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13,397 results for “sp. nov.”
Fig. 2 in Clitopilus cretoalbus sp. nov. (Entolomataceae, Agaricales), a new species from Pakistan
Fig. 2. Phylogenetic tree of Clitopilus cretoalbus A.Izhar, Zaman, M.Asif, H.Bashir, Niazi & Khalid sp. nov. based on nrLSU sequences. Sequences generated from Pakistani collections are in bold.
Fig. 3. A–F in Clitopilus cretoalbus sp. nov. (Entolomataceae, Agaricales), a new species from Pakistan
Fig. 3. A–F. Morphology of Clitopilus cretoalbus A.Izhar, Zaman, M.Asif, H.Bashir, Niazi & Khalid sp. nov. A–B. Basidiomata of Skp102 (holotype, LAH35709). C–D. Basidiomata of Skp106 (LAH37112) in natural habitat. E–F. Basidiomata of MN16 (LAH37017). Photographs by Aiman Izhar, Muhammad Asif & Zaman Khan. Scale bars = 10 mm.
Fig. 1 in Clitopilus cretoalbus sp. nov. (Entolomataceae, Agaricales), a new species from Pakistan
Fig. 1. Phylogenetic tree of Clitopilus cretoalbus A.Izhar, Zaman, M.Asif, H.Bashir, Niazi & Khalid sp. nov. based on nrITS sequences. Sequences generated from Pakistani collections are in bold.
Fig. 4. A–F in Clitopilus cretoalbus sp. nov. (Entolomataceae, Agaricales), a new species from Pakistan
Fig. 4. A–F. Microscopic characters of Clitopilus cretoalbus A.Izhar, Zaman, M.Asif, H.Bashir, Niazi & Khalid sp. nov. (Skp102). A. Basidia. B. Basidiospores. C. Cheilocystidia. D. Pileipellis. E. Stipitipellis. Drawings by Aiman Izhar. Scale bars = 10 μm.
Supplementary material S1. Donacia (Protodonacia) bienkowskii Bukejs and Alekseev subgen. et sp. nov., holotype, Nr. 3300.142 [RSKM], X-ray micro-CT volume rendering of the habitus without legs and antennae.
<p>Supplementary material S1 in paper: Bukejs A., Alekseev V.I. & McKellard R.C. First described reed beetle (Chrysomelidae: Donaciinae) from amber inclusion: member of the littoral community in the Eocene Baltic amber forest. Historical Biology.</p> <p> </p>
FIG. 5. — Russula pseudocatillus F. Yuan & Y in Russula viridicinnamomea F. Yuan & Y. Song, sp. nov. and R. pseudocatillus F. Yuan & Y. Song, sp. nov., two new species from southern China
FIG. 5. — Russula pseudocatillus F. Yuan & Y. Song, sp. nov.: K16042406 (GDGM 75338, holotype): A, Basidia; B, Pleurocystidia; C, Cheilocystidia; D, Pileocys- tidia; E, Caulocystidia; F, Pileipellis. Scale bars: 10 μm.
FIG. 4. — Russula pseudocatillus F. Yuan & Y in Russula viridicinnamomea F. Yuan & Y. Song, sp. nov. and R. pseudocatillus F. Yuan & Y. Song, sp. nov., two new species from southern China
FIG. 4. — Russula pseudocatillus F. Yuan & Y. Song, sp. nov.: K16042406 (GDGM 75338, holotype). A, B, fruiting bodies; C, D, Terminal elements of pileipellis; E, F, Scanning electronic micrographs of basidiospores. Scale bars: A, B, 1 cm; C, D, 10 μm; E, F, 1 μm.
FIG. 3. — Russula viridicinnamomea F. Yuan & Y in Russula viridicinnamomea F. Yuan & Y. Song, sp. nov. and R. pseudocatillus F. Yuan & Y. Song, sp. nov., two new species from southern China
FIG. 3. — Russula viridicinnamomea F. Yuan & Y. Song, sp. nov. K15091418 (GDGM 75339, holotype). A, Basidia; B, Pleurocystidia; C, Cheilocystidia; D, Pileocystidia; E, Caulocystidia; F, Pileipellis. Scale bars: 10 μm.
FIG. 2. — Russula viridicinnamomea F. Yuan & Y in Russula viridicinnamomea F. Yuan & Y. Song, sp. nov. and R. pseudocatillus F. Yuan & Y. Song, sp. nov., two new species from southern China
FIG. 2. — Russula viridicinnamomea F. Yuan & Y. Song, sp. nov.: K15091418 (GDGM 75339, holotype). A, B, Fruiting bodies; C, Pileipellis; D, Terminal elements of pileipellis; E,F, Scanning electronic micrographs of basidiospores. Scale bars: A-B, 1 cm; C, 100 μm; D, 10 μm; E-F, 1 μm.
FIG. 1 in Russula viridicinnamomea F. Yuan & Y. Song, sp. nov. and R. pseudocatillus F. Yuan & Y. Song, sp. nov., two new species from southern China
FIG. 1. — Maximum-likelihood tree of Russula subg. Heterophyllidia based on ITS sequences performed by RAxML. Bootstrap values higher than 70% are shown, two novel species are shown in bold.
FIG. 1 in Rindifilum ramosum gen. nov., sp. nov., a new freshwater genus within the Ulvales (Ulvophyceae, Chlorophyta)
FIG. 1. — The phylogenetic position of Rindifilum ramosum gen. nov., sp. nov., obtained by a Bayesian inference analysis of the concatenated and partitioned 18S rDNA, tufA, and rbcL dataset. Asterisks indicate the highest support values obtained by all three inference methods. GenBank accession numbers for the concatenated sequences (18S rDNA, tufA and rbcL, respectively) accompany each species name. Newly obtained sequences are given in bold. Scale bar shows the estimated number of substitutions per site.
FIG. 2 in Rindifilum ramosum gen. nov., sp. nov., a new freshwater genus within the Ulvales (Ulvophyceae, Chlorophyta)
FIG. 2. — Light microscopic morphology of Rindifilum ramosum gen. nov., sp. nov. A-Q, SAG 2052; R, S, SAG 2039. Scale bars: 5 μm.
FIG. 5 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 5. — Tetra/bisporangial conceptacles of Lithophyllum artabricum V.Peña, sp. nov.: A, B, chambers dumbbell-shaped, empty; C, canal pore conical, tapering from the bottom to the roof surface; D, central calcified columella; E, buried conceptacles within the thallus; F, buried conceptacle with inorganic infilling. A, SANT-Algae 7046; B-D, E, holotype SANT-Algae 33667; F, SANT-Algae 15005. Scale bars: A, B, D, 100 µm; C, 50 µm; E, 500 µm; F, 200 µm.
FIG. 3 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 3. — Phylogenetic tree inferred from maximum likelihood (ML) and Bayesian inference of psbA sequences included in the present study. In bold Lithophyllum species reported for the European coasts. Bootstrap ML values>60% and posterior probabilities>0.60 from Bayesian inference shown for each node. Scale bar: 0.03 substitutions per site.
FIG. 2 in Lithophyllum artabricum V.Peña, sp. nov. (Corallinales, Rhodophyta): a cryptic species in the Atlantic Iberian Peninsula hitherto assigned to Lithophyllum stictiforme (Areschoug) Hauck
FIG. 2. — Maximum Likelihood (ML) tree of COI-5P sequences included in the present sudy. In bold Lithophyllum species reported for the European coasts. Bootstrap ML values>60% shown for each node. Scale bar: 0.03 substitutions per site.
FIG. 1 in Ericaria giacconei sp. nov. (Sargassaceae, Fucophyceae), the species to which the invalidly published Cystoseira hyblaea Giaccone should be referred
FIG. 1. — Distribution of Ericaria giacconei sp. nov. white circles indicate stations in which the species was previously recorded as Cystoseira hyblaea Giaccone. The white triangle shows the type locality.
FIG. 5 in Ericaria giacconei sp. nov. (Sargassaceae, Fucophyceae), the species to which the invalidly published Cystoseira hyblaea Giaccone should be referred
FIG. 5. — Ericaria giacconei sp. nov. and Sabellaria alveolata (Linnaeus, 1767) from "Porto Palo di Capo Passero" (Sicily): A, overview of the bottom covered by a E. giacconei and S. alveolata biocostructions; B, A thallus of E. giacconei encircled by S. alveolata.
FIG. 3 in Ericaria giacconei sp. nov. (Sargassaceae, Fucophyceae), the species to which the invalidly published Cystoseira hyblaea Giaccone should be referred
FIG. 3. — Ericaria giacconei sp. nov., holotype: CAT 2716, 11.I.2020, Contrada Guardiana (36°39'03"N, 15°04'37"E), Porto Palo di Capo Passero (Straits of Sicily, Italy), 0.50 m depth: A, habit; B, detail of basal crust; C, detail of apex of cauloid. Scale bars: A, 2 cm; B, C, 1 cm.
FIG. 4 in Ericaria giacconei sp. nov. (Sargassaceae, Fucophyceae), the species to which the invalidly published Cystoseira hyblaea Giaccone should be referred
FIG. 4. — Ericaria giacconei sp. nov., holotype: CAT 2716: A, cross section showing a medulla formed by small rounded cells, a cortex made of roundish cells with thin walls and a meristoderm formed by a layer of rectangular cells twice longer than wide; B, mature receptacles terminal, with deciduous spinous appendages, conceptacles located at the base of spinous deciduous appendages; C, cross section showing a conceptacle with oogonia occupying the floor of the conceptacle and antheridia forming a ring above them; D, detail of antheridia on branched hairs. Scale bars: A, D, 50 µm; B, 0.5 cm; C, 100 µm.
FIG. 2 in Ericaria giacconei sp. nov. (Sargassaceae, Fucophyceae), the species to which the invalidly published Cystoseira hyblaea Giaccone should be referred
FIG. 2. — Ericaria giacconei sp. nov.: Giaccone's specimen labelled as Cystoseira hyblaea Giaccone (CAT 74, preserved in glycerine) showing primary branches with a cupressoid outline. Scale bar: 2 cm.
ScienceDex guides
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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.