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15 results for “Skeletocutis”
Supplementary material 5 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Distribution maps : Explanation note: Collection localities of specimens included in this study, indicating the approximate species distributions of the Skeletocutis nivea complex (A) in Europe and Western Asia, (B) in East Asia, Indomalaya and Australasia and (C) in North America.
Supplementary material 1 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Specimens and INSDC accession numbers of DNA sequences used in this study : Explanation note: Sequences retrieved from INSDC are denoted with*.
Supplementary material 2 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Estimates of average genetic divergence over sequence pairs within species : Explanation note: The number of base substitutions per site ×100 (%) obtained from averaging over all sequence pairs within each species are shown in first column, followed by standard error (SE) estimates (500 bootstrap replicates) and the number (N) of compared sequences are shown.
Supplementary material 4 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Estimates of evolutionary divergence over tef1 sequence pairs between species : Explanation note: The number of base substitutions per site ×100 (%) obtained from averaging over all sequence pairs between species (1–13) are shown below the diagonal and standard error (SE) estimates (500 bootstrap replicates) above the diagonal.
Supplementary material 3 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Estimates of genetic divergence over ITS sequence pairs between species : Explanation note: The number of base substitutions per site ×100 (%) obtained from averaging over all sequence pairs between species (1–14) are shown below the diagonal and standard error (SE) estimates (500 bootstrap replicates) above the diagonal.
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).
Figure 5 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 5 Microscopic structures of Skeletocutis ochroalba (reproduced after Niemelä (1985)). A spores B encrusted tomentum hyphae arising from dense cortical tissue C section through context, showing generative and skeletal hyphae and ramified side-branches resembling binding hyphae D ramified arbuscule-like binding hypha, arising from a generative hypha E dissepiment edge hyphae F cystidioles and basidioles G vertical section through a dissepiment edge, showing trama, hymenium with a hyphal peg and sparsely encrusted dissepiment edge hyphae.
Figure 6 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 6 Microscopic structures of the Skeletocutis nivea complex. A S. lepida, tramal skeletal hypha amongst generative hyphae (holotype) B S. semipileata, ends of generative and skeletal hyphae in trama (Miettinen 17135) C S. nemoralis, tube trama and hymenium (holotype) D S. nivea, tube trama and hymenium with encrusted generocystidia (epitype) E S. nivea, basidia (Miettinen 16350) F S. semipileata, basidia (epitype) G S. cummata, the largest basidia in the the S. nivea complex (Niemelä 9088).
Figure 4 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 4 Fruiting bodies of the Skeletocutis nivea complex. A S. nemoralis, Korhonen 86 B S. nemoralis, Korhonen 89 C S. nivea, epitype D S. nivea, Miettinen 16350 E S. semipileata with a characteristic bluish colour on pore surface, epitype F S. unguina, holotype.
Figure 3 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 3 Phylogenetic tree from ML analysis of the ITS dataset. Bootstrap support values (up to 100) and Bayesian posterior probabilities (up to 1) are shown beside branches (bs / pp) for all nodes that delimit species and deeper nodes where bs >50 or pp ≥0.95. Terminal labels include INSDC accession number, species name, area of origin (in ISO 3166 code), host tree and indication of type status. * = sequence retrieved from the INSDC. ** = tef1 sampled from corresponding specimen. (A) All terminals shown except Skeletocutis semipileata; (B) terminals within S. semipileata.
Figure 2 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 2 Phylogenetic tree from ML analysis of the tef1 dataset. Bootstrap support values (up to 100) and respective Bayesian posterior probabilities (up to 1) are shown beside branches (bs / pp) for all nodes that delimit species and for deeper nodes where bs >50 or pp ≥0.95. Terminal labels include INSDC accession number, species name, area of origin (in ISO 3166 code) and indication of type status. * = sequence retrieved from the INSDC.
Figure 1 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 1 Phylogenetic tree from ML analysis of the ITS–LSU dataset. Bootstrap support values (up to 100) and respective Bayesian posterior probabilities (up to 1) are shown beside branches (bs / pp) where bs > 50 or pp ≥0.80. Terminal labels include INSDC accession number(s), species name, (area of origin, in ISO 3166 code) and gene regions included. * = sequence retrieved from the INSDC.
FIGURE 2. A in A new species of Skeletocutis (Polyporales, Basidiomycota) from Yunnan of China
FIGURE 2. A fruiting body of Skeletocutis yunnanensis (BJFC019816). Bar: 1 cm
Figure 7 from: Korhonen A, Seelan JSS, Miettinen O (2018) Cryptic species diversity in polypores: Skeletocutis nivea species complex. MycoKeys 36: 45-82. https://doi.org/10.3897/mycokeys.36.27002
Figure 7 Spores of selected species in the Skeletocutis nivea complex.
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