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108 results for “Hygrophoraceae”
FIGURE 3. Hygrocybe pellucida. A–F. Basidiocarps. G. Macrospores. H. Microspores. I. Microbasidium. J. Macrobasidium. K. Pseudocystidia. L. Pileipellis. M in Hygrocybe pellucida-a new species of Hygrophoraceae from Kerala State, India
FIGURE 3. Hygrocybe pellucida. A–F. Basidiocarps. G. Macrospores. H. Microspores. I. Microbasidium. J. Macrobasidium. K. Pseudocystidia. L. Pileipellis. M. Stipitipellis. Scale bars: A–F = 10 mm; G–K = 10 µm; L = 25 µm; M = 100 µm. Photos by: K. P. Deepna Latha & P. Haridev.
FIGURE 4. Hygrocybe pellucida. A. Macrospores. B. Microspores. C. Macrobasidia. D. Microbasidia. E. Pseudocystidia. F. Stipitipellis. G in Hygrocybe pellucida-a new species of Hygrophoraceae from Kerala State, India
FIGURE 4. Hygrocybe pellucida. A. Macrospores. B. Microspores. C. Macrobasidia. D. Microbasidia. E. Pseudocystidia. F. Stipitipellis. G. Pileipellis. Scale bars: A–E = 10 mm; G = 20 µm; F = 50 µm. Drawings by: P. Haridev.
FIGURE 1 in Hygrocybe pellucida-a new species of Hygrophoraceae from Kerala State, India
FIGURE 1. The phylogram of H. pellucida inferred from the ML analysis based on the nrLSU sequence data matrix. Two subgenera of the genus Hygrocybe are indicated. Values at nodes indicate bootstrap support. BS values ≥50 % are shown. The scale bar denotes the number of substitutions per site. The details of the new species are highlighted in red.
FIGURE 4 in Hygrocybe rubroalba (Hygrophoraceae, Agaricales), a new species of sect. Firmae from Brazil
FIGURE 4. Hygrocybe rubroalba. Microscopic features (from MCVE 28634, holotype). a. Macro and microbasidia. b. Immature macrobasidia. c. Immature microbasidia. d. Macro- and microspores. e. Pileipellis. f. Hyphae of the hymenophoral trama. Scale bars: a–d = 10 μm; e–f = 20 μm. Drawings by P. Picciola.
FIGURE 3. Hygrocybe rubroalba. Basidiomata. a, c in Hygrocybe rubroalba (Hygrophoraceae, Agaricales), a new species of sect. Firmae from Brazil
FIGURE 3. Hygrocybe rubroalba. Basidiomata. a, c Basidiomata in moist condition (MCVE 28634, holotype). b, d Basidiomata in dry conditions (TO AV31122013f). Scale bars: 20 mm. Photos by P. Picciola.
FIGURE 2 in Hygrocybe rubroalba (Hygrophoraceae, Agaricales), a new species of sect. Firmae from Brazil
FIGURE 2. Bayesian phylogenetic analysis based on the ITS sequences of Hygrocybe subgen. Pseudohygrocybe, with Hygrocybe glutinipes and H. glutinipes var. rubra as outgroup taxa. BPP values (in bold) ≥ 0.7 and MLB values ≥ 50 % are shown on the branches. Thickened branches indicate BPP ≥ 0.95 and MLB support ≥ 70%. For each sequence, taxon name, Genbank number and geographic origin are given. The newly sequenced collections are in bold.
FIGURE 1 in Hygrocybe rubroalba (Hygrophoraceae, Agaricales), a new species of sect. Firmae from Brazil
FIGURE 1. Bayesian phylogenetic analysis based on the LSU sequences of Hygrocybe, with Hygroaster albellus and Hygroaster nodulisporus as outgroup taxa. BPP values (in bold) ≥ 0.7 and MLB values ≥ 50 % are shown on the branches. Thickened branches indicate BPP ≥ 0.95 and MLB support ≥ 70%. For each sequence, taxon name, Genbank number and geographic origin are given. The newly sequenced collections are in bold.
FIGURE 2 in Neohygrocybe griseonigra (Hygrophoraceae, Agaricales), a new species from subtropical China
FIGURE 2. Basidiomata of Neohygrocybe griseonigra. a: Habitat and appearance overview. b: Pileus margin. c: Detailed pileus surface. d: Lamellae. Bars = 2 cm. Photos by: Ming Zhang.
FIGURE 3 in Neohygrocybe griseonigra (Hygrophoraceae, Agaricales), a new species from subtropical China
FIGURE 3. Line drawings of Neohygrocyeb griseonigra. a: Basidiomata. b: Basidiospores. c: Basidia. d: Pseudocystidia. Drawings by a) By Ya-Heng Shen, b–d) Chao-Qun Wang.
FIGURE 1 in Neohygrocybe griseonigra (Hygrophoraceae, Agaricales), a new species from subtropical China
FIGURE 1. Phylogenetic reconstruction of the genus Neohygrocybe based on ITS sequences. Humidicutis marginata was selected as outgroup. The GenBank accession numbers of downloaded sequences and voucher number of the new species were added to the species names (in bold), and then the collection locations were listed after that. Species names in quotation marks were questionable. Maximum Likelihood bootstrap values (BS≥50%) were indicated at the bases of the branches.
FIGURE 1 in New insights on Hygrophorus penarioides and H. penarius (Agaricales, Hygrophoraceae) from Hungary
FIGURE 1. Illustrative photographs of a dried specimen prepared with the Herpell method (BP44385) (a) and a fresh collection (DB5585) (b) of H. penarioides. Photos. (a) E. Zajta, (b) B. Dima.
FIGURE 3 in New insights on Hygrophorus penarioides and H. penarius (Agaricales, Hygrophoraceae) from Hungary
FIGURE 3. ITS alignment of Hygrophorus penarioides sequences showing the two sites of the intraspecific heterogeneity at the beginning of the ITS2 region marked with black rectangle (from positions 306–321 and 322–339). Specimen numbers highlighted in black represents newly generated sequences for this study.
FIGURE 2 in New insights on Hygrophorus penarioides and H. penarius (Agaricales, Hygrophoraceae) from Hungary
FIGURE 2. Bayesian phylogenetic tree based on ITS sequence analysis of Hygrophorus penarius s. l. and similar species. New sequences generated in this study are indicated by voucher numbers and original morpho-identifications marked in bold. GenBank/UNITE accession numbers are only included for the already published sequences. Bayesian posterior probabilities (≥ 0.90) are shown above branches and before slashes, RAxML bootstrap support values (≥ 70) are shown below branches and after slashes. The scale bar indicates 0.2 expected changes per site per branch.
FIGURE 4 in New insights on Hygrophorus penarioides and H. penarius (Agaricales, Hygrophoraceae) from Hungary
FIGURE 4. (a) Principle component analysis of H. penarius and H. penarioides specimens based on spore width, spore length, cap diameter, stem length and stem width. (b) Hierarchical clustering of Hygrophorus penarius and H. penarioides specimens based on spore width, spore length, cap diameter, stem length and stem width. Variables were centered by the mean and scaled by the standard deviation. Euclidean distances were calculated and ward. D2 clustering method was applied.
FIGURE 2 in Gliophorus flavoviridis, a new species in the family Hygrophoraceae from India
FIGURE 2. Gliophorus flavoviridis (US 1367, holotype). a Fresh basidiomata in the field. b Basidium with basal clamp connection. c Radial section through pileipellis showing the glutinous layer. d Terminal elements of pileipellis. e Radial section through stipitipellis showing the glutinous layer. f Terminal elements of stipitipellis. g Basidiospores. Scale bars: a = 20 mm. b & g = 10 μm. c & e = 100 μm d & f = 25 μm. Photos by: Upendra Singh.
FIGURE 3 in Gliophorus flavoviridis, a new species in the family Hygrophoraceae from India
FIGURE 3. Gliophorus flavoviridis (drawings from US 1367, holotype). a Fresh basidiomata. b Basidia. c Basidiospores. d Terminal elements of pileipellis. Scale bars: a = 10 mm. b–c = 10 μm. d = 25 μm. Drawings by: Upendra Singh.
FIGURE 1 in Gliophorus flavoviridis, a new species in the family Hygrophoraceae from India
FIGURE 1. Phylogeny of G. flavoviridis (in bold and red font) inferred from Maximum Likelihood analysis of Gliophorus ITS sequences.
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.
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International Brain Laboratory public data
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OpenNeuro
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