R.T. Oliveira & Gibertoni, sp. nov. Holotype (URM94073): A, B, basidioma in situ; C, longitudinal section and the black line bellow the tomentum; D, pore surface; E, origin and end of a skeletal hyphae from the tube trama in 3% KOH; F, basidiospores in 3% KOH; G, cystidioles in CB; H, basidiospores in water. Scale bars: A, B, 5 cm; C, 1 cm; D, 5 mm; E-H, 10 μm.
FIG. 7 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 7. — Tropicoporus linteus (Berk. & M.A.Curtis) L.W.Zhou & Y.C.Dai: A, dried basidiomata of URM84512; B, longitudinal section of URM84512, black line below the tomentum; C, pileus surface of URM94076; D, pileus surface of URM94048; E, hymenial setae of URM84512 in 3% KOH; F, basidiospores of URM84512 in 3% KOH; Scale bars: A, 2cm; B-D, 1 cm; E, F, 10 μm.
FIG. 6. — Tropicoporus flabellatus V.R.T. Oliveira, J.R.C in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 6. — Tropicoporus flabellatus V.R.T. Oliveira, J.R.C. Oliveira-Filho, Xavier de Lima & Gibertoni, sp. nov. (URM94338): A, dried basidiomata; B, longitudinal section, red arrow pointing to the black line in the context; C, pore surface; D, hymenial setae; E, basidiospores; F, generative hypha with basidia at the end; G, skeletal hypha of the tube trama; H, hyphae of the black line in the context; I, hyphae of the tomentum. All preparations in 3% KOH. Scale bars: A, B, 1cm; C, 5 mm; D-I, 10 μm
FIG. 5 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 5. — Sclerotus extensus (Lév.) Xavier de Lima: A, dried basidiomata of URM87072; B, dried basidiomata of URM89390; C, longitudinal section of the dried basidioma of URM89538, red arrows pointing the black line in the context; D, skeletal of the context in 3% KOH; E, hymenial setae (URM89538) in 3% KOH; F, basidiospores (URM89538) in 3% KOH. Scale bars: A-C, 1 cm; D-F, 10 μm.
FIG. 4. — Inonotus parvisetus V.R.T in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 4. — Inonotus parvisetus V.R.T. Oliveira, Xavier de Lima, Gibertoni, sp. nov. (URM94334): A, B, dried basidiomata of the holotype; C, pore surface; D, longitudinal section of the dried basidioma, red arrow pointing the black line in the context; E, tramal setae; F, basidiospores; G, generative hyphae of the context. All preparations in 3% KOH. Scale bars: A, B, 1 cm; C, 1 mm; D, 5 mm; E-G, 10 μm.
FIG. 2 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 2. — Phylogeny of Inonotus clade from ITS sequences. Topology is from ML analysis, with BT/PP values at the nodes. Only BT above 75% and/or PP above 0.95 are shown. Newly generated sequences are in boldface.
FIG. 1 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 1 (continuation). — [...] values at the nodes. Only BT above 75% and/or PP above 0.95 are shown. Newly generated sequences are in boldface.
FIG. 1 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 1. — Phylogeny of Hymenochaetaceae, with focus on Inonotus clade, inferred from ITS and LSU sequences. Topology is from ML analysis, with BT/PP [...]
FIG. 3 in Taxonomy and phylogenetic analysis reveal one new genus and three new species in Inonotus s.l. (Hymenochaetaceae) from Brazil
FIG. 3. — Inonotus micantissimus (Rick) Rajchemb. (URM90186): A, pore surface; B, tramal setae; C, hymenial setae; D, basidiospores. I. rickii (Pat.) Reid (URM94336): E, aspect of the anamorphous stage; F, tramal setae and chlamydospores. All preparations in 3% KOH. Scale bars: A, 1 mm; B, C, F, 20 μm; E, 1 cm.
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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.