Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
198
datasets available to search
ShareScore release 0.7.1
Dataset results
198 results for “Dothideomycetes”
FIGURE 2 in Acrocalymma guizhouense sp. nov. (Acrocalymmaceae, Dothideomycetes) from soil in China
FIGURE 2. Acrocalymma guizhouense (CGMCC 3.20853). (a, b, c, d, e, f) Upper and reverse views of culture on PDA, OA, and MEA for 14 days after inoculation, respectively; (g, h, i) Chlamydospore; (j) Upper views of culture on PDA 30 days after inoculation; (k) Appearance of pycnidia on PDA; (l, m) Pycnidia; (n, o, p, q) Peridium and conidiogenous cells. (r, s, t, u) Conidia. Scale bars: k–l = 500 μm; m = 100 μm; g–i, n–o =20 μm; p–u = 10 μm.
FIGURE 1 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.
FIGURE 1. (Continued) Maximum likelihood consensus tree inferred by IQ-TREE-ML analysis of combined SSU, ITS, LSU, tef1-α and rpb2 sequences alignment. Bootstrap support values for ML> 70%, and posterior probabilities for PP> 0.90 are given at the nodes (BS/PP).
FIGURE 1 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.
FIGURE 1. Maximum likelihood consensus tree inferred by IQ-TREE-ML analysis of combined SSU, ITS, LSU, tef1-α and rpb2 sequences alignment. Bootstrap support values for ML> 70%, and posterior probabilities for PP> 0.90 are given at the nodes (BS/PP). The tree is rooted with Teichospora trabicola (C134) and Teichospora rubriostiolata (TR7). Type species are shown in bold. Newly identified strains are in blue.
FIGURE 3 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.
FIGURE 3. Paucispora xishanensis (HKAS 115905, holotype). a–c Appearance of ascoma on host surface. d Vertical section of ascoma. e Ostiolar canal. f Peridium. g Pseudoparaphyses. h–n Asci. o–s Ascospores. Scale bars: b, c = 400 µm, d, e = 100 µm, f–n = 20 µm, o–s = 10 µm.
FIGURE 2 in Lophiostomataceae (Dothideomycetes): Introducing Lophiostoma khanzadakirgizbaeva sp. nov. and Paucispora xishanensis sp. nov.
FIGURE 2. Lophiostoma khanzada-kirgizbaeva (TASM 6158, holotype). a–b Appearance of ascomata on host surface. c Vertical section of ascoma. d, f Ostiolar canal. e Peridium. g, h Pseudoparaphyses. i–l Asci. m–o Ascospores. Scale bars: a = 1 cm, b = 300 µm, c, d = 100 µm, e–g = 50 µm, h–l = 20 µm, m–o = 10 µm.
FIGURE 2 in Morphology and multigene phylogeny reveal a novel Stagonospora species (Massarinaceae, Dothideomycetes) from Thailand
FIGURE 2. Stagonospora samroiyotensis (MFLU 24-0020, holotype). a. Decaying stem of Typha species from a lotic wetland. b, c. Close up of conidiomata on the host surface. d. Vertical section of conidioma. e. Vertical section of partial conidiomatal wall. f–h. Developing conidia and conidiogenous cells. i–m. Conidia. n. Germinated conidium. o. Colonies on PDA from above; p reverse. Scale bars: b–c = 1 mm, d = 50 μm, e–h, j–n = 10 μm, i = 20 μm.
FIGURE 1 in Saprobic Dothideomycetes in Thailand: Neoaquastroma gen. nov. (Parabambusicolaceae) introduced based on morphological and molecular data
FIGURE 1. RAxML tree based on analysis of a combined dataset of LSU, SSU, TEF and ITS partial sequences. Bootstrap support values for maximum likelihood and maximum parsimony higher than 70 % and Bayesian posterior probabilities greater than 0.95 are defined above the internal branches respectively. The ex-type strains are in bold; the new isolates are in blue. The tree is rooted to Hysterobrevium mori and Hysterium pulicare in the Hysteriales.
FIGURE 2 in Saprobic Dothideomycetes in Thailand: Neoaquastroma gen. nov. (Parabambusicolaceae) introduced based on morphological and molecular data
FIGURE 2. Neoaquastroma guttulatum (holotype). a. Appearance of ascomata on host substrate. b. Section of ascoma. c. Peridium. d. Pseudoparaphyses. e-h. Asci. i-n. Ascospores (note the ascospore stained in Indian ink to show the mucilaginous sheath in n). o. Germinated spore. Scale bars: a = 200 μm, b = 100 μm, c, e–o = 20 μm, d = 10 μm.
FIGURE 3 in Saprobic Lophiostomataceae (Dothideomycetes): Pseudolophiostoma mangiferae sp. nov. and Neovaginatispora fuckelii, a new record from Mangifera indica
FIGURE 3. Neovaginatispora fuckelii (new record, MFLU 18-0069) a–b Appearance of ascomata on host. c Close-up of ascomata. d Section of ascoma. e Section through ostiole. f Section of peridium. g Pseudoparaphyses. h–j Asci. k–o Ascospores. p Germinated ascospore. q Colony from above. r Colony from below. Scale bars: d = 120 μm, e–j = 20 μm, k–p = 5 μm.
FIGURE 2 in Saprobic Lophiostomataceae (Dothideomycetes): Pseudolophiostoma mangiferae sp. nov. and Neovaginatispora fuckelii, a new record from Mangifera indica
FIGURE 2. Pseudolophiostoma mangiferae (holotype, MFLU 18-0068) a Appearance of ascomata on host. b Close-up of ascomata. c–d Vertical sections through ascomata. e Peridium. f Pseudoparaphyses. g–h Asci. i–k Ascospores. l Germinated ascospore. m Colony from above. n Colony from below. Scale bars: c–d = 100 μm, e = 20 μm, f = 30 μm, g–h = 20 μm, i–l = 10 μm.
FIGURE 1 in Saprobic Lophiostomataceae (Dothideomycetes): Pseudolophiostoma mangiferae sp. nov. and Neovaginatispora fuckelii, a new record from Mangifera indica
FIGURE 1. RAxML tree based on analysis of combined LSU, SSU, tef1-α and ITS dataset. Bootstrap support values for maximum likelihood (ML), maximum parsimony (MP) higher than 65 % and Bayesian posterior probabilities (BYPP) greater than 0.95 are given above each branch respectively. The new isolates are in red. Ex-type strains are in bold. The tree is rooted to Angustimassarina populi (Amorosiaceae).
FIGURE. 3 in Two new species of Dyfrolomyces (Dyfrolomycetaceae, Dothideomycetes) from karst landforms
FIGURE. 3 Dyfrolomyces maolanensis (GZAAS 16-0114; holotype) a, b Appearance of ascomata immersed in the host. c Vertical section through ascoma. d Section of peridium. e Pseudoparaphyses. f–i Long, cylindrical asci with ascospores. j–o Ascospores. Scale bars: c = 100 μm, d, f–i = 20 μm, e = 30 μm, j–o = 10 μm.
FIGURE. 2 in Two new species of Dyfrolomyces (Dyfrolomycetaceae, Dothideomycetes) from karst landforms
FIGURE. 2 Dyfrolomyces thamplaensis (MFLU 16-2511; holotype) a, b Appearance of ascomata immersed in the host. c Long, cylindrical asci with ascospores. d Pseudoparaphyses. e Asci with apical ring. Note the arrow heads indicate the apical ring. f Vertical section through ascoma. g Section of peridium. h Germinating ascospore. i–l Ascospores. Scale bars: b = 500 μm, c, d = 30 μm, e, h = 10 μm, f= 100 μm, g = 20 μm, i–l = 5 μm.
FIGURE. 1 in Two new species of Dyfrolomyces (Dyfrolomycetaceae, Dothideomycetes) from karst landforms
FIGURE. 1 Maximum likelihood phylogenetic tree by RAxML (GTR+G model) based on combined LSU, SSU rDNA and TEF1-a sequence data. ML values (> 50%) resulting from 1000 bootstrap replicates are shown near the nodes and branches with Bayesian posterior probabilities (PP) greater than 0.95 are given in bold. Hyphen ("--") indicates that the support values are lower than 50%. The original isolate numbers are noted after the species names. The tree is rooted to Dothidea sambuci (AFTOL 274), and the scale bar shows 0.01 changes.
FIGURE 1 in Spissiomyces endophytica (Dothideomycetes, Ascomycota), a new endophytic fungus from Thailand
FIGURE 1. Phylogram derived from maximum likelihood analysis of a combined SSU, LSU, ITS, RPB2 and TUB sequences of 39 sequences. Gloniopsis praelonga and Hysterobrevium smilacis were used as the outgroup. The numbers above branches represent maximum likelihood bootstrap percentages (left) and Bayesian posterior probabilities (right). Only bootstrap values ≥ 50 % are shown, and the scale bar represents ten substitutions per nucleotide position. The sequence obtained from this study is in bold.
FIGURE 2. Spissiomyces endophytica SDBR-CMU319. A–D in Spissiomyces endophytica (Dothideomycetes, Ascomycota), a new endophytic fungus from Thailand
FIGURE 2. Spissiomyces endophytica SDBR-CMU319. A–D. Colonies on different agar media A. Potato dextrose agar. B. Malt extract agar. C. Cornmeal agar. D. Oatmeal agar. E. Hyphae and swollen cells (arrows). F. Hypal brancing and lateral germination. G. Conidiogenous cells (arrows) and conidia. Scale bars: A−D = 10 mm; E and G = 25 μm; F = 5 μm.
FIGURE 3 in A new species of Flabellascoma and a new record of Biappendiculispora japonica (Lophiostomataceae, Dothideomycetes) from Yunnan Province, China
FIGURE 3. Biappendiculispora japonica (HKAS 122872, a new host record). a, b Appearance of ascomata on the host substrate. c Section of the ascoma. d. Peridium. e Pseudoparaphyses. f–i Asci. j–n Ascospores. o Ascospore stained in Indian ink. p Germinated ascospore. q, r Culture characters on PDA (q = from above, r = from below). Scale bars: c = 150 μm, d, f–i = 50 μm, e, j–p = 30 μm, q, r = 30 mm.
FIGURE 1 in A new species of Flabellascoma and a new record of Biappendiculispora japonica (Lophiostomataceae, Dothideomycetes) from Yunnan Province, China
FIGURE 1. Phylogram generated from ML analysis based on the combined SSU, LSU, ITS, tef1-α, and rpb2 dataset of Lophiostomataceae species. (Continued)
FIGURE 1 in A new species of Flabellascoma and a new record of Biappendiculispora japonica (Lophiostomataceae, Dothideomycetes) from Yunnan Province, China
FIGURE 1. Phylogram generated from ML analysis based on the combined SSU, LSU, ITS, tef1-α, and rpb2 dataset of Lophiostomataceae species. Bootstrap support values for ML equal to or higher than 75 % and BYPP equal to or greater than 0.95 are shown above the nodes. The ex-type strains are bold, and the new isolates are red. The tree is rooted with Teichospora rubriostiolata (TR7) and T. trabicola (C134).
FIGURE 2 in A new species of Flabellascoma and a new record of Biappendiculispora japonica (Lophiostomataceae, Dothideomycetes) from Yunnan Province, China
FIGURE 2. Flabellascoma lancangense (HKAS 122877, holotype). a, b Appearance of ascomata on the host substrate. c Section of the ascoma. d. Vertical section of an ostiole. e Peridium. f Pseudoparaphyses. g–k Asci. l–n Ascospores. o An ascospore stained in Indian ink. p Germinated ascospore. q, r Culture characters on PDA (q = from above, r = from below). Scale bars: c, d = 100 μm, e = 50 μm, f–k = 30 μm, l–o = 10 μm, p = 20 μm, q, r = 20 mm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.