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29 results for “Protoparmeliopsis”

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Figure 7 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 7 Protoparmeliopsis crystalliniformis morphology (BDNA-L-0000349, holotype) A–C habitus and apothecia, areolate to squamulose thallus in white to whitish gray color D–E apothecia in vertical section F–G well-developed thalline margin H large crystals present in the thalline margin, not dissolving in KOH I clavate ascus J ascospores constantly simple and ellipsoid, often biguttulate in the beginning. Scale bars: 1 mm (A–C); 200 μm (D–E); 100 μm (F–G); 50 μm (H); 10 μm (I–J).

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 6 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 6 Lecanora parasymmicta morphology (BDNA-L-0001235, paratype in A BDNA-L-0001220, holotype in B–M) A–C habitus and apothecia, thalline margin of apothecia consistently absent from the beginning D blackish hypothallus (red arrows) E apothecia in vertical section F biatorine apothecia without thalline margin G–J clavate asci with eight spores K ascospores constantly simple but rarely 1-septate L immersed pycnidia M thread-like, curved pycnoconidia. Scale bars: 1 mm (A–D); 200 μm (E); 50 μm (F); 10 μm (G–K); 100 μm (L); 10 μm (M).

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 5 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 5 Phylogenetic relationships amongst available species in the genus Protoparmeliopsis based on a Maximum Likelihood analysis of the dataset of the mitochondrial small subunit (mtSSU) sequences. The tree was rooted with three sequences of the genus Polyozosia. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Protoparmeliopsis crystalliniformis is presented in bold, and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 3 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 3 Phylogenetic relationships amongst available species in the Lecanora symmicta group based on a Maximum Likelihood analysis of the dataset of the mitochondrial small subunit (mtSSU) sequences. The tree was rooted with four sequences of the Lecanora subfusca group. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Lecanora parasymmicta is presented in bold, and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 4 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 4 Phylogenetic relationships amongst available species in the genus Protoparmeliopsis based on a Maximum Likelihood analysis of the dataset of ITS sequences. The tree was rooted with five sequences of the genus Polyozosia. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Protoparmeliopsis crystalliniformis is presented in bold, and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 2 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 2 Phylogenetic relationships amongst available species in the Lecanora symmicta group based on a Maximum Likelihood analysis of the dataset of ITS sequences. The tree was rooted with five sequences of the Lecanora subfusca group and Tephromela. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new sequences of Lecanora parasymmicta and Lecanora symmicta produced from this study are presented in bold, and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 1 from: Lee BG, Hur J-S (2021) Two new lecanoroid lichen species from the forested wetlands of South Korea, with a key for Korean Protoparmeliopsis species. MycoKeys 84: 163-183. https://doi.org/10.3897/mycokeys.84.70798

Figure 1 Specific collection sites for two new species A habitat/landscape of Lecanora parasymmictaB habitat/landscape of Protoparmeliopsis crystalliniformisC locations of Lecanora parasymmicta (black circle) and Protoparmeliopsis crystalliniformis (two black stars) on the map.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 2 from: Szczepańska K, Rodriguez-Flakus P, Urbaniak J, Śliwa L (2019) Neotypification of Protoparmeliopsis garovaglii and molecular evidence of its occurrence in Poland and South America. MycoKeys 57: 31-46. https://doi.org/10.3897/mycokeys.57.34501

Figure 2 a, b Neotype for Protoparmeliopsisgarovaglii designated in WRSL herbarium c, d Thallus of Protoparmeliopsisgarovaglii in natural habitat. Scales: 2 cm (a); 4 cm (c); 2 cm (d).

opencc-by-4.0Oct 2019View details →
zenodo28/100

Figure 1 from: Szczepańska K, Rodriguez-Flakus P, Urbaniak J, Śliwa L (2019) Neotypification of Protoparmeliopsis garovaglii and molecular evidence of its occurrence in Poland and South America. MycoKeys 57: 31-46. https://doi.org/10.3897/mycokeys.57.34501

Figure 1 Bayesian Inference of the phylogenetic relationship within Protoparmeliopsis species, based on ITS rDNA sequences. High bootstrap support values are shown above thickened branches and bold numbers representing clades (ML – BP ≥ 70%, Bayesian analysis – PP ≥ 0.9). Highlighted squares represent P.garovaglii populations in Europe, South and North America. Parmeliaceae species were selected as the outgroup.

opencc-by-4.0Oct 2019View details →

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