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34 results for “Gomphales”
FIGURE 6 in Two new species of Phaeoclavulina (Gomphaceae, Gomphales) from Hunan Province, China
FIGURE 6. Phylogenetic tree for Phaeoclavulina generated from nrLSU sequences using Bayesian inference (BI). The BI posterior probabilities; 0.90 and ML bootstrap values; 50% are provided at relevant nodes (BI/ML). The new species are highlighted in black bold text and marked with a black star.
FIGURE 4 in Two new species of Phaeoclavulina (Gomphaceae, Gomphales) from Hunan Province, China
FIGURE 4. Basidiospores of a Phaeoclavulina aeruginea (MHHNU8909) and b Phaeoclavulina cinnamomea (MHHNU10376).
FIGURE 2 in Two new species of Phaeoclavulina (Gomphaceae, Gomphales) from Hunan Province, China
FIGURE 2. Microscopic features of Phaeoclavulina aeruginea (MHHNU8909, holotype). a Basidiospores; b Basidia; c Hyphae from context; d Hyphae from trama. Bars: a, c, d = 10 μm, b = 20 μm.
FIGURE 1 in Two new species of Phaeoclavulina (Gomphaceae, Gomphales) from Hunan Province, China
FIGURE 1. Basidiomata of Phaeoclavulina aeruginea (a. MHHNU8909), Bars a = 2 cm; Branch tips of Phaeoclavulina aeruginea (b. MHHNU8909), Bars b = 0.25 cm. Basidiomata of Phaeoclavulina cinnamomea (c. MHHNU10376), Bars c = 2 cm; Branch tips of Phaeoclavulina cinnamomea (d. MHHNU10376), Bars d = 0.25 cm.
FIGURE 5 in Two new species of Phaeoclavulina (Gomphaceae, Gomphales) from Hunan Province, China
FIGURE 5. Phylogenetic tree for Phaeoclavulina generated from ITS sequences using Bayesian inference (BI). The BI posterior probabilities; 0.90 and ML bootstrap values;50% are provided at relevant nodes (BI/ML). The new species are highlighted in black bold text and marked with a black star.
FIGURE 3 in Two new species of Phaeoclavulina (Gomphaceae, Gomphales) from Hunan Province, China
FIGURE 3. Microscopic features of Phaeoclavulina cinnamomea (MHHNU10376, holotype). a Basidiospores; b Basidia; c Hyphae from context; d Hyphae from trama. Bars: a, c, d = 10 μm, b = 20 μm.
FIGURE 2. a in Track analysis of the order Gomphales (Fungi: Basidiomycota) in Mexico
FIGURE 2. a, generalised track Continental Mexico, Central-western; b, generalised track Southeastern tropical, Central-eastern; c, generalised track Yucatán-Central Mexico, Central Mexico; d, nodes.
FIGURE 1. a in Track analysis of the order Gomphales (Fungi: Basidiomycota) in Mexico
FIGURE 1. a. Localities of Clavariadelphus, b. Localities of Phaeoclavulina, c. Localities of Ramaria, Localities of Turbinellus, e. Localities of Beenakia, Gautieria, Gloeocantharellus, Gomphus, Kavinia and Lentaria. Abbreviations: SMOr: Sierra Madre Oriental; SMOcc: Sierra Madre Occidental; FVTM: Faja Volcánica Trasmexicana; SMSur; Sierra Madre del Sur; SNOax: Sierra Norte de Oaxaca; SMCh: Sierra Madre de Chiapas.
FIGURE 3 in Phaeoclavulina pseudozippelii sp. nov. (Gomphales, Basidiomycota) from Northern Thailand
FIGURE 3 Phaeoclavulina pseudozippelii (BBH 43575). A basidiomata, B basidiospores: B1 immature spores; B2 mature spores, C basidia. (scale bars A = 20 mm, B–C = 10 μm).
FIGURE 1 in Phaeoclavulina pseudozippelii sp. nov. (Gomphales, Basidiomycota) from Northern Thailand
FIGURE 1 Phylogenetic tree derived from maximum likelihood analysis of 39 sequences of LSU rDNA. Gomphus clavatus was used as the outgroup. The numbers above branches represent maximum likelihood bootstrap percentages (left) and Bayesian posterior probabilities (right). Only bootstrap values ≥ 50 % are shown, and scale bar represents ten substitutions per nucleotide position. The sequences obtained from this study are in bold.
FIGURE 2 in Phaeoclavulina pseudozippelii sp. nov. (Gomphales, Basidiomycota) from Northern Thailand
FIGURE 2 Phylogenetic tree derived from maximum likelihood analysis of 27 sequences of ITS rDNA. Gomphus clavatus was used as the outgroup. The numbers above branches represent maximum likelihood bootstrap percentages (left) and Bayesian posterior probabilities (right). Only bootstrap values ≥ 50 % are shown, and scale bar represents ten substitutions per nucleotide position. The sequences obtained from this study are in bold.
FIGURE 2. Gloeocantharellus thailandensis CMUB40028 in Gloeocantharellus thailandensis (Gomphaceae, Gomphales), a new macrofungus from southern Thailand
FIGURE 2. Gloeocantharellus thailandensis CMUB40028 (holotype). A. Basidiomata; B. Basidiospores; C. Basidia; D. Gloeocystidia, and E. Pileipellis. Scale bars: A = 20 mm; B = 5 μm; C–E = 10 μm. (Drawing by J. Kumla).
FIGURE 1 in Gloeocantharellus thailandensis (Gomphaceae, Gomphales), a new macrofungus from southern Thailand
FIGURE 1. Phylogram derived from maximum likelihood analysis of 28 specimens of the combined ITS, nrLSU, and atp6 genes. Gomphus ludovicianus TENN 69161, Go. clavatus OSC97616, and Turbinellus longistipes HKAS 113226 were used as the outgroups. The numbers above branches represent maximum likelihood bootstrap percentages (left) and Bayesian posterior probabilities (right). Bootstrap values ≥ 70% and Bayesian posterior probabilities ≥ 0.90 are shown. The scale bar represents the expected number of nucleotide substitutions per site. Sequences of fungal species obtained in this study are in red. Type specimens are in bold.
FIGURE 1 in Three new combinations in Gloeocantharellus (Gomphales, Agaricomycetes) from Mexico based on molecular evidence
FIGURE 1. ML phylogeny of Gomphales based on the concatenated sequences atp6, SSU and LSU. Numbers over the branches represent Bootstrap support (>50). In bold type, the species formerly described as Gomphus and here proposed as new combinations of Gloeocantharellus.
FIGURE 2 in Three new combinations in Gloeocantharellus (Gomphales, Agaricomycetes) from Mexico based on molecular evidence
FIGURE 2. Phylogenetic informativeness profiles of the sequences atp6 (green), SSU (blue) and LSU (red) showing overall poor performance of the last two markers and decay of informativeness for atp6 over the genus level. In bold type, the species formerly described as Gomphus and here proposed as new combinations of Gloeocantharellus.
FIGURE 3 in Ramaricium yunnanense sp. nov. (Gomphaceae, Gomphales) from China
FIGURE 3. Microscopic structures of Ramaricium yunnanense (drawn from the holotype). A. Basidiospores; B. Basidia and basidioles; C. Encrusted generative hyphae; D. A section of hymenium. Bars: A = 5 µm; B–D = 10 µm. Drawings by: Jin-Ying Gu
FIGURE 2 in Ramaricium yunnanense sp. nov. (Gomphaceae, Gomphales) from China
FIGURE 2. Basidiomata of Ramaricium yunnanense. A. Habit; B. A close up view. Bars: A = 1 cm, B = 1 mm (holotype). Photos by: Jin-Ying Gu
FIGURE 2 in Gautieria mianjin (Gomphales, Basidiomycota), a new species of false truffle from China
FIGURE 2. Gautieria mianjin (holotype and isotype). a Fresh basidiomata, yellow arrow shows the base, photo by Xiao Liu; b Basidiospores in different angles under scanning electron microscope; c Cells of hymenium. Bars: a=1 cm, b–c=10 μm
FIGURE 1 in Gautieria mianjin (Gomphales, Basidiomycota), a new species of false truffle from China
FIGURE 1. Phylogenetic tree of Gautieria based on ITS sequences. Ramaria botrytis (AMB18201) was selected as outgroup. Nodes were annotated if supported by ≥50% MLB (left) or ≥0.90 BPP (right). The new species was highlighted in bold. The branch shortened to fit the page was indicated by two diagonal lines with the number of times it was shortened. The clades concerned were highlighted with background color and labeled with numbers.
Figure 6 from: Huang H-Y, Zhao J, Zhang P, Ge Z-W, Li X, Tang L-P (2020) The genus Clavariadelphus (Clavariadelphaceae, Gomphales) in China. MycoKeys 70: 89-121. https://doi.org/10.3897/mycokeys.70.54149
Figure 6 Microscopic features of Clavariadelphus alpinus (HKAS 57396, holotype). a Basidia bLeptocystidia.
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