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74 results for “Helotiales”
Figure 3 from: Tochihara Y, Hosoya T (2022) Examination of the generic concept and species boundaries of the genus Erioscyphella (Lachnaceae, Helotiales, Ascomycota) with the proposal of new species and new combinations based on the Japanese materials. MycoKeys 87: 1-52. https://doi.org/10.3897/mycokeys.87.73082
Figure 3 Species delimitation analyses using ITS sequences of Erioscyphella and its potential members. Clusters based on UNITE SH at 3% and 1.5% threshold values at UNITE v8.2, VSEARCH at 97% and 98.5% threshold values, ASAP, GMYC, and PTP are displayed. Schematic phylogenetic relationships are shown using the ultrametric tree constructed for the GMYC analysis. The taxon names shown on the tree branches follow the results of the present study.
Figure 15 from: Tochihara Y, Hosoya T (2022) Examination of the generic concept and species boundaries of the genus Erioscyphella (Lachnaceae, Helotiales, Ascomycota) with the proposal of new species and new combinations based on the Japanese materials. MycoKeys 87: 1-52. https://doi.org/10.3897/mycokeys.87.73082
Figure 15 Erioscyphella sasibrevisporaTNS-F-81401 (Holotype, A–F, H–J). Lachnum novoguineense var. yunnanicumTNS-F-16442 (G) A dried apothecia B a pure culture on PDA (NBRC 114475) C ectal excipular cells D ascus E an ascal pore MLZ (+) F ascal base with a perforated crozier G ascal base with a perforated crozier H septated paraphyses I ascospores J vertical section through the apothecium. Mounted in CB/LA (D, F–J), MLZ (E). Scale bars: 1 mm (A); 10 µm (C–J).
Supplementary material 1 from: Tochihara Y, Hosoya T (2022) Examination of the generic concept and species boundaries of the genus Erioscyphella (Lachnaceae, Helotiales, Ascomycota) with the proposal of new species and new combinations based on the Japanese materials. MycoKeys 87: 1-52. https://doi.org/10.3897/mycokeys.87.73082
Figure S1. ML trees
Figure 3 from: Haelewaters D, Filippova NV, Baral H-O (2018) A new species of Stamnaria (Leotiomycetes, Helotiales) from Western Siberia. MycoKeys 32: 49-63. https://doi.org/10.3897/mycokeys.32.23277
Figure 3 A1 Young living paraphysis with multiguttulate, medium refractive vacuolar content (VBs), A2 Mature living paraphysis with large non-refractive vacuoles A3 Dead paraphysis with small oil drops (LBs), vacuoles disappeared B Paraphyses of cylindrical and lanceolate type C Mature living asci D Mature ejected ascospores with granular lipid content of minute LBs (confluent in dead state) E Ascus bases with croziers F Apices of mature and immature ascus (stained in IKI). All * and F from YSU-F-04933, all other † from YSU-F-00097. Scale bars: A, D, E, F 10 μm, B, C 20 μm.
Figure 2 from: Haelewaters D, Filippova NV, Baral H-O (2018) A new species of Stamnaria (Leotiomycetes, Helotiales) from Western Siberia. MycoKeys 32: 49-63. https://doi.org/10.3897/mycokeys.32.23277
Figure 2 Apothecia of Stamnaria yugrana on side branches of Equisetum sylvaticum: A Apothecia grown in situ under well-lit conditions B Apothecia grown in shady conditions after incubation in a moist chamber C Median section through an apothecium after incubation in a moist chamber (dead, in CR). A from YSU-F-03519, B from YSU-F-04933, C from YSU-F00097. Scale bars: A 1.0 mm, B, C 0.5 mm.
Figure 5 from: Haelewaters D, Filippova NV, Baral H-O (2018) A new species of Stamnaria (Leotiomycetes, Helotiales) from Western Siberia. MycoKeys 32: 49-63. https://doi.org/10.3897/mycokeys.32.23277
Figure 5 Bayesian MCC tree, with node values indicating posterior probabilities (above) and MP/ML bootstrap values (below). Thick branches indicate maximum Bayesian support (pp = 1.0). Photos of apothecia (left) and drawings of ascospores (right) from top to bottom: S. yugrana, holotype, YSU-F-03519, Russia, 9 Jun 2012; S. persoonii, Gilbert Moyne, H.B. 8889, France, 24.VI.2008; S. americana, Claude Page, France, 7 Apr 2016 (first French report in Moingeon and Page 2003). Scale bar: 20 µm.
Figure 1 from: Haelewaters D, Filippova NV, Baral H-O (2018) A new species of Stamnaria (Leotiomycetes, Helotiales) from Western Siberia. MycoKeys 32: 49-63. https://doi.org/10.3897/mycokeys.32.23277
Figure 1 Study site of Stamnaria yugrana growing on litter of Equisetum sylvaticum in Western Siberia near the Khanty-Mansiysk town.
Figure 4 from: Haelewaters D, Filippova NV, Baral H-O (2018) A new species of Stamnaria (Leotiomycetes, Helotiales) from Western Siberia. MycoKeys 32: 49-63. https://doi.org/10.3897/mycokeys.32.23277
Figure 4 A Median section through receptacle, showing gelatinised outer layer of ectal excipulum B Median section through stipe, showing outer gelatinised layer, inner layer of textura porrecta (orange) and transition to medullary excipulum C Medullary excipulum in squash mount D Inner part of collar in squash mount showing hyphae forming outgrowths (single hyphae shown in insert) E Ectal excipulum of textura prismatica at receptacle flank in squash mount (outer layer absent). All stained by CR in water (cells partly in vital state), from YSU-F-04933. Scale bars: 10 μm.
Text-fig. 6. Original material of Peziza sulphurea (syntype L 910,256-897), the substrate with location of apothecia of two species. 1. apothecia which do produce a purple reaction to KOH; 2. apothecia which do not produce a purple reaction to KOH. in A Revision Of Trichopeziza Lizonii, T. Sulphurea And T. Violascens (Ascomycota, Helotiales) From The Herbarium Prm With Notes On Type Material Of Peziza Sulphurea
Text-fig. 6. Original material of Peziza sulphurea (syntype L 910,256-897), the substrate with location of apothecia of two species. 1. apothecia which do produce a purple reaction to KOH; 2. apothecia which do not produce a purple reaction to KOH.
Text-fig. 7. Original material of Peziza sulphurea. A-B. apothecia in the specimen L 910,261-594; C. apothecia which do produce a purple reaction to KOH in the specimen L 910,256-897; D. apothecia which do not produce a purple reaction to KOH in the specimen L 910,256-897. Scale bars = 1 mm. in A Revision Of Trichopeziza Lizonii, T. Sulphurea And T. Violascens (Ascomycota, Helotiales) From The Herbarium Prm With Notes On Type Material Of Peziza Sulphurea
Text-fig. 7. Original material of Peziza sulphurea. A-B. apothecia in the specimen L 910,261-594; C. apothecia which do produce a purple reaction to KOH in the specimen L 910,256-897; D. apothecia which do not produce a purple reaction to KOH in the specimen L 910,256-897. Scale bars = 1 mm.
Text-fig. 2. Trichopeziza lizonii (PRM 758484, holotype). a. hairs; b. ascospores; c. young ascus with crozier; d. ascus; e. paraphyses. Scale bars: a, b-e = 10 µm. in A Revision Of Trichopeziza Lizonii, T. Sulphurea And T. Violascens (Ascomycota, Helotiales) From The Herbarium Prm With Notes On Type Material Of Peziza Sulphurea
Text-fig. 2. Trichopeziza lizonii (PRM 758484, holotype). a. hairs; b. ascospores; c. young ascus with crozier; d. ascus; e. paraphyses. Scale bars: a, b-e = 10 µm.
Text-fig. 1. Apothecia in dried state. A-B. Trichopeziza lizonii (PRM 758484, holotype); C-D. Trichopeziza sulphurea (C. PRM 611885; D. PRM 672828, epitype); E-H. Trichopeziza violascens (E. PRM 622536; F. PRM 668773; G-H. 915197). Scale bars = 1 mm. in A Revision Of Trichopeziza Lizonii, T. Sulphurea And T. Violascens (Ascomycota, Helotiales) From The Herbarium Prm With Notes On Type Material Of Peziza Sulphurea
Text-fig. 1. Apothecia in dried state. A-B. Trichopeziza lizonii (PRM 758484, holotype); C-D. Trichopeziza sulphurea (C. PRM 611885; D. PRM 672828, epitype); E-H. Trichopeziza violascens (E. PRM 622536; F. PRM 668773; G-H. 915197). Scale bars = 1 mm.
Comparative genomics of different lifestyle fungi in Helotiales (Leotiomycetes) reveals temperature and ecosystem adaptations
<p>Paper "<span>Comparative genomics of different lifestyle fungi in Helotiales (Leotiomycetes) reveals temperature and ecosystem adaptations</span>". Supplementary files</p>
Figure 2 from: Tochihara Y, Hosoya T (2022) Examination of the generic concept and species boundaries of the genus Erioscyphella (Lachnaceae, Helotiales, Ascomycota) with the proposal of new species and new combinations based on the Japanese materials. MycoKeys 87: 1-52. https://doi.org/10.3897/mycokeys.87.73082
Figure 2 Diagrammatic representation showing the species delimitation analyses using ITS sequences.
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