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FIGURE 5 in Ditiola haasii (Basidiomycota, Dacrymycetaceae)-taxonomy and ecology of a rare species from Central Europe
FIGURE 5. Maximum likelihood schematic phylogenetic tree based on the nrLSU dataset of Shirouzu et al. (2020). Numbers at branches indicate bs/pp values (indicated in the main tree only when bs ≥ 50% and pp ≥ 0.75). D1–D8 notation of subclades in Dacrymycetaceae follows Zamora & Ekman (2020) for convenience. The subtree shown at the top left is a detail of the relevant part of the main tree (enclosed by a red dotted rectangle). The two newly generated sequences from the studied specimens in PRM herbarium are indicated in bold red. The previously published Ditiola haasii sequence AF291314 (Weiβ & Oberwinkler 2001) is based on a collection from the holotype locality (see Discussion, part Taxonomy).
FIGURE 6 in Ditiola haasii (Basidiomycota, Dacrymycetaceae)-taxonomy and ecology of a rare species from Central Europe
FIGURE 6. Boubínský prales virgin forest, Czech Republic. Typical habitat of D. haasii. Photo J. Holec.
FIGURE 4. Ditiola haasii, micromorphological characters. A in Ditiola haasii (Basidiomycota, Dacrymycetaceae)-taxonomy and ecology of a rare species from Central Europe
FIGURE 4. Ditiola haasii, micromorphological characters. A: Terminal cells of cortical hyphae. B: Three-septate mature basidiospores. C: Basidiospores with different degrees of septation and microconidia. D–F: Basidia in different degrees of development. A–B and D: PRM 944647; C, E–F: PRM 922888. Scale bars: 10 µm. Photos J.C. Zamora.
FIGURE 3 in Ditiola haasii (Basidiomycota, Dacrymycetaceae)-taxonomy and ecology of a rare species from Central Europe
FIGURE 3. Ditiola haasii, slightly aberrant basidiomata, Boubínský prales, PRM 922888. For details see Collections studied. Photo J. Holec.
FIGURE 1 in Ditiola haasii (Basidiomycota, Dacrymycetaceae)-taxonomy and ecology of a rare species from Central Europe
FIGURE 1. Ditiola haasii, Boubínský prales, PRM 944647. For details see Collections studied. Photo J. Holec.
FIGURE 9. Nesippus nana Cressey, 1970 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 9. Nesippus nana Cressey, 1970, adult female. (A) Caudal ramus; (B) Mandible. SEM micrographs. (C) Cephalothorax, ventral; (D) Antenna; (E) Leg 4; (F) Cephalon border. Scale bars A, 50 µm; B, 10 µm; C, 200 µm; D, 100 µm; E–F, 20 µm.
FIGURE 8. Nesippus tigris Cressey, 1967 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 8. Nesippus tigris Cressey, 1967, adult female SEM micrographs. (A) Cephalothorax, ventral; (B) Maxilla, calamus; (C) Leg 1; (D) Leg 3, last exopod segment and Leg 4. Scale bars: A, 200 µm; B–D, 20 µm.
FIGURE 5. Nesippus crypturus Heller, 1868 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 5. Nesippus crypturus Heller, 1868, adult female SEM micrographs. (A) Morphoform 1, habitus ventral; (B) Morphoform 2, habitus ventral; Digital photographs through light microscope showing (C) Leg 4 endopod with armature (è); (D) Leg 4 endopod with armature (è); (E) Leg 4 endopod of same specimen without armature. Scale bars: A, B, 200 µm; C, 100 µm; D, E, 50 µm.
FIGURE 7. Nesippus tigris Cressey, 1967 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 7. Nesippus tigris Cressey, 1967, adult female. (A) Caudal ramus; (B) Mandible. Scale bars A, 50 µm; B, 100 µm.
FIGURE 4. Nesippus crypturus Heller, 1868 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 4. Nesippus crypturus Heller, 1868, adult female SEM micrographs. (A) Cephalothorax, ventral; (B) Antennule, first segment; (C) Maxilla, calamus; (D) Leg 2, exopod; (E) Leg 4; Line drawing of (F) Mandible. Scale bars: A, 200 µm; B, C, E,
FIGURE 3. Nesippus vespa Kirtisinghe, 1964 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 3. Nesippus vespa Kirtisinghe, 1964, adult female. (A) Antennule; (B) Mandible; (C) Maxillule. Scale bars: A, 50 µm; B, 10 µm; C, 25 µm.
FIGURE 6 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 6. The prevalence (%), mean intensity and mean abundance of Nesippus crypturus Heller, 1868 on its different host species (* indicates morphoform 2 host species).
FIGURE 2. Nesippus vespa Kirtisinghe, 1964 in Notes on the morphology and ecology of the adult females of Nesippus species (Siphonostomatoida: Pandaridae) with a key for identification
FIGURE 2. Nesippus vespa Kirtisinghe, 1964, adult female SEM micrographs. (A) caudal ramus; (B) cephalothorax, ventral; (C) maxilla; (D) spine structure leg 1 exopod; (E) maxilliped claw and myxal pad. Scale bars: A, C, E, 20 µm; B, 200 µm; D, 10 µm.
FIGURE 16 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 16. Living specimens of Minyaspis amylaneae sp. nov., CASIZ 113620, in situ prior to collection. Photograph by Robert Van Syoc, underwater at depth of 14.7 meters at collection site on North Astrolabe Reef, Fiji. Polyps of Antipathes cf. A. spinulosa symbiont visible on the capitula and peduncles of the barnacles.
FIGURE 15 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 15. Phylogenetic consensus of 18 shortest trees (147 steps each) using morphological characters for known taxa of Oxynaspididae and two outgroup species, Lepas anatifera and Dosima fascicularis.
FIGURE 14 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 14. Minyaspis welchi sp. nov. Paratype CASIZ 110170; outline of whole specimen showing general arrangement of plates in relation to each other (A), plate details are not shown in this simple outline drawing, see SEMs in Fig. 13 for plate details. Paratype CASIZ 110169; Mandible (B), Maxilla 1 (C), Cirrus I (D). Holotype CASIZ 110150; whole specimen, with host tissue covering capitulum (E).
FIGURE 13 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 13. Minyaspis welchi sp. nov. Paratype CASIZ 110149. Carina, dorsal view (A), oblique view (B), side view (C). Tergum exterior (D), interior (E). Scutum exterior (F), interior (G). Scale bar equals 750 µm for A, B, C; 600 µm for D, E, and F; 850 µm for and G.
FIGURE 11 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 11. Minyaspis opreskoi sp. nov. Paratype CASIZ 110162. Carina, dorsal view (A), oblique view (B), side view (C). Tergum exterior (D), interior (E). Scutum exterior (F), interior (G). Scale bar equals 1.5 mm for A, C, D, E, F and G; 1 mm for B.
FIGURE 5 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 5. Oxynaspis joankovenae sp. nov. Paratype, CASIZ 110128. Carina, dorsal view (A), side view (B), oblique view (C). Tergum exterior (D), interior (E). Scutum exterior (F), interior (G). Scale bar equals 1.5 mm for A; 1 mm for B, D, E, F, G; 750 µm for C.
FIGURE 7 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 7. Oxynaspis joandianae sp. nov. Paratype CASIZ 104147. Carina, dorsal view (A), side view (B). Tergum exterior (C), interior (D). Scutum exterior (E), interior (F). Scale bar equals 600 µm.
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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.