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266 results for “Polyporales”
Figure 2 from: Tang S-M, Chen D-C, Wang S, Wu X-Q, Ao C-C, Li E-X, Luo H-M, Li S-H (2024) Morphological and molecular analyses reveal two new species of Grifola (Polyporales) from Yunnan, China. MycoKeys 102: 267-284. https://doi.org/10.3897/mycokeys.102.118518
Figure 2 Fresh basidiomata of Grifola edulis (holotype HKAS131996) A wild basidiomata B–D cultivated basidiomata E view of pores by stereoscope F side view of pore zone and context by stereoscope. Photographs by Song-Ming Tang. Scale bars: 1 cm (A–D); 1 mm (E, F).
Figure 10 from: Tang S-M, Chen D-C, Wang S, Wu X-Q, Ao C-C, Li E-X, Luo H-M, Li S-H (2024) Morphological and molecular analyses reveal two new species of Grifola (Polyporales) from Yunnan, China. MycoKeys 102: 267-284. https://doi.org/10.3897/mycokeys.102.118518
Figure 10 Characteristics of basidiospores ornamentations A, BGrifola edulis (HKAS 131996) C, DGrifola sinensis (HKAS 131995).
Figure 1 from: Tang S-M, Chen D-C, Wang S, Wu X-Q, Ao C-C, Li E-X, Luo H-M, Li S-H (2024) Morphological and molecular analyses reveal two new species of Grifola (Polyporales) from Yunnan, China. MycoKeys 102: 267-284. https://doi.org/10.3897/mycokeys.102.118518
Figure 1 Strict consensus tree illustrating the phylogeny based on the combined 5.8S, ITS1+ITS2, TUBB extron and TUBB intron data set. Maximum likelihood bootstrap proportions equal to or higher than 70%, and Bayesian posterior probabilities equal to or higher than 0.90 are indicated at nodes. The two Polyporus species were used as the outgroup. Holotype specimens are in bold.
FIGURE 3. A in Three new Xenasmatella (Polyporales, Basidiomycota) species from China
FIGURE 3. A basidiomata of Xenasmatella xinpingensis (holotype). Bar: A = 0.5 cm; B = 1 mm.
FIGURE 2. A in Three new Xenasmatella (Polyporales, Basidiomycota) species from China
FIGURE 2. A basidiomata of Xenasmatella tenuis (holotype). Bar: A = 1 cm; B = 1 mm.
FIGURE 1. A in Three new Xenasmatella (Polyporales, Basidiomycota) species from China
FIGURE 1. A basidiomata of Xenasmatella rhizomorpha (holotype). Bar: A = 0.5 cm; B = 1 mm.
Figure 8 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 8 Basidiomata of Cyanosporus subungulatus (Holotype, Cui 18046). Scale bar: 10 mm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 6 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 6 Basidiomata of Cyanosporus rigidus (Holotype, Cui 17032). Scale bar: 1.5 cm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 4 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 4 Basidiomata of Cyanosporus flavus (Holotype, Cui 18547). Scale bar: 1 cm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 11 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 11 Microscopic structures of Cyanosporus tenuicontextus (Holotype, Cui 16280) a basidiospores b basidia and basidioles. c cystidioles d hyphae from trama e hyphae from context. Drawings by: Shun Liu.
Figure 10 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 10 Basidiomata of Cyanosporus tenuicontextus (Holotype, Cui 16280). Scale bar: 1 cm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 3 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 3 Maximum likelihood tree illustrating the phylogeny of Cyanosporus and its related genera in the antrodia clade based on the combined sequences dataset of ITS+nLSU+nSSU+mtSSU+RPB1+RPB2+TEF. Branches are labelled with maximum likelihood bootstrap higher than 50%, parsimony bootstrap propwortions higher than 50% and Bayesian posterior probabilities more than 0.90 respectively. Bold names = New species.
Figure 2 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 2 Maximum likelihood tree illustrating the phylogeny of Cyanosporus and its related genera in the antrodia clade based on the combined sequences dataset of ITS+TEF. Branches are labelled with maximum likelihood bootstrap higher than 50%, parsimony bootstrap proportions higher than 50% and Bayesian posterior probabilities more than 0.90 respectively. Bold names = New species.
Figure 7 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 7 Microscopic structures of Cyanosporus rigidus (Holotype, Cui 17032) a basidiospores b basidia and basidioles c hyphae from trama d hyphae from context. Drawings by: Shun Liu.
Figure 9 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 9 Microscopic structures of Cyanosporus subungulatus (Holotype, Cui 18046) a basidiospores b basidia and basidioles c hyphae from trama d hyphae from context. Drawings by: Shun Liu.
Figure 5 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 5 Microscopic structures of Cyanosporus flavus (Holotype, Cui 18547) a basidiospores b basidia and basidioles c cystidioles d hyphae from trama e hyphae from context. Drawings by: Shun Liu.
FIGURE 4 in Irpex jinshaensis sp. nov. and I. subulatus comb. nov. (Irpicaceae, Polyporales), evidenced by morphological characters and phylogenetic analysis
FIGURE 4. Basidiocarps of Irpex subulatus (Dai 16719). Photo by: Yu-Cheng Dai.
Figure 3 from: Luangharn T, Karunarathna SC, Mortimer PE, Hyde KD, Thongklang N, Xu J (2019) A new record of Ganoderma tropicum (Basidiomycota, Polyporales) for Thailand and first assessment of optimum conditions for mycelia production. MycoKeys 51: 65-83. https://doi.org/10.3897/mycokeys.51.33513
Figure 3 Characteristics of Ganodermatropicum strain KUMCC18-0046 mycelial cultures were incubated at 25 °C for 10 days on different agar media A Czapek's agar (CZA) B Malt extract agar (MEA) C Potato dextrose agar (PDA) D Rose Bengal agar (RBA) E Yeast extract agar (YEA) F Yeast malt extract agar (YMA) G Yeast extract peptone dextrose agar (YPD). Scale bars: 1 cm.
Figure 2 from: Luangharn T, Karunarathna SC, Mortimer PE, Hyde KD, Thongklang N, Xu J (2019) A new record of Ganoderma tropicum (Basidiomycota, Polyporales) for Thailand and first assessment of optimum conditions for mycelia production. MycoKeys 51: 65-83. https://doi.org/10.3897/mycokeys.51.33513
Figure 2 Morphology of Ganodermatropicum strain KUMCC18-0046 A, B Mature basidiocarps C Margin D Pore characteristics E, F Culture after incubation at 25 °C for 21 days G, J Basidiospore in KOH K, L Generative hyphae of context in KOH M Skeletal hyphae N Skeletal hyphae and binding hyphae O Sparing branch hyphae. Scale bars: 1 cm (A–C); 500 µm (D); 1 cm (E, F); 5 µm (G–I); 15 µm (J); 20 µm (K, L, O); 10 µm (M, N).
Figure 1 from: Luangharn T, Karunarathna SC, Mortimer PE, Hyde KD, Thongklang N, Xu J (2019) A new record of Ganoderma tropicum (Basidiomycota, Polyporales) for Thailand and first assessment of optimum conditions for mycelia production. MycoKeys 51: 65-83. https://doi.org/10.3897/mycokeys.51.33513
Figure 1 Phylogenetic tree (RAxML) obtained from the DNA sequence data of LSU, ITS, and RPB2 datasets. Bootstrap values (BS) from maximum likelihood (ML, left), Maximum parsimony (MP, middle) greater than 70% and Bayesian posterior probabilities (PP) greater than 0.95 are indicated above the nodes as MLBS/MPBS/PP. The tree is rooted with Amaurodermacalcitum FLOR:50931. Newly recorded species are indicated in black bold.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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