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44 results for “edible mushroom”
FIGURE 16 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 16. Volvariella volvacea (Herbarium code: USJ-GMBU-005). a. Basidiospore. b. Basidia. c. Pleurocystidia. d. Cheilocystidia. e. Pileipellis terminal elements. Scale bars: a, b = 5 µm; c,d,e = 10 µm. Illustration by Aseni Ediriweera.
FIGURE 17. A in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 17. A phylogenetic tree for ITS sequences was constructed using maximum likelihood (ML) analysis for the genus Volvariella. The newly generated strain is in red. ML bootstrap values are given at the nodes. Bootstrap support values equal to or higher than 70% are provided. The tree is rooted with Cantharocybe virosa and Cuphophyllus yacurensis.
FIGURE 3 in Agaricus cervinoculus sp. nov. (Agaricaceae), a new wild edible mushroom from Mexico
FIGURE 3. Microscopic characteristics of Agaricus cervinoculus. A. Spores (PV83). B. Basidia (PV83). C–E. Cheilocystidia (C-D: MEXUHO30387, E: PV98). F. Hyphae of the lower surface of the annulus (PV72). G–H. Pileipellis hyphae and a terminal element with an asterisk (G: MEXU-HO30387, H: PV105). Scale bars = 5 µm. Photos by E. N. Palestina-Villa.
FIGURE 2 in Agaricus cervinoculus sp. nov. (Agaricaceae), a new wild edible mushroom from Mexico
FIGURE 2. Macroscopic characteristics of Agaricus cervinoculus. A–C. Basidiomata (A: MEXU-HO30375 holotype, B–C: MEXUHO30387). D–F. Annulus detail (D: MEXU-HO30375 holotype, E: PV105, F: PV70A). G. Color change in context (PV70A). H. KOH reaction (PV62). Photos by E.N. Palestina-Villa.
FIGURE 4 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 4. Lactarius vividus (all from holotype except for C from KUN-HKAS 73591). A: basidiospores, B. hymenium, C: pleuromacrocystidia, D: pleuropseudocystidia; E. lamellar edge, F. pileipellis. (A: scale bar = 5 μm, B–F: scale bars = 20 μm).
FIGURE 3 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 3. Basidiocarps of Lactarius vividus, L. akahatsu and L. deliciosus, showing the subdistant to distant lamellae in L. vividus in contrast with the crowded lamellae in the other two species. A: L. vividus (KUN-HKAS 73591, holotype); B: L. vividus, in dry habitat (KUN-HKAS 61742); C: L. vividus, old basidiocarps (KUN-HKAS 61725); D: L. vividus, undiscoloring basidiocarps (KUN-HKAS 61965); E: L. vividus, undiscoloring basidiocarp (KUN-HKAS 61325); F: L. vividus, with rich-colored subdistant lamellae and evenly colored stipe (KUN-HKAS 73576); G: L. akahatsu, with crowded lamellae (KUN-HKAS 61764); H: L. deliciosus, with crowded lamellae (KUN-HKAS 61910).
FIGURE 2 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 2. Maximum Likelihood (ML) phylograms of Lactarius vividus and its relatives based on the ITS region and the gpd gene, rooted with L. rufus. Bootstrap proportions higher than 70% in the ML analysis and Posterior probabilities higher than 95% in the Bayesian Inference analysis are indicated above and below the branches respectively. Initials of the sample numbers correspond to the collectors or herbaria in Table 1. Samples of L. vividus are in bold.
FIGURE 4 in Hygrophorus parvirussula sp. nov., a new edible mushroom from southwestern China
FIGURE 4. Basidiospores of Hygrophorus parvirussula. (MHKMU N.K. Zeng 2878). a. Basidiospores under light microscope. b, c. Basidiospores under SEM. Bars: a = 10 μm, b, c =1 μm. Photos by H.Y. Huang.
FIGURE 3 in Hygrophorus parvirussula sp. nov., a new edible mushroom from southwestern China
FIGURE 3. Microscopic features of Hygrophorus parvirussula. (MHKMU N.K. Zeng 2878). a. Pileipellis. b. Basidia, pleurocystidia and lamellar trama. c. Stipitipellis. Bars = 10 μm. Drawings by H.Y. Huang.
FIGURE 1 in Hygrophorus parvirussula sp. nov., a new edible mushroom from southwestern China
FIGURE 1. Phylogram of Hygrophorus parvirussula inferred from ITS sequences using Bayesian inference and RAxML. RAxML Likelihood bootstraps (BP ≥ 50%) and Bayesian Posterior Probabilities (PP ≥ 0.90) are shown above the branches.
FIGURE 2 in Hygrophorus parvirussula sp. nov., a new edible mushroom from southwestern China
FIGURE 2. Basidiomata of Hygrophorus parvirussula. a, d from MHKMU N.K. Zeng 2878; b, e from MHKMU L.P. Tang 1691; c, f from MHKMU S.D. Yang 434 (a, d photos by N.K. Zeng; b, e photos by L.P. Tang; c, f photos by S.D. Yang). Bars =1 cm.
FIGURE 4 in Hygrophorus deliciosus (Hygrophoraceae, Agaricales), a popular edible mushroom of the H. russula-complex from southwestern China
FIGURE 4. Fresh (A–D) and dry (E–F) basidiomata of waxcaps from China. A–B. Hygrophorus parvirussula (GDGM45208), C. Hygrophorus russula (GDGM25922), D. Hygrophorus russula (GDGM41951), E. Hygrophorus deliciosus (GDGM79208, Holotype), F. Hygrophorus deliciosus (GDGM79236), G. Hygrophorus parvirussula (HMAS280756), H. Hygrophorus russula (GDGM41951). Photos: A–B by Ming Zhang, C by Tai-Hui Li, D–F by Chao-Qun Wang.
FIGURE 1 in Hygrophorus deliciosus (Hygrophoraceae, Agaricales), a popular edible mushroom of the H. russula-complex from southwestern China
FIGURE 1. Phylogenetic relationship of the Hygrophorus russula-complex inferred from ITS sequences using ML method. Newly generated sequences in this study are in bold. Bootstrap values more than 50% are indicated around the branch. The tree scale indicates the number of substitutions per site.
FIGURE 3 in Hygrophorus deliciosus (Hygrophoraceae, Agaricales), a popular edible mushroom of the H. russula-complex from southwestern China
FIGURE 3. Line drawings of microscopic features of Hygrophorus deliciosus. A. Basidiospores (GDGM79208, Holotype), B. Basidiospores (GDGM73208), C. Basidiospores (GDGM79208, Holotype), D. Basidia (GDGM73208), E. Terminal cells of pileipellis (GDGM79208, Holotype), F. Lamellar trama hyphae (GDGM79208, Holotype). Drawings by: Chao-Qun Wang.
FIGURE 2 in Hygrophorus deliciosus (Hygrophoraceae, Agaricales), a popular edible mushroom of the H. russula-complex from southwestern China
FIGURE 2. Basidiomata of Hygrophorus deliciosus. A: LJW1779, B: XHW6125, C–D: GDGM43345, E: GDGM79208 (Holotype), F: GDGM79227. Photos: A by Jian-Wei Liu, B by Xiang-Hua Wang, C–F by Chao-Qun Wang.
Effect of Daily Consumption of a Novel Biscuit Enriched With Edible Mushrooms, on Intestinal Health-related Parameters
ClinicalTrials.gov study NCT04759625. IPD Sharing: NO. Countries: 1. Publications: 3.
FIGURE 1 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 1. Localities of specimens of Lactarius vividus collected in China.
FIGURE 15 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 15. Volvariella volvacea (Herbarium code: USJ-GMBU-005). a,b. Mature basidiomata in situ. Scale bars = 1.5 cm. Photography by Naduni Dasanthi.
FIGURE 10 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 10. Termitomyces heimii (Herbarium codes: USJ-GMBU-003, USJ-GMBU-004, USJ-GMBU-006). a,b. Mature basidiomata in situ. Scale bars = 2 cm. Photography by Naduni Dasanthi.
FIGURE 8 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 8. Schizophyllum radiatum (Herbarium code: USJ-H-016). a. Basidiospore. b. Basidia. c. Smooth abhymenial hairs. Scale bars: a, b = 5 µm; c = 10 µm. Illustration by Aseni Ediriweera.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.