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Dataset results
14 results for “Pseudorobillarda”
FIGURE 1 in Pseudorobillarda sichuanensis sp. nov. associated with Bambusa sp. from Sichuan province, China
FIGURE 1. Phylogenetic tree generated from ML analyses of a combined ITS, LSU, SSU and rpb2 dataset. The tree was rooted to Speiropsis pedatospora (CBS 397.59). Bootstrap support values for MP, ML (≥75%) and Bayesian posterior probabilities (≥0.95 PP) are given above or below the branches respectively. The new taxon is indicated in red and ex-type strains are in bold.
FIGURE 2 in Pseudorobillarda sichuanensis sp. nov. associated with Bambusa sp. from Sichuan province, China
FIGURE 2. Pseudorobillarda sichuanensis (HKAS 124018, holotype). a Appearance of Conidiomata on the host surface. b–c Close-up of Conidiomata. d Vertical section of conidioma. e Vertical section through Conidiomatal wall. f Paraphyses. g, h Conidiogenous cells with developing conidia. i–m Conidia with appendages. n Colony from above o Colony from below. Scale bars: d = 50 μm, e, f = 20 μm, g–m = 10 μm.
FIGURE 3 in Morphology and phylogeny of Pseudorobillarda eucalypti sp. nov., from Thailand
FIGURE 3. Pseudorobillarda eucalypti (MFLUCC 12-0417): A. Specimen on dead leaf. B. Conidiomata on host surface. C. Longitudinal section of a conidioma. D. Longitudinal section of a conidioma wall. E. Longitudinal section of ostiole. F. Conidiogenous cells with sparse paraphyses. G. Conidiogenous cells with developing conidia stained with lactophenol cotton blue. H–J. Conidiogenous cells with developing conidia. K–L. Conidia. M–N. Conidia stained with lactophenol cotton blue. O. Germinating conidium. P–Q. Colonies on PDA; P. from top, Q. from reverse. Scale bars: C = 100 µm, D, F, O = 10 µm, E = 50 µm, G–N = 5 µm.
FIGURE 2 in Morphology and phylogeny of Pseudorobillarda eucalypti sp. nov., from Thailand
FIGURE 2. Pseudorobillarda siamensis (MFLUCC 12 - 0414): A. Specimen on dead leaf. B. Conidiomata on the host surface. C–D. Longitudinal section of a conidioma. E–H. Conidiogenous cells with developing conidia. I. Conidiogenous cells with developing conidia stained with lactophenol cotton blue. J–L. Conidia. M–N. Conidia stained with lactophenol cotton blue. O. Germinating conidium. P–Q. Colonies on PDA; P, from top; Q, from reverse. Scale bars: C–D = 50 µm; E–O = 10 µm.
FIGURE 1. The maximum likelihood majority rule consensus tree for the analyzed Pseudorobillarda and related taxa. RAxML bootstrap support values above 50 in Morphology and phylogeny of Pseudorobillarda eucalypti sp. nov., from Thailand
FIGURE 1. The maximum likelihood majority rule consensus tree for the analyzed Pseudorobillarda and related taxa. RAxML bootstrap support values above 50% (ML) are given at the nodes. Phylogeny tree is rooted to Schismatomma decolorans.
FIGURE 9. Location map and Collecting sites. a in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 9. Location map and Collecting sites. a Location map of collecting sites b Tea plantation of Alishan Mountain. c Mountain areas of Alishan Mountain. d Mountain areas of Fenghuang Mountain e Tea plantation of Fenghuang Mountain. (Captured by A. R. Rathnayaka and D. S. Tennakoon).
FIGURE 1 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 1. RAxML tree generated from combined dataset of SSU, LSU, ITS and rpb2. Related sequences were acquired from GenBank and Li et al. (2020). The tree is rooted to Dendrographa decolorans Ertz 5003 (BR). Bootstrap support values for ML ≥ 70 % and Bayesian posterior probabilities (PP) ≥ 0.95 are noted at the nodes. Strain numbers are noted at the end of the species name. Newly introduced species is represented as blue and type strains are in bold.
FIGURE 5 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 5. Pseudorobillarda camelliae-sinensis (MFLU 21-0007, holotype) on leaf of Camellia sinensis. a Specimen. b Appearance of conidiomata on host surface. c Close-up of conidioma. d Vertical section of conidioma. e Section through peridium. f–h Paraphyses, conidiogenous cells with developing conidia. i–l Conidia. m Germinating conidium (indicated by an arrow). n Colony from above. o Colony from below. Scale bars: b = 500 μm, c = 100 μm, d = 50 μm, f, i–m = 10 μm, e, g, h = 5 μm.
FIGURE 7 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 7. Vaginatispora palmae (MFLU 21-0009, new host record) on dead branch of Swietenia macrophylla. a Appearance of ascomata on host substrate. b Close-up of ascoma. c, d Sections through an ascoma. e Section through peridium. f Pseudoparaphyses. g–k Immature to mature asci. l–p Ascospores. q Germinating ascospore. r Colony from above. s Colony from below. Scale bars: a =500 μm, b, d = 100 μm, c = 50 μm, g–k = 20 μm, e, f, l–q = 10 μm.
FIGURE 8. Ramusculicola thailandica a in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 8. Ramusculicola thailandica a Appearance of ascomata on host substrate. b Close-up of ascoma. c, d Sections through an ascoma. e Section through peridium. f Pseudoparaphyses. g–j Asci. k–o Ascospores. p Germinating ascospore. q Colony from above. r Colony from below. Scale bars: a =500 μm, b = 200 μm, c, d = 100 μm, e, k–o = 5 μm, f, p = 10 μm, g–j = 20 μm
FIGURE 2 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 2. Phylogenetic tree generated from ML analysis based on combined dataset of LSU, ITS and rpb2. Related sequences were obtained from GenBank and Mapook et al. (2020). The tree is rooted to Stemphylium vesicarium (CBS 191.86 and MFLUCC 13-0344). Bootstrap support values for ML ≥ 70% and Bayesian posterior probabilities (PP) ≥ 0.95 are noted at the nodes. Strain numbers are mentioned at the end of the species name. New isolate used in this study represented as blue bold and type strains are in bold.
FIGURE 4 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 4. Phylogenetic tree generated from ML analysis based on combined dataset of LSU, SSU, ITS and tef1-α. Related sequences were obtained from GenBank and Jaklitsch et al. (2016). The tree is rooted to Decaisnella formosa (BCC 25617). Bootstrap support values for ML ≥ 70 % and Bayesian posterior probabilities (PP) ≥ 0.95 are noted at the nodes. Strain numbers are noted at the end of the species name. New isolates used in this study represented as blue bold and type strains are in bold.
FIGURE 6 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 6. Neopyrenochaeta triseptatispora (MFLU 21-0008, new host record) on dead branch of Sambucus formosana. a Appearance of ascomata on host substrate. b Close-up of ascomata. c Vertical section through an ascoma. d Section through peridium. e Pseudoparaphyses. f–i Asci. j–n Ascospores. o Germinating ascospore. p Colony from above. q Colony from below. Scale bars: a =500 μm, b = 100 μm, c = 50 μm, d, e = 5 μm, f–o = 10 μm.
FIGURE 3 in Additions to the microfungi in Taiwan: introducing Pseudorobillarda camelliaesinensis sp. nov., (Pseudorobillardaceae) and new host records of pleosporalean taxa in mountainous habitats
FIGURE 3. Phylogenetic tree generated from ML analysis based on combined dataset of LSU, ITS and tef1-α. Related sequences were extracted from GenBank and Bao et al. (2019). The tree is rooted to Teichospora trabicola (CBS 140730) and T. rubriostiolata (CBS 140734). Bootstrap support values for ML ≥ 70% and Bayesian posterior probabilities (PP) ≥ 0.95 are noted at the nodes. Strain numbers are noted at the end of the species name. New isolate used in this study represented as blue bold and type strains are in bold.
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