Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
17
datasets available to search
ShareScore release 0.9.0
Dataset results
17 results for “Hydnellum”
Fig. 9. Hydnellum basidiospores. A. H in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 9. Hydnellum basidiospores. A. H. fagiscabrosum (holotype, GB-0195805). B. H. glaucopus (GB-0195722). C. H. illudens (GB-0195937). D. H. lepidum (GB-129373). E. H. nemorosum (O-F-242352). F. H. roseoviolaceum (holotype. GB-0195936). G. H. scabrosellum (holotype, GB-0195689). H. H. scabrosum (GB-0195731). Scale bar = 5 µm.
Fig. 8. A in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 8. A. Hydnellum scabrosellum, young basidiomata from the type locality, GB-0195806. B. H. scabrosellum holotype, mature basidiomata, GB-0195689. C. H. scabrosellum GB-0195791, photo G. Aronsson. D. H. scabrosellum, collecting site for GB-0195791, photo G. Aronsson.
Fig. 6. A. Hydnellum nemorosum K in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 6. A. Hydnellum nemorosum K(M)197481. B. H. nemorosum type locality. C, D. H. nemorosum holotype, K(M)197478.
Fig. 7. A–C in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 7. A–C. Hydnellum roseoviolaceum, holotype, GB-0195936, photos B. Pettersson. D. H. roseoviolaceum type locality, photo B. Pettersson. E. H. fuligineoviolaceum TU106391 (UDB011895), photo V. Liiv. F. H. fuligineoviolaceum GB-0195817.
Fig. 5. A in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 5. A. Hydnellum illudens TU106275 (UDB003274), photo V. Liiv. B. H. illudens GB-0195724. C. H. illudens TU106475 (UDB015699), photo V. Liiv. D. H. illudens GB-0195818. E. Hydnellum scabrosum TU106993 (UDB015662), photo V. Liiv. F. H. scabrosum TU106280 (UDB003279), photo V. Liiv.
Fig. 4. A in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 4. A. Hydnellum fagiscabrosum GB-0195727. B. Collecting site for GB-0195727. C. H. fagiscabrosum holotype, GB-0195805. D. H. fagiscabrosum O-F-251442, photo I.-L. Fonneland. E. H. fagiscabrosum Hyd229, photo A. Lucas F. H. fagiscabrosum GB-0195622, photo J. Olsson. G. Hydnellum lepidum DMS-680077, photo T. Borgen. H. H. lepidum GB-0202073.
Fig. 1 in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 1. Phylogram of Hydnellum. Maximum Likelihood tree based on nuclear ribosomal 5.8S and partial 28S sequences. Numbers on branches represent reliable support values from SH-aLRT test (≥ 80 %), ultrafast bootstrap (≥ 95 %), and Bayesian inference posterior probability values (≥ 0.95), respectively. Species described here are marked in bold face.
Fig. 2 in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 2. Phylogram of Hydnellum section Violacei. Maximum Likelihood tree based on nuclear ribosomal ITS sequences. Numbers on branches represent reliable support values from SH-aLRT test (≥ 80 %), ultrafast bootstrap (≥ 95 %), and Bayesian inference posterior probability values (≥ 0.95), respectively. Terminal names are the original identification. Sequences from type specimens are marked in bold face. Sequences not generated from basidiomata are marked as env(ironmental).
Fig. 3 in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 3. Phylogram of Hydnellum section Scabrosi. Maximum Likelihood tree based on nuclear ribosomal ITS sequences. Numbers on branches represent reliable support values from SH-aLRT test (≥ 80 %), ultrafast bootstrap (≥ 95 %), and Bayesian inference posterior probability values (≥ 0.95), respectively. Terminal names are the original identification. Sequences from type specimens are marked in bold face. Sequences not generated from basidiomata are marked as env(ironmental).
Fig. 3 in Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens
Fig. 3. (Continued).
FIGURE 3 in A novel hydnoid species of Hydnellum (Bankeraceae, Thelephorales) from southwest China
FIGURE 3. Hydnellum ailaoense (HKAS 125553, holotype). a Section of hymenophore trama with basidia. b Hyphae from pileus context. c Basidiospores. Scale bars: a, b = 40 μm, c = 10 μm.
FIGURE 2 in A novel hydnoid species of Hydnellum (Bankeraceae, Thelephorales) from southwest China
FIGURE 2. Hydnellum ailaoense (HKAS 125553, holotype). a–d Typical mature basidiocarps. Scale bars: a–d = 5 cm.
FIGURE 1 in A novel hydnoid species of Hydnellum (Bankeraceae, Thelephorales) from southwest China
FIGURE 1. Maximum likelihood tree based on the combined nLSU and ITS dataset, showing the phylogenetic position of H. ailaoense. Bootstrap proportions (MLBP) equal to or above 75%, and equal to or above 0.90 proportions (BIPP) are shown above the branches of the phylogenetic tree. The newly generated sequences are shown in bold red.
Figure 2 from: Larsson K-H, Svantesson S, Miscevic D, Kõljalg U, Larsson E (2019) Reassessment of the generic limits for Hydnellum and Sarcodon (Thelephorales, Basidiomycota). MycoKeys 54: 31-47. https://doi.org/10.3897/mycokeys.54.35386
Figure 2 Maximum likelihood analyses of LSU dataset for Thelephorales. Branches in bold have a posterior probability value of 1 in Bayesian inference and 100% bootstrap support in ML analysis, if not otherwise indicated by a figure. Lower support values on other branches are indicated by figures. Steccherinumochraceum and Sistotremabrinkmannii are used as outgroup (branch lengths shortened).
Figure 1 from: Larsson K-H, Svantesson S, Miscevic D, Kõljalg U, Larsson E (2019) Reassessment of the generic limits for Hydnellum and Sarcodon (Thelephorales, Basidiomycota). MycoKeys 54: 31-47. https://doi.org/10.3897/mycokeys.54.35386
Figure 1 Fruiting bodies of Hydnellum and SarcodonAHydnellumsuaveolensBH.aurantiacumCH.ferrugineumDSarcodonimbricatus.
Figure 3 from: Larsson K-H, Svantesson S, Miscevic D, Kõljalg U, Larsson E (2019) Reassessment of the generic limits for Hydnellum and Sarcodon (Thelephorales, Basidiomycota). MycoKeys 54: 31-47. https://doi.org/10.3897/mycokeys.54.35386
Figure 3 Ultrametric default rooted BEAST tree of ITS dataset for Hydnellum and Sarcodon. Posterior probability values and bootstrap percent support from ML analysis are indicated by figures; na = not applicable.
FIGURE 4 in A novel hydnoid species of Hydnellum (Bankeraceae, Thelephorales) from southwest China
FIGURE 4. Hydnellum ailaoense (HKAS 125553, holotype). a-d Appearance of basidiospores were photographed using SEM. Scale bars: a, b = 2 μm, c, d = 1 μm.
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.