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Supplementary material 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 S3. Result of the ASAP species delimitation analysis
Supplementary material 6 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 S6. Results of PTP species delimitation analyses
Figure 7 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 7 Erioscyphella insulaeTNS-F-39720 (Holotype) A dried apothecia B a pure culture on PDA (NBRC 114459) C asci D ascal pore MLZ (+) E ascospores F ascogenous hyphae G paraphyses H layer structures of excipulum H1 medullary excipulum H2 inner layer of ectal excipulum composed of hyphae H3 outer layer of ectal excipulum composed of textura angularisI, J hairs with apical amorphous materials. Mounted in CB/LA (C, E–J), MLZ (D). Scale bars: 1 mm (A); 10 µm (A–J).
Figure 6 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 6 Erioscyphella boninensisTNS-F-26520 (Holotype) A ascospores B apothecium C vertical section of an apothecium D expansion of a vertical section of an apothecium E ectal excipular cells F asci G paraphyses H hairs.
Figure 14 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 14 Erioscyphella paralushanensisTNS-F-61920 (Holotype) A apothecia B vertical section of an apothecium C expansion of an vertical section of an apothecium D asci E hairs F ectal excipulum G paraphyses H ascospores.
Figure 13 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 13 Erioscyphella paralushanensisTNS-F-61920 (Holotype) A apothecia B pure culture on PDA (NBRC 114468) C ascus D ascal pore iodine reactions D1MLZ (faintly +) without 3% KOH pretreatment D2MLZ (+) with 3% KOH pretreatment D3 IKI (+) without 3% KOH pretreatment E paraphysis F ascospores G ectal excipular cells H marginal section of an apothecium generating hairs I hairs with red resinous materials J apical amorphous materials of hairs. Mounted in CB/LA (C, E–J), MLZ (D1, D2), IKI (D3). Scale bars: 0.5 mm (A); 10 µm (C–J).
Supplementary material 4 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 S4. Result of the GMYC species delimitation analysis
Figure 10 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 10 Erioscyphella otaniiTNS-F-81472 (Holotype) A ascospores B apothecium C vertical section of an apothecium D hairs with cap-like structures arising from ectal excipular cells E expansion of a vertical section of an apothecium F paraphyses G asci.
Figure 5 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 5 Erioscyphella boninensisTNS-F-26520 (Holotype) A dried apothecia B pure culture on PDA (NBRC 114447) C ascus D ascal pore MLZ (+) E ascospores F paraphyses G ectal excipular cells H ectal excipular cells with red granules I hairs with resinous matters arising from ectal excipular cells. Mounted in CB/LA (C, E–I), MLZ (D). Scale bars: 1 mm (A); 10 µm (C–I).
Supplementary material 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 S2. Hair apices
Figure 12 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 12 Erioscyphella papillarisTNS-F-81272 (Holotype) A apothecium B vertical section of an apothecium C ascospores D expansion of an vertical section of an apothecium E ectal excipular cells F asci G paraphyses H hairs with cap-like structures.
Figure 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 1 ML best-scored phylogenetic tree based on the concatenated dataset of ITS, LSU, mtSSU, and RPB2 constructed using RAxML-NG. MLBP/MPBP/BPP are represented on branches in this order. In MLBP/MPBP < 50% or BPP < 0.95, a hyphen appears. No evaluation values are shown on branches when MLBP and MPBP < 50% and BPP < 0.95. The branch of a clade TNS-F-17245 + 17249 to its most recent common ancestor is only one-third of the intended length due to space limitation.
Figure 11 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 11 Erioscyphella papillarisTNS-F-81272 (Holotype) A dried apothecia B pure culture on PDA (NBRC 113937) C Ascus arising from ascogenous hyphae D an ascus E ascal pore iodine reactions E1MLZ (-) without 3% KOH pretreatment E2MLZ (-) with 3% KOH pretreatment E3 IKI (+) without 3% KOH pretreatment F paraphysis G ascospores with guttules H ectal excipulum I hair-apex with a apical amorphous material J hairs. Mounted in CB/LA (C, D, F–J), MLZ (E1, E2), IKI (E3). Scale bars: 0.5 mm (A); 10 µm (C–J).
Figure 16 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 16 Erioscyphella sasibrevisporaTNS-F-81401 (Holotype A–D, F, G). Lachnum novoguineense var. yunnanicumTNS-F-16642 (E) A apothecium B vertical section of an apothecium C ascospores D asci (with basal structures sometimes with perforation) E ascal base arising from a crozier with perforation F paraphyses G ectal excipular cells H hairs.
Figure 4 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 4 Comparison of ascospores of Clade A (= Erioscyphella) and the clade of Lachnum sensu stricto in Fig. 1. Subclade numbers for members of Clade A in Fig. 1 are shown in parentheses. Bars show variation of ascospore length within each species.
Figure 9 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 9 Erioscyphella otaniiTNS-F-81472 (Holotype) A dried apothecia B pure culture on PDA (NBRC 114476) C asci D ascal pore MLZ (+) E ascospore F paraphyses G a hair H hair-apex with a apical amorphous material I ectal excipular cells. Mounted in CB/LA (C, E–I), MLZ (D). Scale bars: 0.5 mm (A); 10 µm (C–I).
Figure 8 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 8 Erioscyphella insulaeTNS-F-39720 (Holotype) A expansion of a vertical section of an apothecium B ascospores C apothecium D vertical section of an apothecium E asci F paraphyses G layer structures of excipulum.
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
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