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218 results for “Pleosporales”
Figure 3 from: Phookamsak R, Hongsanan S, Bhat DJ, Wanasinghe DN, Promputtha I, Suwannarach N, Kumla J, Xie N, Dawoud TM, Mortimer PE, Xu J, Lumyong S (2024) Exploring ascomycete diversity in Yunnan II: Introducing three novel species in the suborder Massarineae (Dothideomycetes, Pleosporales) from fern and grasses. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 9-50. https://doi.org/10.3897/mycokeys.104.112149
Figure 3 Phylogram of the best-scoring ML consensus tree of taxa in Periconiaceae and the closely-related families Lentitheciaceae and Massarinaceae. The new isolate is indicated in blue. Isolates from type materials are in bold. The ML ultrafast bootstrap and Bayesian PP values greater than 50% and 0.95 are shown at the nodes.
Figure 4 from: Phookamsak R, Hongsanan S, Bhat DJ, Wanasinghe DN, Promputtha I, Suwannarach N, Kumla J, Xie N, Dawoud TM, Mortimer PE, Xu J, Lumyong S (2024) Exploring ascomycete diversity in Yunnan II: Introducing three novel species in the suborder Massarineae (Dothideomycetes, Pleosporales) from fern and grasses. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 9-50. https://doi.org/10.3897/mycokeys.104.112149
Figure 4 Bambusicola hongheensis (KUN-HKAS 129042, holotype) A the appearance of ascomata on the host surface B vertical section of an ascoma C, D peridia E pseudoparaphyses F, G asci embedded in pseudoparaphyses H–K ascospores L, M ascospores stained in India Ink show a thin mucilaginous sheath surrounding ascospores. Scale bars: 100 μm (B); 20 μm (C–G); 10 μm (H–M).
Figure 2 from: Isocrono D, Ravera S (2024) Typification of the name Arthopyrenia parolinii Beltr. (Ascomycota, Dothideomycetes, Pleosporales, Arthopyreniaceae). In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 1-8. https://doi.org/10.3897/mycokeys.104.109420
Figure 2 Exsiccata of Arthopyrenia parolinii Beltramini from M Lichen herbarium (M-0207340) registered as "Type Material" A the original label from Arnold personal herbarium B a fragment of linden bark, colonized by the lichen, glued to the herbarium sheet with the name of the species accredited to Beltramini and a few notes written by Massalongo.
Figure 6 from: Phookamsak R, Hongsanan S, Bhat DJ, Wanasinghe DN, Promputtha I, Suwannarach N, Kumla J, Xie N, Dawoud TM, Mortimer PE, Xu J, Lumyong S (2024) Exploring ascomycete diversity in Yunnan II: Introducing three novel species in the suborder Massarineae (Dothideomycetes, Pleosporales) from fern and grasses. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 9-50. https://doi.org/10.3897/mycokeys.104.112149
Figure 6 Periconia kunmingensis (KUN-HKAS102239, holotype) A, B the appearance of fungal colonies on host substrate C–E conidiophores F, G closed-up conidiophores with spherical heads H, I conidiogenous cells bearing conidia J conidia catenate in acropetal short chain K–P conidia. Scale bars: 500 µm (A, B); 50 µm (C–E); 20 µm (F, G); 10 µm (J); 5 µm (H, I, K–P).
Figure 1 from: Isocrono D, Ravera S (2024) Typification of the name Arthopyrenia parolinii Beltr. (Ascomycota, Dothideomycetes, Pleosporales, Arthopyreniaceae). In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 1-8. https://doi.org/10.3897/mycokeys.104.109420
Figure 1 Exsiccata of Arthopyrenia parolinii Beltramini from the lichen herbarium of A.B. Massalongo in VERA fragment of linden bark, colonized by the lichen and glued to the herbarium sheet with the name of the species and note "Herb. Beltramini" written by Massalongo in black ink, and the locality of collection, in red ink, written by Beltramini B detail of thallus and perithecia in surface view. Scale bar: 1 mm.
Figure 1 from: Sun Y-R, Liu N-G, Hyde KD, Jayawardena RS, Wang Y (2022) Pleocatenata chiangraiensis gen. et. sp. nov. (Pleosporales, Dothideomycetes) from medicinal plants in northern Thailand. MycoKeys 87: 77-98. https://doi.org/10.3897/mycokeys.87.79433
Figure 1 Maximum likelihood tree generated by IQ-Tree, based on analysis of a combined dataset of LSU, SSU, tef1-α, rpb2 and ITS sequence data. Bootstrap support values for ML greater than 75% and Bayesian posterior probabilities greater than 0.95 are given near nodes, respectively. Ex-type strains are in bold, the new isolates are in red.
Figure 2 from: Sun Y-R, Liu N-G, Hyde KD, Jayawardena RS, Wang Y (2022) Pleocatenata chiangraiensis gen. et. sp. nov. (Pleosporales, Dothideomycetes) from medicinal plants in northern Thailand. MycoKeys 87: 77-98. https://doi.org/10.3897/mycokeys.87.79433
Figure 2 Pleocatenata chiangraiensis (MFLU 22-0002, holotype) a host (Tarenna stellulata) b, c colonies on natural substrate d, e conidiophores with conidia f conidiogenous cells g–k conidia l germinated conidium m, n colonies on PDA (upper view and lower view). Scale bars: 1 mm (b); 100 μm (c); 20 μm (d–l).
Figure 3 from: Phukhamsakda C, Bhat DJ, Hongsanan S, Xu J-C, Stadler M, Hyde KD (2018) Two novel species of Neoaquastroma (Parabambusicolaceae, Pleosporales) with their phoma-like asexual morphs. MycoKeys 34: 47-62. https://doi.org/10.3897/mycokeys.34.25124
Figure 3 Neoaquastroma krabiense (MFLU 17-0003, holotype) a Barringtonia acutangula (L.) Gaertn specimens b Appearance of ascomata on host surface c Close up of ascomata d Ascomata forming on rice straw on WA after 8 weeks e, f Section of ascoma g Ostiolar canal h Section of partial peridium layer i Hyaline pseudoparaphyses j–m Asci n–s Hyaline ascospores with visible mucilaginous sheath q Ascospores stained in Indian ink to show sheath u Germinated ascospore v, w Culture characteristics on MEA x, y Conidiomata forming in culture after 8 weeks z Conidiomatal wall aa–ad Conidiogenous cells and developing conidia ae Conidia n–p Ascospores in 5% of KOH reagent m, r Asci and ascospore in culture (on rice straw). Scale bars: 500 µm (c–e); 200 µm (f, x); 50 µm (g–m, y), 20 µm (n–u, z); 5 µm (aa-af); 20 mm (v–w).
Figure 2 from: Phukhamsakda C, Bhat DJ, Hongsanan S, Xu J-C, Stadler M, Hyde KD (2018) Two novel species of Neoaquastroma (Parabambusicolaceae, Pleosporales) with their phoma-like asexual morphs. MycoKeys 34: 47-62. https://doi.org/10.3897/mycokeys.34.25124
Figure 2 Neoaquastroma bauhiniae (MFLU 17-0002, holotype) a Appearance of ascomata on host surface b Close up of ascoma c Section of ascoma d Ostiolar canal e Section of partial peridium layer f Pseudoparaphyses g–j Development state of asci j Asci produced in culture k–p Development state of ascospores; (n, o Senescent spores m, p ascospores in 5% of KOH reagent); q Ascospores stained with India ink, sheath surrounding the entire ascospore r Germinated ascospore s, t Culture character on MEA u Conidiomata forming on agar on rice straw media after 8 weeks v Immature conidiomata w Conidiomatal wall x, y Conidiogenous cells and developing conidia z Conidia j, m Asci and ascospore in culture (on rice straw). Scale bars: 500 µm (b); 100 µm (c, v); 50 µm (d–j); 20 µm (k–r, w); 5 µm (x–z).
Figure 1 from: Phukhamsakda C, Bhat DJ, Hongsanan S, Xu J-C, Stadler M, Hyde KD (2018) Two novel species of Neoaquastroma (Parabambusicolaceae, Pleosporales) with their phoma-like asexual morphs. MycoKeys 34: 47-62. https://doi.org/10.3897/mycokeys.34.25124
Figure 1 The best scoring RAxML tree based on a combined partial LSU, SSU, ITS and tef1 gene datasets. Bootstrap values (BS) from maximum likelihood (ML, left) of more than 70% BS and Bayesian posterior probabilities (PP, right) greater than 0.90 are given above or below the nodes. The tree is rooted with Corynespora smithii (CABI 5649b) and C. cassiicola (CBS 100822) in Corynesporaceae. The species, determined in this study, are indicated in blue. The ex-type and references strains are indicated in bold. Hyphens (-) represent support values less than 70% BS/0.90 PP. Thick branches represent significant support values from all analyses (BS ≥ 70%/PP ≥ 0.95).
Figure 5 from: Iturrieta-González I, Gené J, Guarro J, Castañeda-Ruiz RF, García D (2018) Neodendryphiella, a novel genus of the Dictyosporiaceae (Pleosporales). MycoKeys 37: 19-38. https://doi.org/10.3897/mycokeys.37.27275
Figure 5 - Dendryphiella variabilis sp. nov. (ex-type CBS 584.96). A–E Colonies on A PDA B PCA C SNA D OA E MEA at 25 °C after 14 d F Exudates and conidiophores produced on OA G–K Conidiophores and conidia. Scale bars: 50 µm (G–H), 10 µm (I–K).
Figure 4 from: Iturrieta-González I, Gené J, Guarro J, Castañeda-Ruiz RF, García D (2018) Neodendryphiella, a novel genus of the Dictyosporiaceae (Pleosporales). MycoKeys 37: 19-38. https://doi.org/10.3897/mycokeys.37.27275
Figure 4 - Neodendryphiella tarraconensis sp. nov. (ex-type FMR 16234). A–E Colonies on A PDA B PCA C SNA D OA E MEA at 25 °C after 14 d F–K Conidiophores and conidia. Scale bars:10 µm (G–K).
Figure 1 from: Iturrieta-González I, Gené J, Guarro J, Castañeda-Ruiz RF, García D (2018) Neodendryphiella, a novel genus of the Dictyosporiaceae (Pleosporales). MycoKeys 37: 19-38. https://doi.org/10.3897/mycokeys.37.27275
Figure 1 - Maximum Likelihood (ML) tree constructed with the ITS and LSU sequences of 30 strains representatives of different taxa in the families Dictyosporiaceae and Pleosporaceae . The phylogenetic tree was rooted with Paradendryphiella arenaria and P. salina . Bootstrap support values for ML greater than 70% and Bayesian posterior probabilities greater than 0.95 are given near nodes, respectively. Names of species newly described here are indicated in bold. Branch lengths are proportional to distance. T Ex-type strain.
Figure 3 from: Iturrieta-González I, Gené J, Guarro J, Castañeda-Ruiz RF, García D (2018) Neodendryphiella, a novel genus of the Dictyosporiaceae (Pleosporales). MycoKeys 37: 19-38. https://doi.org/10.3897/mycokeys.37.27275
Figure 3 - Neodendryphiella michoacanensis sp. nov. (ex-type FMR 16098). A–E Colonies on A PDA B PCA C SNA D OA E MEA at 25 °C after 14 d F–J Conidiophores and conidia. Scale bars: 10 µm (G–J).
Figure 2 from: Iturrieta-González I, Gené J, Guarro J, Castañeda-Ruiz RF, García D (2018) Neodendryphiella, a novel genus of the Dictyosporiaceae (Pleosporales). MycoKeys 37: 19-38. https://doi.org/10.3897/mycokeys.37.27275
Figure 2 - Neodendryphiella mali sp. nov. (ex-type CBS 139.95). A–E Colonies on A PDA B PCA C SNA D OA E MEA at 25 °C after 14 d F–K Conidiophores and conidia. Scale bars: 10 µm (F–K).
Figure 1 from: Senanayake IC, Jeewon R, Camporesi E, Hyde KD, Zeng Y-J, Tian S-L, Xie N (2018) Sulcispora supratumida sp. nov. (Phaeosphaeriaceae, Pleosporales) on Anthoxanthum odoratum from Italy. MycoKeys 38: 35-46. https://doi.org/10.3897/mycokeys.38.27729
Figure 1 Maximum likelihood majority rule consensus tree based on a combined dataset of ITS, LSU, SSU and tef-1 sequences. Bootstrap support values ≥50% and Bayesian inference (BI) ≥0.9 are given at the nodes. The tree is rooted to Didymellaexigua (CBS 183.55). The culture accession numbers are given after the species names. All ex-type strains are in bold. The newly introduced species from this study is in bold red.
Figure 2 from: Senanayake IC, Jeewon R, Camporesi E, Hyde KD, Zeng Y-J, Tian S-L, Xie N (2018) Sulcispora supratumida sp. nov. (Phaeosphaeriaceae, Pleosporales) on Anthoxanthum odoratum from Italy. MycoKeys 38: 35-46. https://doi.org/10.3897/mycokeys.38.27729
Figure 2 Sulcisporasupratumida (MFLU 15–0038). a Leaves of Anthoxanthumodoratumb Appearance of ascomata on host surface c Cross section of ascoma d Peridium e Pseudoparaphyses f–i Asci j–nAscosporeso Upper surface of the culture p Lower surface of the culture. Scale bars: 200 µm (b), 50 µm (c), 20 µm (d–i), 10 µm (j–n).
Figure 2 from: Yang C-L, Xu X-L, Wanasinghe DN, Jeewon R, Phookamsak R, Liu Y-G, Liu L-J, Hyde KD (2019) Neostagonosporella sichuanensis gen. et sp. nov. (Phaeosphaeriaceae, Pleosporales) on Phyllostachys heteroclada (Poaceae) from Sichuan Province, China. MycoKeys 46: 119-150. https://doi.org/10.3897/mycokeys.46.32458
Figure 2 Neostagonosporellasichuanensis (MFLU 18-1212, holotype). a аppearance of ascostromata on host b ascostroma c, d vertical section of ascostroma e, f close up of ascoma g peridium h trabeculate pseudoparaphyses and asci i–k asci l bitunicate asci, note ocular chamber m, n, q, r ascospores with mucilaginous sheath o, s germinated ascospores in lactate cotton blue reagent p, t colonies on PDA (p-from above, t-from below). Scale bars: 1 cm (a); 1 mm (b); 200 μm (c, d); 100 μm (e, f); 20 μm (g–k); 10 μm (l–o, q–s).
Figure 3 from: Yang C-L, Xu X-L, Wanasinghe DN, Jeewon R, Phookamsak R, Liu Y-G, Liu L-J, Hyde KD (2019) Neostagonosporella sichuanensis gen. et sp. nov. (Phaeosphaeriaceae, Pleosporales) on Phyllostachys heteroclada (Poaceae) from Sichuan Province, China. MycoKeys 46: 119-150. https://doi.org/10.3897/mycokeys.46.32458
Figure 3 Neostagonosporellasichuanensis (MFLU 18-1220, paratype). a appearance of conidiomata on host b, c vertical section of conidioma d pycnidia e peridium f, g conidiogenous cells and developing conidia h–l conidia m germinated conidium. Scale bars: 1 cm (a); 200 μm (b–d); 20 μm (e, f); 10 μm (g–m).
Figure 1 from: Yang C-L, Xu X-L, Wanasinghe DN, Jeewon R, Phookamsak R, Liu Y-G, Liu L-J, Hyde KD (2019) Neostagonosporella sichuanensis gen. et sp. nov. (Phaeosphaeriaceae, Pleosporales) on Phyllostachys heteroclada (Poaceae) from Sichuan Province, China. MycoKeys 46: 119-150. https://doi.org/10.3897/mycokeys.46.32458
Figure 1 Phylogram generated from maximum likelihood analysis (RAxML) based on combined LSU, SSU, ITS and TEF 1-α sequenced data of taxa from the family Phaeosphaeriaceae and other representative species in Pleosporineae and Massarineae. The tree is rooted to Cyclothyriellarubronotata (CBS 121892), C.rubronotata (CBS 141486), Didymosphaeriarubi-ulmifolii (MFLUCC 14-0024) and D.variabile (CBS 120014). Bootstrap support values of maximum parsimony and maximum likelihood (MPBP, left; MLBP, middle) equal to or greater than 70% and Bayesian posterior probabilities (BYPP, right) equal to or greater than 0.95 are provided. The type strains were highlighted in bold and the newly generated sequences are highlighted in red.
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