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10 results for “Fomitopsidaceae”
Fig. 5 in Two new polyporoid species of Fomitopsidaceae (Polyporales, Basidiomycota) from India
Fig. 5. Microscopic characteristics of Fomitopsis benghalensis R.Saha, A.K.Dutta & K.Acharya sp. nov. (CUH [AM795], holotype). A. Basidia. B. Cystidioles. C. Generative hyphae. D. Skeletal hyphae. E. Binding hyphae. F. Basidiospores. Scale bars = 5 µm. Drawing by R. Saha.
Fig. 3 in Two new polyporoid species of Fomitopsidaceae (Polyporales, Basidiomycota) from India
Fig. 3. Microscopic characteristics of Pseudofomitopsis fusca R.Saha, A.K.Dutta & K.Acharya sp. nov. (CUH [AM776], holotype). A. Basidia. B. Cystidioles. C. Generative hyphae. D. Skeletal hyphae. E. Basidiospores. Scale bars = 5 µm. Drawing by R. Saha.
Fig. 1 in Two new polyporoid species of Fomitopsidaceae (Polyporales, Basidiomycota) from India
Fig. 1. Maximum likelihood (ML) tree constructed employing the GTR+I+G model of nucleotide evolution (-lnL= 12832.44796) based on the nrDNA ITS sequence data. Left side numbers of '/' are ML bootstrap support, and those to the right side show the Bayesian posterior probabilities (PP). MLBS ≥ 50% and PP ≥ 0.50 values are displayed above or below the branches and the scale bar indicate the expected changes per site. The newly described species are exhibited in deep violet bold font to highlight their positions in the phylogenetic tree.
Fig. 4. A–B in Two new polyporoid species of Fomitopsidaceae (Polyporales, Basidiomycota) from India
Fig. 4. A–B. Field photographs of fresh basidiocarps of Fomitopsis benghalensis R.Saha, A.K.Dutta & K.Acharya sp. nov. in natural habitat, collected from West Bengal, India (CUH [AM795], holotype). Scale bars = 10 mm. Photograph by R. Saha.
Fig. 2 in Two new polyporoid species of Fomitopsidaceae (Polyporales, Basidiomycota) from India
Fig. 2. Field photographs of fresh basidiocarps of Pseudofomitopsis fusca R.Saha, A.K.Dutta & K.Acharya sp. nov. in natural habitat, collected from West Bengal, India (CUH [AM776], holotype). Scale bar = 10 mm. Photograph by R. Saha.
FIGURE 3 in Piptoporellus taiwanensis sp. nov. (Polyporales, Fomitopsidaceae) from Taiwan and its phytochemistry
FIGURE 3. Microscopic structures of Piptoporellus taiwanensis. a. Basidiospores. b. Basidioles. c. Basidia. d. Clamp connections. e. Hyphae from context. f. Hyphae from trama. Bars: a–f = 10 μm.
FIGURE 2 in Piptoporellus taiwanensis sp. nov. (Polyporales, Fomitopsidaceae) from Taiwan and its phytochemistry
FIGURE 2. Basidiocarps of Piptoporellus taiwanensis. a. P. taiwanensis growing on the tree. b. Lower surface of the pileus. c. Upper surface of the pileus. d. Enlarged view of pores (2×).
FIGURE 1 in Piptoporellus taiwanensis sp. nov. (Polyporales, Fomitopsidaceae) from Taiwan and its phytochemistry
FIGURE 1. The RAxML tree is based on the concatenated dataset of nrLSU, nrSSU, ITS, and tef1-α. MLB greater than 70% and PP greater than 0.90 are given below or above the nodes. The original strain numbers are annotated after the taxa names. The scale bar refers to the estimated number of substitutions per site. Isolates generated in the present study are in red. The tree is rooted in Trametes suaveolens Cui 11586.
FIGURE 2. Fomitopsis roseomagna. a in A new species, two new combinations and notes on Fomitopsidaceae (Agaricomycetes, Polyporales)
FIGURE 2. Fomitopsis roseomagna. a- Dried basidiomata- abhymenial surface; b- hymenial surface- pores in detail; c- hyphal system; d- basidiospores. Scale bar: a, b and c = 5 cm; d and e = 5μm. Photos: R. Alvarenga.
FIGURE 1 in A new species, two new combinations and notes on Fomitopsidaceae (Agaricomycetes, Polyporales)
FIGURE 1. Maximum likelihood tree inferred from the ITS and nLSU combined data set. Bootstrap supporting values for parsimony and ML, besides the PP values, are displayed above the nodes, respectively. Bootstrap values below 40% were represented with (-). The branch lengths reflect the changes per site showed in the scale following the chosen nucleotide substitution model.
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