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16 results for “Verrucariaceae”
FIGURE 5 in Revision of the Verrucaria elaeomelaena species complex and morphologically similar freshwater lichens (Verrucariaceae, Ascomycota)
FIGURE 5. Anatomy and habitus of Verrucaria funckii. A. Thallus of isolectotype (BM). B. Thallus of specimen Thüs & Türk W1803 from sun-exposed locality (BM). C. Thallus of specimen Thüs W1047 from half-shaded locality. D. Thallus of specimen Thüs W1171 from deeply shaded locality. E. Cross-section of a perithecium of the isolectotype (BM). Scale bar: A–D = 5 mm; E = 50 μm.
FIGURE 6 in Revision of the Verrucaria elaeomelaena species complex and morphologically similar freshwater lichens (Verrucariaceae, Ascomycota)
FIGURE 6. Habitus of European freshwater species of Verrucaria with large ascospores and spreading involucrellum. A. Holotype of Verrucaria basaltica (PRM). B. Holotype of Verrucaria pachyspora (PRM). C. Isotype of Verrucaria maasgeesterani (PRM). D. Specimen Thüs W Ice016 of Verrucaria margacea (BM). E. Isotype of Verrucaria margacea (W). Scale bar: A–E = 1 mm.
FIGURE 4 in Revision of the Verrucaria elaeomelaena species complex and morphologically similar freshwater lichens (Verrucariaceae, Ascomycota)
FIGURE 4. Anatomy and habitus of Verrucaria humida. A. Thallus of specimen Orange 19370 (holotype, NMW), B. Thallus of specimen Orange 16783 (NMW). C–D. Cross-sections of perithecia of specimen Orange 19370 (holotype, NMW). E–F. Cross-sections of perithecia of specimen Orange 16785 (NMW). G. Cross-section of a perithecium of specimen Krzewicka 2719a (KRAM). H. Crosssection of a perithecium of specimen Orange 19318 (NMW). Scale bar: A–B = 1 mm; C–H = 100 μm.
FIGURE 2 in Revision of the Verrucaria elaeomelaena species complex and morphologically similar freshwater lichens (Verrucariaceae, Ascomycota)
FIGURE 2. Phylogeny of taxa within the Verrucaria elaeomelaena agg. Most likely tree obtained with MrBayes based on ITS. Support values are reported above or below the branches (posterior probability [PP]/bootstrap value [BS]). Only significant values (higher than 95% PP and higher than 70% BS) are shown on the figure. Verrucaria nigrescens was used as an out group.
FIGURE 3. A in Revision of the Verrucaria elaeomelaena species complex and morphologically similar freshwater lichens (Verrucariaceae, Ascomycota)
FIGURE 3. A. Cross-section of a perithecium of Verrucaria submersella (syntype BM). B. Cross-section of a perithecium of Verrucaria elaeomelaena (isolectotype BM). C. Thallus of Verrucaria elaeomelaena (isolectotype BM). D. Thallus of Verrucaria alpicola (lectotype B). E. Cross-section of a perithecium of Verrucaria alpicola (lectotype B). Scale bar: A, B, E = 50 μm; C–D = 5 mm.
FIGURE 1 in Revision of the Verrucaria elaeomelaena species complex and morphologically similar freshwater lichens (Verrucariaceae, Ascomycota)
FIGURE 1. Systematic placement of Verrucaria elaeomelaena agg., V. funckii and morphologically similar taxa within the Verrucariaceae based on a multigene dataset (nuLSU, nuSSU, mtSSU and RPB1). Support values are reported above or below the branches (posterior probability [PP]/bootstrap value [BS]). Nodes with strong support (100% PP and BS) are indicated by a black dot on the branches. Only significant values (higher than 95% PP and higher than 70% BS) are shown on the figure. Capronia munkii and Capronia pilosella were used as an out group.
FIGURE 4 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 4. Most likely unrooted tree (with BS values) showing the relationships within the genus Staurothele based on nrLSU. The collection number in bold (BMC 12394) represents E. tortuosum (= E. pulvinatum). The scale bar represents the number of nucleotide substitutions/site.
FIGURE 1 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 1. General habit of Endocarpon pulvinatum. A. Large thalli found on the nunatak Esjubjörg in southeastern Iceland (LA31862). B. Close-up on specimen SH300 collected near a glacier river in Northern Iceland. Bar = 5 mm. Photos Starri Heiðmarsson.
FIGURE 2 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 2. Phylogenetic placement of E. pulvinatum within the family Verrucariaceae resulting from a Bayesian analysis of a multi-locus dataset (ITS, nrLSU, mtSSU and mcm7). Support values are reported above or below the branches (posterior probability [PP]/bootstrap support [BS]). Internodes with strong support (1.00 PP and 100% BS) are indicated by a black dot. Only values of PP ≥ 0.95 and of BS ≥ 70% are shown. Two species of Capronia were used as an outgroup.
FIGURE 3 in Multi-locus phylogeny supports the placement of Endocarpon pulvinatum within Staurothele s. str. (lichenised ascomycetes, Eurotiomycetes, Verrucariaceae)
FIGURE 3. Most likely unrooted tree (with BS values) showing the relationships within the genus Staurothele based on ITS. The collection number in bold (BMC 12394) represents E. tortuosum (= E. pulvinatum). The scale bar represents the number of nucleotide substitutions/site.
FIGURE 1 in Verrucaria tenebrosa (Verrucariaceae), a new lichen species from Finland and Norway, and notes on the taxonomy of epiphytic taxa belonging to the V. hydrophila complex
FIGURE 1. Phylogenetic relationships of Verrucaria tenebrosa and related species. A maximum likelihood phylogram obtained from RAxML analysis based on ITS data set. Bootstrap values (>50%) are shown at nodes. New species described in this study are indicated in bold.
FIGURE 3 in Verrucaria hunsrueckensis (Verrucariaceae, lichenized Ascomycota), a new rare species with exceptionally slender ascospores from Germany
FIGURE 3. Nature forest reserve (Naturwaldreservat) Ruppelstein, type locality of Verrucaria hunsrueckensis.
FIGURE 2. Verrucaria hunsrueckensis, A. Holotype specimen, E in Verrucaria hunsrueckensis (Verrucariaceae, lichenized Ascomycota), a new rare species with exceptionally slender ascospores from Germany
FIGURE 2. Verrucaria hunsrueckensis, A. Holotype specimen, E.Fischer et al. 651/2015 [BM], bar = 5 mm. B. Specimen E.Fischer et al. 201/2016 [STU], bar = 1 mm. C. Spores from the holotype, bar = 20 μm. D. Section of a perithecium from the holotype, bar = 50 μm.
FIGURE 1 in Verrucaria hunsrueckensis (Verrucariaceae, lichenized Ascomycota), a new rare species with exceptionally slender ascospores from Germany
FIGURE 1. Phylogenetic placement of Verrucaria hunsrueckensis in comparison to other Verrucaria species with similarities in their morphological traits and type specimens of related species resulting from a RaxML-analysis under a GTRGAMMA model of the nuclear ribosomal ITS1-5.8S-ITS2 region. Support values are reported above or below the branches (bootstrap support [BT]/posterior probabilities [PP]). Sequences of Verrucaria nigrescens and V. macrostoma were used to root the tree.
FIGURE 3 in Verrucaria tenebrosa (Verrucariaceae), a new lichen species from Finland and Norway, and notes on the taxonomy of epiphytic taxa belonging to the V. hydrophila complex
FIGURE 3. Section of perithecium of Verrucaria tenebrosa (holotype).
FIGURE 2 in Verrucaria tenebrosa (Verrucariaceae), a new lichen species from Finland and Norway, and notes on the taxonomy of epiphytic taxa belonging to the V. hydrophila complex
FIGURE 2. Verrucaria tenebrosa (holotype).
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