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32 results for “Trechisporales”
Supplementary material 3 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Basidiospore size ranges of 67 Subulicystidium specimens which were sequenced or represent important historical collections : Explanation note: For the parameters of basidiospore length (L), width (W) and length to width ratio (Q), the following values are presented: minimal value, 5% data quantile, mean, 95% data quantile and maximum. Minimum and maximum do not consider outliers which were found for some specimens in raw data (see Materials and methods for details of excluding outliers).
Supplementary material 2 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Measurements of 2840 basidiospores from 67 Subulicystidium specimens which were sequenced or represent important historical collections : Explanation note: Each row contains data on length (L_sp), width (W_sp) and length to width ratio (Q_sp) of a single basidiospore and information on specimen and species from which the basidiospore was measured is provided in separate columns. Dataset does not contain outliers which were found for some specimens in raw data (see Materials and methods for details of excluding outliers). In the case of S. brachysporum, the capital "B" following epithet means morphological species concept following Boidin and Gilles (1988), while "T" means the species as described by Talbot (1958).
Supplementary material 1 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Detailed data on 144 specimens of Subulicystidium used in the study : Explanation note: Specimens for which coordinates were available on herbarium labels or from field notes contain "gps" in the column "COORD_source". Specimens for which coordinates were estimated from the map web sources (see Materials and Methods) are marked with the word "map".
Supplementary material 4 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Basidiospore size ranges of Subulicystidium species included in the study : Explanation note: Calculations are based on a set of 67 specimens which were sequenced or represent important historical collections. For the parameters of basidiospore length (L), width (W) and length to width ratio (Q), the following values are presented: minimal value, 5% data quantile, mean, 95% data quantile and maximum. Minimum and maximum do not consider outliers which were found for some specimens in raw data (see Materials and methods for details of excluding outliers). Calculations were provided separately for the type specimens (of S. meridense and S. nikau), as well as for the collection as S. boidinii LY 11247 which was used to propose "Subulicystidium allantosporum ad interim" (Boidin and Gilles 1988). In S. brachysporum, the capital "B" following epithet means morphological species concept following Boidin and Gilles (1988), while "T" means the species as described by Talbot (1958).
FIGURE 4. S in Contribution to the taxonomy of Sistotremastrum (Trechisporales, Basidiomycota) and the description of two new species, S. fibrillosum and S. aculeocrepitans
FIGURE 4. S. fibrillosum Basidiomes, fresh material in situ. A: holotype. B: GG GUY13-119. C: GG GUY12-191.
FIGURE 3. S in Contribution to the taxonomy of Sistotremastrum (Trechisporales, Basidiomycota) and the description of two new species, S. fibrillosum and S. aculeocrepitans
FIGURE 3. S. fibrillosum (holotype). A: spores. B: hyphidia. C: mature basidia. D: postmature basidia. bar = 10 μm.
FIGURE 2 in Contribution to the taxonomy of Sistotremastrum (Trechisporales, Basidiomycota) and the description of two new species, S. fibrillosum and S. aculeocrepitans
FIGURE 2. Best scoring ITS rDNA phylogram of the Sistotremastrum clade obtained in RAxML. Nodes supported by>0.95 Bayesian PP or>70% ML BP are shown annotated. Root branch length was altered for publishing.
FIGURE 1. Best scoring 28S in Contribution to the taxonomy of Sistotremastrum (Trechisporales, Basidiomycota) and the description of two new species, S. fibrillosum and S. aculeocrepitans
FIGURE 1. Best scoring 28S rDNA phylogram of the corticioid lineages in the Basidiomycetes most closely related to the Sistotremastrum clade obtained in RAxML. Nodes supported by>0.95 Bayesian PP or>70% ML BP are shown annotated. Root branch length was altered for publishing.
FIGURE 6. S in Contribution to the taxonomy of Sistotremastrum (Trechisporales, Basidiomycota) and the description of two new species, S. fibrillosum and S. aculeocrepitans
FIGURE 6. S. aculeocrepitans. Basidiomes, fresh material in situ. A: holotype. B: GG MAR15-008. C: GG MAR15-010.
FIGURE 2 in Sistotremastrum chilensis (Trechisporales, Basidiomycota), a new species from Chilean Patagonia
FIGURE 2. Sistotremastrum chilensis MA-Fungi 86368. a. Section through basidiome; bar = 25 µm. b. Basal hyphae. c. Subhymenial hyphae. d. Detail of hymenium with basidia and probasidia. e. Spores. bar = 10 µm (19610Tell., MA-Fungi 86368, holotypus)
Figure 3 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 3 Species of Subulicystidium with broad fusiform basidiospores. Subulicystidium naviculatum (GB:KHL 11566): a, b hymenium and basidiospores. Subulicystidium ryvardenii (LR 8860/b in O:F 909583, holotype): c, d cystidia e basidiospores. Subulicystidium robustius (GB:KHL 10813, holotype): f, g cystidia in hymenium h basidiospores. All preparations done in 3% aqueous solution of potassium hydroxide (KOH) mixed with 1% aqueous solution of Phloxine. All scale bars equal 10 µm.
Figure 8 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 8 Species of Subulicystidium brachysporum morphotype. Subulicystidium brachysporum sensu Boidin and Gilles (LR 15784 in O:F 918493): a cystidia in hymenium b crystalline collars on basidioles and slightly encrustated subhymenial hyphae c basidiospores. Subulicystidium brachysporum sensu Talbot (LR 24170 in O:F): d cystidia in hymenium e basidiospores. All preparations done in 3% aqueous solution of potassium hydroxide (KOH) mixed with 1% aqueous solution of Phloxine. All scale bars equal 10 µm.
Figure 7 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 7 Species of Subulicystidium with smallest cylindric basidiospores. Subulicystidium harpagum (KAS:L 1726a, holotype): a cystidia b basidiospores. Subulicystidium parvisporum (KAS:L 0140, holotype): c basidiospores d cross sections through fruit-body. Preparations a, b, c done in 3% aqueous solution of potassium hydroxide (KOH) mixed with 1% aqueous solution of Phloxine, preparation d simply in KOH. All scale bars equal 10 µm.
Figure 12 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 12 Phylogenetic relationship of Subulicystidium based on ITS nrDNA sequences. 50% majority-rule consensus tree from Bayesian analysis is shown, with posterior probabilities above the branches and bootstrap support values from the maximum likelihood estimation below the branches. Tips of the tree are annotated according to morphological identification and marked with colours in non-monophyletic taxa (see legend). In the legend, the capital "B" following epithet in S. brachysporum means morphological species concept following Boidin and Gilles (1988), while "T" means the species as described by Talbot (1958).
Figure 2 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 2 Verifying the presence of the barcode gap in Subulicystidium rDNA sequences of ITS (a, b) and 28S (c, d) regions. a, c Maximal intraspecific divergence compared with minimal interspecific distances between the aligned rDNA sequences in ITS (a) and 28S (c) datasets. Specimens falling above 1:1 line indicate the presence of the barcoding gap (molecular distinctness of the species) b, d Frequency distributions of intra- and interspecific distances without referring to particular species in ITS (b) and 28S (d) datasets. In the legend, the capital "B" following epithet in S. brachysporum means morphological species concept following Boidin and Gilles (1988), while "T" means the species as described by Talbot (1958). Three-letter code before each specimen's number corresponds to a species epithet as explained in the legend
Figure 9 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 9 Species of Subulicystidium meridense morphotype. Subulicystidium meridense, holotype (TUB:FO 13761): a hymenium with crystalline encrustation and cystidia b basidiospores. S. meridense from own study (GB:KHL 11365): c cystidia in hymenium d basidiospores. Subulicystidium aff. meridense (GB:KHL 9561): e cystidia in hymenium f basidiospores. All preparations done in 3% aqueous solution of potassium hydroxide (KOH) mixed with 1% aqueous solution of Phloxine. All scale bars equal 10 µm.
Figure 14 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 14 Phylogenetic relationship of Subulicystidium based on concatenated ITS+28S nrDNA alignment. 50% majority-rule consensus tree from Bayesian analysis is shown, with posterior probabilities above the branches and bootstrap support values from the maximum likelihood estimation below the branches. Tips of the tree include GenBank/UNITE accession numbers of ITS followed by 28S region. Tips are annotated according to morphological identification and marked with colours in non-monophyletic taxa (see legend). In the legend, the capital "B" following epithet in S. brachysporum means morphological species concept following Boidin and Gilles (1988), while "T" means the species as described by Talbot (1958).
Figure 13 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 13 Phylogenetic relationship of Subulicystidium based on 28S nrDNA sequences. 50% majority-rule consensus tree from Bayesian analysis is shown, with posterior probabilities above the branches and bootstrap support values from the maximum likelihood estimation below the branches. Tips of the tree are annotated according to morphological identification and marked with colours in non-monophyletic taxa (see legend). In the legend, the capital "B" following epithet in S. brachysporum means morphological species concept following Boidin and Gilles (1988), while "T" means the species as described by Talbot (1958).
Figure 6 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 6 Species of Subulicystidium with long cylindric basidiospores. Subulicystidium grandisporum (LR 29162 in O:F 506781): a hymenium with rich crystalline encrustation b cystidia c basidiospores. Subulicystidium obtusisporum (FR: W213-3-I): d cystidia e basidiospores. Subulicystidium rarocrystallinum (LR 15483 in O:F 918488, holotype): f cystidia g hymenium h basidiospores. All preparations done in 3% aqueous solution of potassium hydroxide (KOH) mixed with 1% aqueous solution of Phloxine. All scale bars equal 10 µm.
Figure 10 from: Ordynets A, Scherf D, Pansegrau F, Denecke J, Lysenko L, Larsson K-H, Langer E (2018) Short-spored Subulicystidium (Trechisporales, Basidiomycota): high morphological diversity and only partly clear species boundaries. MycoKeys 35: 41-99. https://doi.org/10.3897/mycokeys.35.25678
Figure 10 Basidiospore shape and size in all studied species of Subulicystidium. Each species is illustrated by a single specimen and herbarium codes are indicated on the figure.
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