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Fig. 5. Cortinarius dhakuricus A.Bose & K in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 5. Cortinarius dhakuricus A.Bose & K.Das sp. nov. (holotype; A. Bose & K. Das, AB23-033, CAL). a. Basidiospores. b. Basidia. c. Marginal cells. d–e. Transverse section of pileipellis through squamules. Scale bars = 10 µm.
Fig. 4. Cortinarius dhakuricus A.Bose & K in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 4. Cortinarius dhakuricus A.Bose & K.Das sp. nov. (holotype; A. Bose & K. Das, AB23-033, CAL). a–b. Fresh basidiomata. c. Basidia. d–e. Basidiospores (SEM). f. Transverse section through squamules. Scale bars: c–e = 10 µm; f = 20 µm.
Fig. 3. Cortinarius thindii A.Bose & K in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 3. Cortinarius thindii A.Bose & K.Das sp. nov. (holotype; A. Bose & K. Das, AB23-025, CAL). a. Basidiospores. B. Basidia. c. Elements of pileipellis. d. Marginal elements. Scale bars = 10 µm.
Fig. 7 in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 7. Cortinarius pseudotorvus (Arunima Bose, AB23-039, CAL). a. Basidiospores. b. Basidia. c. Elements of pileipellis. d. Marginal elements. Scale bars = 10 µm.
Fig. 1 in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 1. Phylogram generated by maximum likelihood analysis based on ITS sequence data for C. thindii A.Bose & K.Das sp. nov., C. dhakuricus A.Bose & K.Das sp. nov., C. pseudotorvus A.Naseer, J.Khan, & A.N.Khalid and allied species. Maximum likelihood bootstrap support values (MLbs) ≥ 70% are shown on the left of "/". C. thindii and C. dhakuricus are placed in bold red and C. pseudotorvus placed in bold blue font, respectively, to highlight their phylogenetic positions in the tree.
Fig. 6 in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 6. Cortinarius pseudotorvus (Arunima Bose, AB23-050, CAL). a–c. Fresh basidiomata. d. Basidia. e. Basidiospores (SEM). Scale bars: d = 10 µm; e = 2 µm.
Fig. 2. Cortinarius thindii A.Bose & K in Two new species and a new record of Cortinarius subgenus Telamonia (Agaricales) from India
Fig. 2. Cortinarius thindii A.Bose & K.Das sp. nov. (holotype; A. Bose & K. Das, AB23-025, CAL). a–b. Fresh basidiomata. c. Basidia. d. Basidiospores. Scale bars: c = 10 µm; d = 2 µm.
Mobilising marine biodiversity data: a new malacological dataset of Italian records (Mollusca)
<p>The location and palaeoceanographic history of the Mediterranean Sea make it a biodiversity hotspot, prompting extensive studies in this region. However, despite the marine biodiversity of this area is apparently widely studied, a large amount of distributional data for Mediterranean taxa is still unpublished or scattered in various sources and formats, causing severe limitations to their potential reuse. This emerges as a particularly thorny issue for highly biodiverse and neglected taxa, such as invertebrates. The mobilisation of these frozen data through a process of standardisation and georeferencing could potentially support biodiversity research and conservation. The aim of this work is to provide a standardised pipeline to integrate these dispersed data, focusing on the Italian waters of the Mediterranean Sea and using molluscs as target taxa. Data were gathered from two main sources: published literature and Natural History Collections. The harmonisation process involved three key steps: 1) terminology and structure standardisation, 2) taxonomy updating and 3) georeferencing. Our efforts yielded over 44000 standardised records of mollusc species from Italian seawaters. These records encompassed primary biodiversity data from newly digitised specimens owned by 11 different institutions and private collectors, as well as secondary biodiversity data extracted from 311 published studies.</p>
Fig. 2 in A new species and depth record of bopyrid (Crustacea, Isopoda) from a squat lobster in the Kuril-Kamchatka Trench
Fig. 2. Pleurocryptella altalis sp. nov., holotype, ♀ (ZMMU Mc 1420). A. Dorsal view. B. Ventral view. C. Left barbula. D. Right antennule and antenna. E. Left maxilliped, external view. F. Left oostegite 1, external view with pereopod 1 attached. G. Left oostegite 1, internal view. H–I. Left pereopod 1, lateral view. J–K. Left pereopod 7, lateral view. L. Left pereopod 7 and oostegite, lateral view. M. Pleon, ventral view.
Fig. 1 in A new species and depth record of bopyrid (Crustacea, Isopoda) from a squat lobster in the Kuril-Kamchatka Trench
Fig. 1. Micrographs of Pleurocryptella altalis sp. nov. and host Munidopsis petalorhyncha Baba, 2005 (ZMMU Ma 3504). A. Munidopsis petalorhyncha, ♂, with swelled right branchial chamber from Pleurocryptella altalis sp. nov. B. Pleurocryptella altalis sp. nov., holotype, ♀, dorsal view (ZMMU Mc 1420) with attached allotype, ♂ (ZMMU Mc 1421). C. Pleurocryptella altalis sp. nov., allotype, ♂, oblique ventral view (ZMMU Mc 1421).
Fig. 3 in A new species and depth record of bopyrid (Crustacea, Isopoda) from a squat lobster in the Kuril-Kamchatka Trench
Fig. 3. Pleurocryptella altalis sp. nov., allotype, ♂ (ZMMU Mc 1421). A. Ventral view. B. Dorsal view. C. Right antennule. D. Right antenna. E. Right maxilliped. F. Right pereopod 1, lateral view. G–H. Left pereopod 7, lateral view. I. Pleon, ventral view (pleopods shown in dashed lines).
Fig. 13. Hadruroides geckoi, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 13. Hadruroides geckoi, n. sp., paratype ♂ (MHNC), sinistral hemispermatophore. A. Ental aspect. B. Dorsal aspect. C. Ectal aspect. D. Ventral aspect. Scale bar = 0.5 mm.
Fig. 12. Hadruroides Pocock, 1893, diagnostic characters. A–C. Hadruroides geckoi, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 12. Hadruroides Pocock, 1893, diagnostic characters. A–C. Hadruroides geckoi, n. sp., paratype ♀ (MHNC). A. Metasomal segment V and telson, lateral aspect. B. Dextral pedipalp chela, ventrointernal aspect. C. Dextral pedipalp chela, external aspect. D. H. geckoi, paratype ♂ (MHNC), sternite VII and metasomal segments I–V, ventral aspect showing pigmentation pattern. E. Hadruroides carinatus Pocock, 1900, ♂ (MHNC), dextral pedipalp chela, ventral aspect. F. H. geckoi, paratype ♂ (MHNC), tergite IV, dorsal aspect showing pigmentation pattern. G. Hadruroides vichayitos, n. sp., paratype ♂ (MHNC), tergite IV, dorsal aspect showing pigmentation pattern. H. H. carinatus, ♂ (MHNC), tergite IV, dorsal aspect showing pigmentation pattern. Scale bars = 1 mm.
Fig. 11. Hadruroides geckoi, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 11. Hadruroides geckoi, n. sp., holotype ♂ (MHNC). A. Metasomal segments IV, V and telson, lateral aspect. B. Metasomal segment V, ventral aspect. C. Dextral pedipalp patella, dorsal aspect. D. Dextral pedipalp patella, ventral aspect. E. Dextral pedipalp chela, ventral aspect. F. Dextral pedipalp femur, dorsal aspect. G. Dextral pedipalp chela, ventrointernal aspect. H. Dextral pedipalp chela, external aspect. Scale bars = 1 mm
Fig. 10. Hadruroides geckoi, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 10. Hadruroides geckoi, n. sp., habitus. A, B. Paratype ♂ (AMNH). C, D. Paratype ♀ (AMNH). A, C. Dorsal aspect. B, D. Ventral aspect. Scale bars = 1 cm.
Fig. 8. Hadruroides chinchaysuyu, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 8. Hadruroides chinchaysuyu, n. sp., diagnostic characters. A, B. Paratype ♀ (MHNC). A. Metasomal segment V, lateral aspect. B. Telson, lateral aspect. C–I. Paratype ♂ (MHNC). C. Dextral pedipalp chela, external aspect. D. Metasomal segments IV, V and telson, lateral aspect. E. Dextral pedipalp chela, ventral aspect. F. Metasomal segment IV, ventral aspect. G. Dextral pedipalp femur, dorsal aspect. H. Dextral pedipalp patella, dorsal aspect. I. Tergite V, dorsal aspect showing pigmentation pattern. Scale bars = 1 mm.
Fig. 9. Hadruroides Pocock, 1893, diagnostic characters. A–C. Hadruroides chinchaysuyu, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 9. Hadruroides Pocock, 1893, diagnostic characters. A–C. Hadruroides chinchaysuyu, n. sp. A. Paratype ♂ (MHNC), leg III, dextral patella, dorsal aspect. B. Paratype ♀ (MHNC), dextral pedipalp chela, external aspect. C. Paratype ♂ (MHNC), metasomal segments III–V, ventral aspect showing pigmentation pattern. D. Hadruroides maculatus (Thorell, 1876), ♂ (MHNC), leg III, dextral patella, dorsal aspect. E–H. H. chinchaysuyu, holotype ♂ (MHNC), sinistral hemispermatophore. E. Ental aspect. F. Dorsal aspect. G. Ectal aspect. H. Ventral aspect. Scale bars = 1 mm.
Fig. 6. Hadruroides chinchaysuyu, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 6. Hadruroides chinchaysuyu, n. sp., habitus. A, B. Holotype ♂ (MHNC). C, D. Paratype ♀ (MHNC). A, C. Dorsal aspect. B, D. Ventral aspect. Scale bars = 1 cm.
Fig. 7. Hadruroides Pocock, 1893, diagnostic characters. A, C. Hadruroides chinchaysuyu, n in The Genus Hadruroides Pocock, 1893 (Scorpiones: Iuridae), in Peru: New Records and Descriptions of Six New Species
Fig. 7. Hadruroides Pocock, 1893, diagnostic characters. A, C. Hadruroides chinchaysuyu, n. sp., paratype ♂ (MHNC). B, D. Hadruroides maculatus (Thorell, 1876), ♂ (MHNC). A, B. Carapace. C, D. Sternite VII and metasomal segment I, ventral aspect. Scale bars = 1 mm.
Fig. 16 in Three new species of Patrus Aubé with additional records of Gyrinidae from China (Coleoptera, Gyrinidae)
Fig. 16. Patrus procerus (Régimbart, 1884) (SYSU). A. ♀, habitus, dorsal view. B. ♀, habitus, ventral view. C. ♀, habitus, lateral view. D. ♂, genitalia. Scale bars: A–C = 1 mm; D = 0.5 mm.
ScienceDex guides
Understand access before you commit
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.