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40 results for “Parmelia”
Supplementary material 4 from: Ossowska E, Guzow-Krzemińska B, Kolanowska M, Szczepańska K, Kukwa M (2019) Morphology and secondary chemistry in species recognition of Parmelia omphalodes group – evidence from molecular data with notes on the ecological niche modelling and genetic variability of photobionts. MycoKeys 61: 39-74. https://doi.org/10.3897/mycokeys.61.38175
: Data type: multimedia
Figure 9 from: Ossowska E, Guzow-Krzemińska B, Kolanowska M, Szczepańska K, Kukwa M (2019) Morphology and secondary chemistry in species recognition of Parmelia omphalodes group – evidence from molecular data with notes on the ecological niche modelling and genetic variability of photobionts. MycoKeys 61: 39-74. https://doi.org/10.3897/mycokeys.61.38175
Figure 9 Distribution of suitable niches of P. discordans (A), P. omphalodes (B) and P. pinnatifida (C) in Eurasia.
Figure 2 from: Kyslychenko OA, Protska VV, Zhuravel IO (2019) HPLC determination of phenolic compounds content in Parmelia sulcata and Parmelia vagans thalli. Pharmacia 66(4): 161-164. https://doi.org/10.3897/pharmacia.66.e35194
Figure 2 The HPLC chromatograms of Parmelia vagans thalli under the conditions of positive (A) and negative (B) ionization.
Figure 1 from: Kyslychenko OA, Protska VV, Zhuravel IO (2019) HPLC determination of phenolic compounds content in Parmelia sulcata and Parmelia vagans thalli. Pharmacia 66(4): 161-164. https://doi.org/10.3897/pharmacia.66.e35194
Figure 1 The HPLC chromatograms of Parmelia sulcata thalli under the conditions of positive (A) and negative (B) ionization.
Figure 7 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 7 Haplotype network, based on ITS rDNA sequences from specimens of Montanelia sorediata. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 3 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 3 Haplotype network, based on ITS rDNA sequences from specimens of Melanelia agnata. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 6 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 6 Haplotype network, based on ITS rDNA sequences from specimens of Montanelia disjuncta. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 2 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 2 Haplotype network, based on ITS rDNA sequences from specimens of Cetraria commixta. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Supplementary material 1 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure S1
Figure 5 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 5 Haplotype network, based on ITS rDNA sequences from specimens of Melanelia stygia. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 9 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 9 Melanelia stygia specimens treated AM. stygia, AMNH 28243 (Iceland) BM. stygia, AMNH 16894 (Iceland) CM. stygia, C 19893 (Greenland) DM. stygia, C 19893 (Greenland) EM. stygia, Szczepańska 1160, WRSL (Poland) FM. stygia, Szczepańska 737, WRSL (Austria). Scale bars: 0.5 cm (A, C, E);1 mm (B, D); 0.5 mm (F).
Figure 4 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 4 Haplotype network, based on ITS rDNA sequences from specimens of Melanelia hepatizon. Newly-generated sequences are described with isolate numbers preceding the species names. Sequences downloaded from GenBank are described with their accession numbers. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 8 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 8 Melanelia agnata specimens treated AMelanelia agnata H-NYL 36086 (holotype) BMelanelia agnata, H-NYL 36086 (holotype) CM. agnata, AMNH 27562 (Iceland) DM. agnata, AMNH 30974 (Iceland) EM. agnata, C 19019 (Greenland) FM. agnata, C 19019 (Greenland) GM. agnata, Szczepańska 1050, WRSL (Poland) HM. agnata, Szczepańska 1050, WRSL (Poland). Scale bars: 0.5 cm (A, C, E, G); 0.5 mm (B, D, F); 1 mm (H).
Figure 1 from: Szczepańska K, Guzow-Krzemińska B, Urbaniak J (2021) Infraspecific variation of some brown Parmeliae (in Poland) – a comparison of ITS rDNA and non-molecular characters. MycoKeys 85: 127-160. https://doi.org/10.3897/mycokeys.85.70552
Figure 1 Phylogenetic relationships of Melanelia spp., based on Bayesian analysis of the ITS rDNA dataset. Posterior probabilities and Maximum Likelihood bootstrap values are shown near the internal branches. Newly-generated sequences are additionally described with isolate numbers following the species names and are marked in bold. GenBank accession numbers of sequences downloaded from GenBank are listed on the tree with species names.
Fig. 3 in Another example of cryptic diversity in lichen-forming fungi: the new species Parmelia mayi (Ascomycota: Parmeliaceae)
Fig. 3 Parmelia mayi habit (MAF-Lich 15767-holotype) (Scale = 2 mm)
Biosynthetic Gene Cluster Synteny - Orthologous Polyketide Synthases in Hypogymnia physodes, Hypogymnia tubulosa and Parmelia sulcata
<p>Supplementary Material of Publication</p>
Figure 8 from: Ossowska E, Guzow-Krzemińska B, Kolanowska M, Szczepańska K, Kukwa M (2019) Morphology and secondary chemistry in species recognition of Parmelia omphalodes group – evidence from molecular data with notes on the ecological niche modelling and genetic variability of photobionts. MycoKeys 61: 39-74. https://doi.org/10.3897/mycokeys.61.38175
Figure 8 Distribution of suitable niches of P. omphalodes (A) and P. pinnatifida (B) in America.
Fig. 2 ITS phylogeny and genetic distances from the 13 in DNA barcoding of brown Parmeliae (Parmeliaceae) species: a molecular approach for accurate specimen identification, emphasizing species in Greenland
Fig. 2 ITS phylogeny and genetic distances from the 13 brown Pakmeliae species occurring in Greenland. a Cartoon representation of the maximum likelihood ITS topology obtained from 372 brown Pakmeliae specimens. Values at each node indicate non-parametric bootstrap support; only support values>50% are shown (complete ITS topology is shown in Supplementary Figure, S1). b Box plots of ITS genetic distances estimated for each species and all interspecific distances. 'CO' =Cetkakiella commixta; 'AG' =Melaielia agiata; 'HE' = M. hepatizoi; 'ST' = M. stygia; 'EL' = Melaiohalea elegaitula; 'EX' = M. exaspekatula; 'IN' = M. iifumata; 'OL' =M. olivacea; 'SE' =M. septeitkioialis; 'DI' =Moitaielia disjuicta; 'PA' = M.
Fig. 1 in DNA barcoding of brown Parmeliae (Parmeliaceae) species: a molecular approach for accurate specimen identification, emphasizing species in Greenland
Fig. 1 Brown Pakmeliae species occurring in Greenland. a – d Cetrarioid clade: a Cetkakiella commixta; b Melaielia agiata; c Melaielia hepatizoi; d Melaielia stygia. e – h The genus Melaiohalea: e Melaiohalea elegaitula; f Melaiohalea exaspekatula; g Melaiohalea iifumata; h Melaiohalea olivacea. i – l The genus Moitaielia: i
Fig. 2 in Another example of cryptic diversity in lichen-forming fungi: the new species Parmelia mayi (Ascomycota: Parmeliaceae)
Fig. 2 Climate diagram of the selected localities of P. mayi (a) and P. saxatilis (b) from USA. Solid line, average temperature; dotted line, precipitation. Date source: http://www.globalbioclimatics.org
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