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36 results for “Cantharellales”
FIG. 6 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 6. — Cantharellus violaceoflavescens: A, E, fresh, young fruiting bodies (holotype; BR5020167050163); B, paratype (A. De Kesel 4971); C-D, strongly yellowing of all tissues illustrated in older fruiting bodies [C, A. De Kesel 4829; D, A. De Kesel 4963]. Photos: A. De Kesel, L. Parra Sánchez.
FIG. 5 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 5. — Cantharellus xanthocyaneus Ndolo Ebika & Buyck, sp. nov. (holotype;; PC0125128): A, spores; B, basidia and basidiola; C, hyphal endings of the pileipellis. Scale bar: 10 µm, but only 5 µm for spores. Drawings: B. Buyck.
FIG. 3 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 3. — Cantharellus longisporus Heinem. (HICPC294): A, spores; B, basidia and basidiola; C, hyphal endings of the pileipellis. Scale bar: 10 µm, but only 5 µm for spores. Drawings: B. Buyck.
FIG. 4 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 4. — Cantharellus xanthocyaneus Ndolo Ebika & Buyck, sp. nov. (holotype; PC0125128): A, pileus; B, D, cylindrical to fluted and bumpy stipe with hymenophore; C, detail of hymenophore. Freshly collected fruiting bodies. Photos: S. T. Ndolo Ebika.
FIG. 1 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 1. — Most likely phylogram obtained by analyses of the 4-locus/103 taxa dataset (-ln = 23519.35654). Branches significantly supported are in bold with BS values indicated along the branches. New taxa are in bold blue. Names of clades refer to subgenera recognized in Buyck et al. (2014). — (note the orthographic correction for subgenera Rubrini and Cinnabarini). Blue bars indicate the distribution of taxa with violaceous tinges in the phylogeny. Scale bar: 0.01 substitution per site.
FIG. 7 in Tropical African Cantharellus Adans.: Fr. (Hydnaceae, Cantharellales) with lilac-purplish tinges revisited
FIG. 7. — Cantharellus violaceoflavescens (holotype; BR5020167050163): A, spores; B, basidia and basidiola; C, hyphal endings of the pileipellis. Scale bar: 10 µm, but only 5 µm for spores. Drawings: B. Buyck.
FIGURE 2. Sistotrema bulbilliferum. A in A new bulbil-forming species of Sistotrema (Cantharellales, Hydnaceae) from Brazil
FIGURE 2. Sistotrema bulbilliferum. A. Bulbils in natural substrate. B. Colonies on CMCA (reverse). C–F. Bulbils. G. Hyphae with clamp connections. H. Bulbils developing in natural substrate attached to the hyphae. Scale bars: A = 0.5 mm, C–F, H = 50 μm, G = 20 μm.
FIGURE 1 in Cantharellus sikkimensis sp.nov. (Cantharellales, Agaricomycetes) from the Indian Himalayas
FIGURE 1. Maximum likelihood phylogeny based on LSU sequences. The rectangle delimits subgenus Parvocantharellus as defined in Buyck et al. (2014). Names of species in bold were previously described from the Indian Himalayas. Newly produced sequences are in blue. Values above branches give bootstrap values (> 70 %) and branches that received significant support are in bold.
FIGURE 3 in Cantharellus sikkimensis sp.nov. (Cantharellales, Agaricomycetes) from the Indian Himalayas
FIGURE 3. Cantharellus sikkimensis sp. nov. (from Holotype KD 13-024): a) Fresh and/or dissected basidiomata. b) Basidiospores. c & d) Ascending to subparallel terminal and subterminal encrusted cells of the hyphae in pileipellis. e) Basidia and basidioles. Scale bars: a = 10 mm; b–e = 10 μm.
FIGURE 2 in Cantharellus sikkimensis sp.nov. (Cantharellales, Agaricomycetes) from the Indian Himalayas
FIGURE 2. Cantharellus sikkimensis sp. nov. (from Holotype KD 13-024): a) Fresh basidiomata in the field. b) Hymenophore showing strongly interveined gill-folds. c) Immature to mature basidiomata on the workout table. d) Hymenium layer towards the edge of gill-fold. e & f) Radial section through pileipellis showing ascending to subparallel hyphae. g) Basidiospores. Scale bars: d & f = 50 μm; e = 100 μm; g = 10 μm.
FIGURE 4 in Sistotrema macabouense (Cantharellales, Hydnaceae), a new corticioid fungus from Martinique
FIGURE 4. Sistotrema cf. farinaceum (hb. Gruhn GUY13-112). Basidia, hyphae and spores. Scale bars: spores 5 μm, basidia 10 μm.
FIGURE 3 in Sistotrema macabouense (Cantharellales, Hydnaceae), a new corticioid fungus from Martinique
FIGURE 3. Sistotrema otagense (holotype). Basidia, hyphae and spores. Scale bars: spores 5 μm, basidia and hyphae 10 μm.
FIGURE 1 in Sistotrema macabouense (Cantharellales, Hydnaceae), a new corticioid fungus from Martinique
FIGURE 1. Sistotrema macabouense (holotype). Basidia, hyphae and spores. Scale bars: spores 5 μm, basidia 10 μm.
FIGURE 2. The Bayesian 50 in Tulasnella tubericola (Tulasnellaceae, Cantharellales, Basidiomycota): a new Rhizoctonia-like fungus associated with mycorrhizal evergreen oak plants artificially inoculated with black truffle (Tuber melanosporum) in Spain
FIGURE 2. The Bayesian 50% majority-rule consensus tree inferred from sequences of the ITS region of rDNA. Numbers above and below nodes represent bayesian posterior probabilities. Phylogram was rooted with an ITS sequence of Botryobasidium botryosum.
FIGURE 1. Tulasnella tubericola CECT 20958 in Tulasnella tubericola (Tulasnellaceae, Cantharellales, Basidiomycota): a new Rhizoctonia-like fungus associated with mycorrhizal evergreen oak plants artificially inoculated with black truffle (Tuber melanosporum) in Spain
FIGURE 1. Tulasnella tubericola CECT 20958 (holotype). a-c. morphological aspect in PDA culture (front view) at several temperatures; d. runner hyphae; e. monilioid-like hyphal elements; f. chains of monilioid cells; g. bi- and tri-nucleate hyphae
FIGURE 2 in First report of Pterygellus from Rajmahal hills of Jharkhand (India) and its relation to Craterellus (Hydnaceae, Cantharellales)
FIGURE 2. Craterellus shoreae sp. nov. (CNH69910, holotype). A. Habitat: Shorea dominated forest; B & C. Fresh and dissected basidiomata showing hygrophanous nature; D. Transverse-section through hymenium; E. Basidium and basidiole; F. Terminal and subterminal cells of hyphae in pileipellis; G. Basidiospores. Scale bars: d–g = 10 μm.
FIGURE 3 in First report of Pterygellus from Rajmahal hills of Jharkhand (India) and its relation to Craterellus (Hydnaceae, Cantharellales)
FIGURE 3. Craterellus shoreae sp. nov. (drawings from CNH69910, holotype). A. Basidiospores; B. Transverse-section through hymenium; C. Cystidioid elements in hymenium; D. Terminal and subterminal cells of hyphae in pileipellis. Scale bars: A–D = 10 μm.
FIGURE 1 in First report of Pterygellus from Rajmahal hills of Jharkhand (India) and its relation to Craterellus (Hydnaceae, Cantharellales)
FIGURE 1. Phylogeny of Craterellus shoreae sp. nov. (in bold, blue font) inferred from Maximum Likelihood analysis of nrLSU sequences. Colors refer to geographic origin of included taxa: green (North America), brown (Europe), blue (India) and red (South America). The appearance of clamp connections in the ingroup is indicated with an arrow. Numbers near branches are bootstrap values.
FIGURE 3 in A new yellow species of Craterellus (Cantharellales, Hydnaceae) from China
FIGURE 3. Phylogenetic tree of Craterellus luteus and related species based on nrLSU sequences generated by maximum likelihood method in MEGA 6.0. Cantharellus cibarius and Cantharellus subalbidus were used as outgroups. Bootstrap values (>50%) are shown above or beneath individual branches.
FIGURE 4 in A new yellow species of Craterellus (Cantharellales, Hydnaceae) from China
FIGURE 4. Phylogenetic tree of Craterellus luteus and related species based on ITS sequences generated by maximum likelihood method in MEGA 6.0. Cantharellus cibarius and Cantharellus guyanensis were used as outgroups. Bootstrap values (>50%) are shown above or beneath individual branches.
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