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.
42
datasets available to search
ShareScore release 0.9.0
Dataset results
42 results for “Cantharellus”
Figure 3 from: Buyck B, Hofstetter V, Ryoo R, Ka K-H, Antonín V (2020) New Cantharellus species from South Korea. MycoKeys 76: 31-47. https://doi.org/10.3897/mycokeys.76.58179
Figure 3 Cantharellus citrinus (holotype) a spores b basidia and basidiola c hyphal extremities of the pileipellis near mid-radius. Scale bar: 10 μm, but only 5 μm for spores. Drawings B. Buyck.
Figure 2 from: Buyck B, Hofstetter V, Ryoo R, Ka K-H, Antonín V (2020) New Cantharellus species from South Korea. MycoKeys 76: 31-47. https://doi.org/10.3897/mycokeys.76.58179
Figure 2 Most likely tree (-ln = 3254.82124) obtained by phylogenetic analyses of 48 tef-1 Cantharellus sequences. Supported branches are in bold with bootstrap values, when significant (≥ 70%), indicated along the branches. Sequences newly obtained for this study are in bold and highlighted in blue for the new species described in the present study. Extraction numbers and GenBank accession numbers for tef-1 sequences are reported before taxon names. Delimitation of Cantharellus subgenera Cinnabarini and Parvocantharellus (sensu lato) are indicated and C. goossensiae Heinem. and C. rubrosalmoneus (Buyck & V. Hofst.) Buyck & V. Hofst. (both in C. subg. Pseudocantharellus) are used as outgroup.
Figure 1 from: Buyck B, Hofstetter V, Ryoo R, Ka K-H, Antonín V (2020) New Cantharellus species from South Korea. MycoKeys 76: 31-47. https://doi.org/10.3897/mycokeys.76.58179
Figure 1 Map of localities of the Cantharellus species 1 Hongneung Arboretum, Seoul 2 Suta-sa, Dong-myeon, Hongcheon 3 Experimental Forest, Dong-myeon, Hongcheon 4 Mts. Chiaksan, Haggok-ri, Wonju 5 Guin-sa, Mts. Sobaek, Danyang 6 Yonghyeon National Natural Recreation Forest, Unsan-myeon, Seosan 7 Mts.Gaya, Deoksan-myeon, Yesan 8 Sudeok-sa, Deoksan-myeon, Yesan 9 Mt. Gunjusan, Chilseon-myeon, Goeisan 10 Cheoncheon-myeon, Geoisan 11 Songnisan National Park, Boeun 12 Mulan Valley, Sangcheon-myeon, Yeongdong 13 Minjoojisan Recreational Forest, Yonghwa-myeon, Yeongdong 14 Unjangsan Recreational Forest, Jeongcheon-myeon, Jinan 15 Pyunbaeg Recreational Forest, Samdong-myeon, Namhae.
Figure 6 from: Buyck B, Hofstetter V, Ryoo R, Ka K-H, Antonín V (2020) New Cantharellus species from South Korea. MycoKeys 76: 31-47. https://doi.org/10.3897/mycokeys.76.58179
Figure 6 Cantharellus curvatus (holotype) a spores b basidia and basidiola c hyphal extremities of the pileipellis near mid-radius. Scale bar: 10 μm, but only 5 μm for spores. Drawings B. Buyck.
FIG. 2 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 2. — Cantharellus longisporus Heinem.: A, young specimens ([HICPC294] with inserted original watercolor of holotype from Heinemann 1959); B, D, details of the pileus [HICPC295]; C, cylindrical or widening upwards stipe with hymenophore; E, detail of context. Photos: S. T. Ndolo Ebika & P. Ballings.
Figure 5 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 5 Cantharellus violaceovinosus: a basidiospores b basidia (Gutiérrez 23) c pileipellis (Herrera 61). Scale bars: 5 µm (a); 10 µm (b); 25 µm (c).
Figure 4 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 4 Cantharellus violaceovinosus (Corona 648, holotype): a basidiospores b terminal elements of the pileipellis c basidia d pileipellis. Scale bars: 5 µm (a); 10 µm (b, c); 25 µm (d).
Figure 3 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 3 Basidiomes of Cantharellus violaceovinosus: a Corona 648 (holotype) b Bandala 4550 c Del Moral 427 d Bandala 4490. Scale bars: 20 mm.
Figure 2 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 2 Molecular phylogenetic analysis by maximum likelihood of tef-1α+nLSU sequences dataset of Cantharellus species. Posterior probabilities and Bootstrap values (BPP/BS) are indicated on the tree branches.
Figure 1 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 1 Molecular phylogenetic analysis by maximum likelihood of tef-1α sequences dataset of Cantharellus species. Posterior probabilities and Bootstrap values (BPP/BS) are indicated on the tree branches.
Figure 2 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 2 Cantharellusdensifolius. a Field habit of the epitype (BB 16.021), showing the areolate-squamose ochraceous orange pileus surface resulting from the concentrical disruption of a dark tomentum that covered initially the young pileus b Detail of the epitype hymenophore showing the remarkably low and thick, crowded, repeatedly forking gill folds without interstitial veination c Original watercolor of the holotype by Mme. Goossens-Fontana from Heinemann (1959), reproduced with the permission of Botanic Garden Meise, Belgium d Field habit of specimen BB 16.081 showing the variability of the pileus color within a single collection. Photos: B. Buyck.
Figure 8 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 8 Cantharellustomentosoides. Microscopic features: a basidiospores b basidia and basidiola c densely septate and nearly thin-walled hyphal extremities of the pileipellis. Scale bar: 10 µm but only 5 µm for basidiospores. Drawings: B. Buyck.
Figure 9 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 9 Cantharellusdensilamellatus (holotypus, Buyck 98.013). Aspect of fresh specimens. Photo: B. Buyck.
Figure 5 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 5 Cantharellusluteopunctatus (TH 10442). a Field habit of a collection that is more intensely yellow with distinctly yellowing context b detail of the hymenophore showing the crowded, thin and strongly anastomosing gill folds. Based on photos by Noah Siegel.
Figure 10 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 10 Cantharellusdensilamellatus (holotypus, Buyck 98.013). Microscopic features: a basidiospores b basidia and basidiola c thin-walled to slightly refringent hyphal extremities of the pileipellis. Scale bar: 10 µm but only 5 µm for basidiospores. Drawings: B. Buyck.
Figure 4 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 4 Cantharellusluteopunctatus. a Field habit of the epitype (TH 10285) b details of younger basidiomata from specimen TH 9921, showing the gradual color change of the pileus going from pinkish brown in youngest stages to pale yellow in older stages because of the less dense squamulae; similar squamulae are present on the stipe surface. Composition based on photos by Terry Henkel and Todd Elliott c original watercolor of the holotype by Mme. Goossens-Fontana from Heinemann (1959), reproduced with the permission of Botanic Garden Meise, Belgium.
Figure 7 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 7 Cantharellustomentosoides (holotypus, Buyck 16.007). a Field habit b detail of the pileus surface c Longitudinal section showing the fistulose stipe. Photos: B. Buyck.
Figure 6 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 6 Cantharellusluteopunctatus. Microscopic features: a basidiospores b basidia and basidiola c detail of part of a squamula showing the terminal, thin- to slightly thick-walled hyphal extremities overlying the pileipellis. Scale bar: 10 µm but only 5 µm for basidiospores. Drawings: B. Buyck.
Figure 3 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 3 Cantharellusdensifolius (epitype, BB 16.021). Microscopic features: a basidiospores b basidia and basidiola c distinctly thick-walled and typically sinuous-undulate hyphal extremities of the pileipellis d detail of an encrusted hypha from the pileus context. Scale bar: 10 µm but only 5 µm for basidiospores. Drawings B. Buyck.
Figure 1 from: Buyck B, Henkel TW, Hofstetter V (2019) Epitypification of the Central African Cantharellus densifolius and C. luteopunctatus allows for the recognition of two additional species. MycoKeys 49: 49-72. https://doi.org/10.3897/mycokeys.49.32034
Figure 1 Most likely tree obtained by analysis of the 91 tef-1 sequence dataset. Species names are preceded by their extraction number (see Buyck et al. 2014 for corresponding vouchers) and followed by the corresponding GenBank deposit number. Branches that received significant ML bootstrap support are in bold with ML-bs associated values indicated above the branches. Newly produced sequences are in blue and discussed species are in bold.
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.