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266 results for “Polyporales”
Figure 2 from: Thawthong A, Hapuarachchi KK, Wen T-C, Raspé O, Thongklang N, Kang J-C, Hyde KD (2017) Ganoderma sichuanense (Ganodermataceae, Polyporales) new to Thailand. MycoKeys 22: 27-43. https://doi.org/10.3897/mycokeys.22.13083
Figure 2 - Ganoderma sichuanense (MFU 16-2668). A upper surface B lower surface C cut side of pileus D pore surface E–H spore I generative hyphae J binding hyphae K skeleton hyphae. Scale bars: 10 µm.
Figure 3 from: Thawthong A, Hapuarachchi KK, Wen T-C, Raspé O, Thongklang N, Kang J-C, Hyde KD (2017) Ganoderma sichuanense (Ganodermataceae, Polyporales) new to Thailand. MycoKeys 22: 27-43. https://doi.org/10.3897/mycokeys.22.13083
Figure 3 - Microscopic structures of Ganoderma sichuanense (MFU 16-2668) A basidiospores B hyphae from trama C hyphae from context. Scale bars: 5 μm.
Figure 1 from: Thawthong A, Hapuarachchi KK, Wen T-C, Raspé O, Thongklang N, Kang J-C, Hyde KD (2017) Ganoderma sichuanense (Ganodermataceae, Polyporales) new to Thailand. MycoKeys 22: 27-43. https://doi.org/10.3897/mycokeys.22.13083
Figure 1 - Phylogram generated by maximum likelihood analysis of 5.8S-ITS rDNA sequences. Bootstrap support values for maximum likelihood (in black) greater than 70% and Posterior Probabilities (PP) from Bayesian Inference (in blue) ≥0.95 are given above branches. The tree was rooted with Tomophagus colossus. The strain numbers are mentioned after the species names. Specimens of the newly recorded species are indicated in red and type specimens are indicated in black bold. (Treebase ID 20740)
Figure 1 from: Yuan Y, Ji XH, Chen JJ, Dai YC (2017) Three new species of Megasporia (Polyporales, Basidiomycota) from China. MycoKeys 20: 37-50. https://doi.org/10.3897/mycokeys.20.11816
Figure 1 - Strict consensus tree illustrating the phylogeny of Megasporia and its related species generated by maximum parsimony based on ITS+nLSU sequences. Branches are labeled with parsimony bootstrap proportions (before slanting line) high than 50% and bayesian posterior probabilities (after slanting line) more than 0.90.
Figure 4 from: Yuan Y, Ji XH, Chen JJ, Dai YC (2017) Three new species of Megasporia (Polyporales, Basidiomycota) from China. MycoKeys 20: 37-50. https://doi.org/10.3897/mycokeys.20.11816
Figure 4 - Microscopic structures of Megasporia yunnanensis sp. nov. (drawn from the holotype). a Basidiospores b Basidioles c Basidia d Cystidioles e Hyphae from trama f Hyphae from subiculum.
Figure 3 from: Yuan Y, Ji XH, Chen JJ, Dai YC (2017) Three new species of Megasporia (Polyporales, Basidiomycota) from China. MycoKeys 20: 37-50. https://doi.org/10.3897/mycokeys.20.11816
Figure 3 - Microscopic structures of Megasporia tropica sp. nov. (drawn from the holotype). a Basidiospores b Basidioles c Basidia d Cystidioles e Hyphae from trama f Hyphae from subiculum.
Figure 2 from: Yuan Y, Ji XH, Chen JJ, Dai YC (2017) Three new species of Megasporia (Polyporales, Basidiomycota) from China. MycoKeys 20: 37-50. https://doi.org/10.3897/mycokeys.20.11816
Figure 2 - Microscopic structures of Megasporia rimosa sp. nov. (drawn from the holotype). a Basidiospores b Basidioles c Basidia d Cystidioles e Dendrohyphidia f Hyphae from trama. g. Hyphae from subiculum.
Figure 8 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 8 - Microscopic characters of Phanerina mellea. a Subicular hyphae b tube trama c basidia, Miettinen 9134. Hymenial cystidia d Nuñez 503 e Ryvarden 10132. Spores f lectotype g Miettinen 9134 h Nuñez 503.
Figure 7 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 7 - Microscopic characters of Oxychaete cervinogilvus, Schigel 5216, a subicular hyphae b tube trama and hymenium c hymenial cells d hymenial cystidia e spores.
Figure 6 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 6 - Microscopic characters of Hapalopilus. Hapalopilus percoctus, holotype, a subicular hyphae b tramal hyphae c hymenium and subhymenium d hymenial cells. Spores of e Hapalopilus eupatorii, lectotype f Hapalopilus percoctus, holotype g Hapalopilus ribicola, lectotype h Hapalopilus rutilans, Niemelä 7134.
Figure 5 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 5 - Hapalopilus fruiting bodies, a Hapalopilus rutilans, Vlasák Jr. 0407/34-J b Hapalopilus eupatorii, Rivoire 5333.
Figure 11 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 11 - Microscopic characters in the Ceriporia pierii group. Spores of a C. humilis, holotype b C. mpurii, holotype c C. pierii, holotype d C. pierii, Rivoire 2378 e C. sericea, holotype f C. sordescens, holotype g Fan-shaped and rhomboidal crystals characteristic for the C. pierii group in C. mpurii, holotype. Hyphal structures of C. pierii, holotype: h subicular hyphae i tramal hypha j hymenial cells.
Figure 4 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 4 - Relations of Hapalopilus spp. Bayesian consensus tree based on ITS sequences. Figures denote posterior probabilities.
Figure 2 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 2 - Phylogeny of the phlebioid clade of the Polyporales with emphasis on Ceriporia clade and Phanerochaetaceae. Bayesian consensus tree based on ITS and nLSU sequences. Figures denote posterior probabilities (figures between 0 and 1) and bootstrap support values of the maximum likelihood analysis (figures between 50 and 100).
Figure 9 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 9 - Microscopic characters of Riopa. Riopa metamorphosa, epitype: a subicular hyphae b tube trama and hymenium c anamorph (Sporotrichum aurantiacum) d basidioles and basidia showing the characteristic corymb branching e hymenial cystidia. Spores of f Riopa metamorphosa drawn from the holotype of R. davidii g epitype of R. metamorphosa h holotype of R. pudens.
Figure 10 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 10 - Fruiting bodies of species in the Ceriporia pierii group. a Ceriporia mpurii, holotype b Ceriporia humilis, holotype c Ceriporia sordescens, holotype. Photos taken in the field.
Figure 1 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 1 - Fruiting body diversity in Phanerochaetaceae. a Phlebiopsis castanea (=Castanoporus castaneus), Russia, Spirin 5704 b effused polypore Phanerina mellea, Indonesia, Miettinen 11393 c corticioid Phlebiopsis pilatii, Russia, Spirin 6268 d polypore Riopa metamorphosa intermixed with its anamorphic stage Sporotrichum aurantiacum, Czech Republic, Vlasák 0511/15. Photos taken in the field.
Figure 3 from: Miettinen O, Spirin V, Vlasák J, Rivoire B, Stenroos S, Hibbett D (2016) Polypores and genus concepts in Phanerochaetaceae (Polyporales, Basidiomycota). MycoKeys 17: 1-46. https://doi.org/10.3897/mycokeys.17.10153
Figure 3 - Phanerochaetaceae phylogeny, Bayesian consensus tree based on ITS, nLSU and rpb1 sequences. Figures denote posterior probabilities (figures between 0 and 1) and bootstrap support values of the maximum likelihood analysis (figures between 50 and 100).
Figure 9 from: Telleria MT, Dueñas M, Martín MP (2017) The genus Hydnophlebia (Polyporales, Basidiomycota) with description of three new species from the Macaronesian Islands. MycoKeys 27: 39-64. https://doi.org/10.3897/mycokeys.27.14866
Figure 9 - Hydnophlebia omnivora. Collection 5267 C.R. Shear coll., BPI, holotype a Hymenophore b Vertical section through an aculei c Subicular hyphae d Strand hyphae e Aculei hyphae f Subhymenial hyphae, cystidia, and basidia g Spores. Scale bars: a = 1 mm; b = 25 µm; c–g = 10 µm. Drawing by M. Dueñas.
Figure 7 from: Telleria MT, Dueñas M, Martín MP (2017) The genus Hydnophlebia (Polyporales, Basidiomycota) with description of three new species from the Macaronesian Islands. MycoKeys 27: 39-64. https://doi.org/10.3897/mycokeys.27.14866
Figure 7 - Hydnophlebia gorgonea. Collection 19111Tell., MA-Fungi 86659, holotype a Hymenophore b Vertical section through an aculei c Subicular hyphae d Strand hyphae e Aculei hyphae f Subhymenial hyphae, cystidia, and basidia g Spores. Scale bars: a = 1 mm; b = 25 µm; c–g = 10 µm. Drawing by M. Dueñas.
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