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9 results for “Amphisphaeriaceae”
Supplementary material 4 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of tub2 sequences of 80 isolates of the Microdochium sp.
Supplementary material 2 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of LSU sequences of 72 isolates of the Microdochium sp.
Supplementary material 1 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of ITS sequences of 97 isolates of the Microdochium sp.
Supplementary material 3 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of rpb2 sequences of 71 isolates of the Microdochium sp.
FIGURE 1 in Two new species of Amphisphaeria (Amphisphaeriaceae) from northern Thailand
FIGURE 1. Phylogram generated from maximum likelihood (RAxML) based on LSU-ITS rDNA matrix. The tree is rooted in Beltrania pseudorhombica (CBS 138003), Beltraniella endiandrae (CBS 137976) and Beltraniopsis neolitseae (CBS 137974). MP, ML bootstrap supports (≥50%) and Bayesian posterior probabilities (≥0.95 PP) support are given above or below the branches respectively. Type collections are in bold and the newly generated sequences are in red.
FIGURE 3 in Two new species of Amphisphaeria (Amphisphaeriaceae) from northern Thailand
FIGURE 3. Amphisphaeria thailandica (holotype MFLU 18–0794) a-b. Ascomata on substrate. c. Vertical section of ascoma. d. Peridium. e. Paraphyses. f-j. Asci (j in Congo Red). k-o. Ascospores (k in Melzer's reagent). Scale bars: b=1000 μm, c=200 μm, d,f-j=20 μm, e,k- o=10 μm.
FIGURE 2 in Two new species of Amphisphaeria (Amphisphaeriaceae) from northern Thailand
FIGURE 2. Amphisphaeria flava (holotype MFLU 18–0102) a-c. Ascomata on the substrate. d. Vertical section of ascoma. e. Vertical section of ostiole. f. Peridium. g. Paraphyses. h, i. Asci. j. Apical apparatus bluing in Melzer's reagent. k-o. Ascospores. p. Germinating ascospore. q. Upper view of the colony. r. Reverse view of the colony. Scale bars: d=200 μm, e=50 μm, h, i=20 μm, f, g, j-p =10 μm.
FIGURE 2. Pestalotiopsis anacardiacearum. A–B in Pestalotiopsis anacardiacearum sp. nov. (Amphisphaeriaceae) has an intricate relationship with Penicillaria jocosatrix, the mango tip borer
FIGURE 2. Pestalotiopsis anacardiacearum. A–B. leaf blight on mango leaves damaged by mango tip borer. C. Acervuli, splitting irregularly through host surface. D. non pin-pricked mango leaf artificially inoculated with the fungus. E. pin-pricked mango leaf artificially inoculated with the fungus. F. Section of acervuli. G. Conidiogenous cells. H–J. Conidia. Scale bars: C = 200 µm, F = 50 µm, G–J = 20 µm.
FIGURE 1 in Pestalotiopsis anacardiacearum sp. nov. (Amphisphaeriaceae) has an intricate relationship with Penicillaria jocosatrix, the mango tip borer
FIGURE 1. Maximum parsimony phylogram generated from combination of ITS, β-tubulin and tef1 sequences. Data were analyzed with random addition sequence, unweighted parsimony and treating gaps as missing data. Seiridium sp. was used as the outgroup.
ScienceDex guides
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OpenNeuro
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