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27 results for “Eurotiomycetes”
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 2 in Cylindroconidiis aquaticus gen. et sp. nov., a new lineage of aquatic hyphomycetes in Sclerococcaceae (Eurotiomycetes)
FIGURE 2.Cylindroconidiis aquaticus (holotype, MFLU 11–1070) a–j From natural substrate. a, b Colonies. c Conidiophores bearing conidia. d Conidiogenous cells with pleurogenic conidia. e Conidiogenous cells with acrogenous conidia. f–j Conidia. k Germinating conidium. l Colony on PDA (from front). m Colony on PDA (from reverse). n–v From PDA. n Conidiophores bearing conidia. o, r, s Conidiogenous cells with pleurogenic conidia. p, q Conidiogenous cells with acrogenous conidia. t Conidiogenous cells. u–v Conidia. Scale bars: c, n = 50 μm, d, s = 25 μm, e, o, r, t = 20 μm, f–k, p–q, u–v = 10 μm.
FIGURE 2. Elaphomyces readii. A in Elaphomyces readii (Elaphomycetaceae, Eurotiomycetes), a new medicinal species of hypogeous fungus with biocultural importance from Mexico
FIGURE 2. Elaphomyces readii. A. Fresh ascomata in different stages (Holotype). B. Large collection from one market seller. C. Mixtec woman selling fresh ascomata (right) and red corals from the Pacific Ocean (left) with medicinal purposes in a Mexican traditional market. D. Exoperidium. E. Mesoperidium. F. Endoperidium. G. Mature ascospores. H. Asci. I. Detail of the ascospore ornamentation under SEM. Scale bars: A and B= 20 mm; D= 20 µm; E-H=10 µm.
FIGURE 1 in Elaphomyces readii (Elaphomycetaceae, Eurotiomycetes), a new medicinal species of hypogeous fungus with biocultural importance from Mexico
FIGURE 1. Maximum likelihood phylogeny based on the nrITS sequences data. Maximum parsimony and Bayesian analyses recovered identical topologies with respect to the relationships among the main clades of the Elaphomyces. For each node, the following values are provided: posterior confidence (p-value) / maximum parsimony bootstrap (%) and maximum likelihood bootstrap (%). The scale bar represents the expected number of nucleotide substitutions per site. The new species Elaphomyces section Elaphomyces is shown in bold.
Supplementary material 1 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figures S1–S9
Figure 7 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 7 Phylogenetic tree of Penicillium section Gracilenta based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. abidjanumCBS 246.67. The name in red is the new species described in this study. T = Ex-type strain.
Figure 5 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 5 Phylogenetic tree of Penicillium section Exilicaulis based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. oxalicumCBS 219.30. The name in green is the strain of P. heteromorphum included in this study. T= Ex-type strain.
Figure 4 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 4 Phylogenetic tree of Penicillium section Canescentia based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. sacculumCBS 231.61 and P. senticosumCBS 316.67. The name in red is the new species described in this study. T= Ex-type strain.
Figure 2 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 2 Phylogenetic tree of Penicillium section Robsamsonia based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. paradoxumCBS 527.65 and P. malodoratumCBS 490.65. The name in red is the new species described in this study. T= Ex-type strain.
Figure 15 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 15 Morphological characters of Penicillium tardochrysogenum (FMR 17137). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB–E conidiophores on MEAF conidia. Scale Bars: 25 μm (B), 10 μm (C–F).
Figure 6 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 6 Phylogenetic tree of Penicillium section Lanata-Divaricata based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. restrictumCBS 367.48 and P. corylophilumCBS 312.48. The name in red is the new species described in this study. T= Ex-type strain.
Figure 14 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 14 Morphological characters of Penicillium submersum sp. nov. (ex-type FMR 17140). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB–F conidiophores on MEAG conidia. Scale Bars: 25 μm (B), 10 μm (C–G).
Figure 16 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 16 Morphological characters of Penicillium vaccaeorum (FMR 17967). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB–E conidiophores on MEAF conidia. Scale Bars: 25 μm (B), 10 μm (C–F).
Figure 9 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 9 Morphological characters of Penicillium ausonanum sp. nov. (ex-type FMR 16948). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB colony on OA under stereoscopic magnifying glass C–H conidiophores I conidia. Scale Bars: 25 μm (C), 10 μm (D–I).
Figure 12 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 12 Morphological characters of Penicillium irregulare sp. nov. (ex-type FMR 17859). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB–G conidiophores on MEAH conidia. Scale Bars: 10 μm (B–H).
Figure 1 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 1 Phylogenetic tree of Penicillium section Chrysogena based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA and ITS loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. turbatumCBS 237.60 and P. bovifimosumCBS 102825. The name in green is the strain of P. tardochrysogenum included in this study. T= Ex-type strain.
Figure 11 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 11 Morphological characters of Penicillium heteromorphum (FMR 18043). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB, C, F conidiophores on OA. D, E conidiophores on Czapek's Agar G–H conidia. Scale Bars: 25 μm (B), 10 μm (C–H).
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International Brain Laboratory public data
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OpenNeuro
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