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266 results for “Polyporales”
FIGURE 6 in Two new wood-inhabiting fungal species (Polyporales, Basidiomycota) from Yunnan Province, China
FIGURE 6. Microscopic structures of Steccherinum wumengshanense (holotype, C.L. Zhao 23586): basidiospores (A), basidia and basidioles (B), cystidia (C), a section of the hymenium (D). Bars: A= 5 µm, (B–D) = 10 µm.
FIGURE 7 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 7. Amauroderma laccatostipitatum (URM 83238). A. Basidioma. B. Hymenial surface. C. Basidiospores in KOH. D. Basidiospores in SEM. Scale: A–B = 1 cm; C = 10 μm; D = 2 μm. Photos: A.C. Gomes-Silva.
FIGURE 4. Amauroderma brasiliense. A in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 4. Amauroderma brasiliense. A. Basidiomata (INPA 101986). B. Fresh basidioma (URM 83578). C. Dried basidioma (URM 83578). D. Context and tubes (URM 83578). E. Pores (URM 83578). F. Basidiospores in Melzer's reagent (INPA 101986). G. Basidiospores in SEM (INPA 101986). Scale: A–C = 1 cm; D = 2 mm; E, G = 2.5 μm; F = 5 μm. Photos: A.C. Gomes-Silva.
FIGURE 1 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 1. Phylogenetic reconstruction of the Amauroderma based on alignment of 567 nucleotides of the ITS regions. Bootstrap values (%) were generated from maximum parsimony (MP) and maximum likelihood (ML) analysis and posterior probabilities (PP) from Bayesian algorithm (BA), respectively. Clade stabilities were calculated from MP (≥50 %), ML (≥50 %) and BA (≥0.70). For maximum parsimony: Consistency Index (CI) = 0.4355 and Retention Index (RI) = 0.7658. Species in bold type were sequenced in this study. Figure: N.C. de Lima-Júnior.
FIGURE 3 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 3. Amauroderma albostipitatum (URM 83242). A. Abhymenial surface. B. Hymenial surface. C. Basidiospores in KOH. D. Basidiospores in Melzer's reagent. Scale: A–B = 1 cm; C, D = 10 μm. Photos: A.C. Gomes-Silva.
FIGURE 6 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 6. Amauroderma floriformum (URM 83250) A. Basidioma. B. Basidiospores in Melzer's reagent. C, D. Basidiospores in KOH. Scale: A = 1 cm; B–D = 10 μm. Photos: T.B. Gibertoni.
FIGURE 10. Amauroderma schomburgkii. A in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 10. Amauroderma schomburgkii. A (URM 83228), D (URM 84228). Basidiomata. B (URM 83228), C (URM 83228), E (URM 84228). Hymenial surface. Scale: A = 0.5 cm; B = 1 mm; C, E = 0.1 mm; D = 1 cm. Photos: R.F.R. Melo.
FIGURE 5. Amauroderma corneri. A in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 5. Amauroderma corneri. A. Abhymenial surface (SP 212007). B. Hymenial surface (SP 212007). C. Context and tubes (SP 212007). D. Pores (SP 212007). E. Basidiospores in SEM (SP 213543). Scale: A, B = 2.5 cm; C = 3 mm; D = 2.5 μm; E = 7.5 μm. Photos: A.C. Gomes-Silva.
FIGURE 9. Amauroderma partitum. A in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 9. Amauroderma partitum. A (URM 83233), C (URM 82882), D (URM 82884). Basidiomata. B (URM 83233), E (URM 82882). Hymenial surface. F. Pores with hyphal pegs (URM 82884). Scale: A = 1 cm; B, E, F = 1 mm; C = 0.5 cm; D = 0.25 cm. Photos: R.F.R. Melo.
FIGURE 2 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 2. Phylogenetic reconstruction of the Amauroderma based on alignment of 819 nucleotides of the LSU region. Bootstrap values (%) were generated from maximum parsimony (MP) and maximum likelihood (ML) analysis and posterior probabilities (PP) from Bayesian algorithm (BA), respectively. Clade stabilities were calculated from MP (≥50 %), ML (≥50 %) and BA (≥0.70). For maximum parsimony: Consistency Index (CI) = 0.7561 and Retention Index (RI) = 0.8601. Species in bold type were sequenced in this study. Figure: N.C. de Lima-Júnior.
FIGURE 12 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 12. Amauroderma subsessile (URM 83239). A. Abhymenial surface. B. Hymenial surface. C. Basidiospores in Melzer's reagent. D. Basidiospores in SEM. Scale: A–B = 1 cm; C–E = 10 μm. Photos: A.C. Gomes-Silva.
FIGURE 8 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 8. Amauroderma ovisporum (URM 83240). A. Basidioma. B. Hymenial surface. C. Basidiospores in KOH. D. Basidiospores in SEM. Scale: A, B = 1 cm; C = 5 μm; D = 2 μm. Photos: A.C. Gomes-Silva.
FIGURE 11 in Delimitation of taxa in Amauroderma (Ganodermataceae, Polyporales) based in morphology and molecular phylogeny of Brazilian specimens
FIGURE 11. Amauroderma sessile (INPA 103576). A. Basidioma. B. Hymenial surface. C. Basidiospores in KOH. Scale: A, C = 1 cm; B = 10 μm. Photos: A.C. Gomes-Silva.
FIGURE 3 in Daedalea americana sp. nov. (Polyporales, Basidiomycota) evidenced by morphological characters and phylogenetic analysis
FIGURE 3. Maximum parsimony strict consensus tree illustrating the phylogeny of Daedalea americana and related species based on combined ITS+nLSU sequence data. Branches are labeled with parsimony bootstrap proportions high than 50%, maximum likelihood bootstrap higher than 70% and Bayesian posterior probabilities more than 0.95.
FIGURE 2 in Daedalea americana sp. nov. (Polyporales, Basidiomycota) evidenced by morphological characters and phylogenetic analysis
FIGURE 2. Microscopic structures of Daedelea americana (JV 0904/20). a Basidiospores. b Basidia and basidioles. c Cystidioles. d Hyphae from trama. e Hyphae from context.
FIGURE 1 in Daedalea americana sp. nov. (Polyporales, Basidiomycota) evidenced by morphological characters and phylogenetic analysis
FIGURE 1. Basidiocarps of Daedelea americana (a JV 0904/19. b JV 0312/25.8-J). Scale bars a–b = 2.5 cm.
FIGURE 1 in Morphological and molecular evidences for a new species of Datroniella (Polyporales, Basidiomycota) from Brazil
FIGURE 1. Phylogenetic reconstruction of Datronia, Datroniella and Neodatronia inferred from a combined dataset of ITS and nLSU. Parsimony bootstrap generated by ML, MP (higher than 50%) and BA posterior probabilities (higher than 0.70) are showed along the branches, respectively.
FIGURE 2 in Morphological and molecular evidences for a new species of Datroniella (Polyporales, Basidiomycota) from Brazil
FIGURE 2. Macro- and micromorphologic aspects of Datroniella minuta Lira & Ryvarden. A. Basidiomata; B. Basidiospores; C. Arboriform skeletal hyphae. Scale: A = 1 cm; B and C = 10 μm.
FIGURE 3 in A new species of Skeletocutis (Polyporales, Basidiomycota) from Yunnan of China
FIGURE 3. Microscopic structures of Skeletocutis yunnanensis (Holotype). a. Basidiospores. b. Basidia, cystidioles and basidioles. c. A section of dissepiment edge. d. Subicular hyphae. Bars: a = 5 μm; b–d = 10 μm
FIGURE 1 in A new species of Skeletocutis (Polyporales, Basidiomycota) from Yunnan of China
FIGURE 1. Maximum Parsimony strict consensus tree illustrating the phylogeny of Skeletocutis yunnanensis and related species in Polyporales based on the combined dataset (ITS and nLSU). Branches are labeled with maximum likelihood bootstrap higher than 70%, parsimony bootstrap proportions higher than 50% and Bayesian posterior probabilities more than 0.95 respectively. Clade names follow Binder et al. (2013).
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International Brain Laboratory public data
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OpenNeuro
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