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13 results for “Rhytismatales”
FIGURE 2 in A novel addition to the Pezizellaceae (Rhytismatales, Ascomycota)
FIGURE 2. Apiculospora penniseti (MFLU 20-0543, holotype). a,b Appearance of conidiomata on host surface. c,d Conidia on the surface of the host. e,f Section through conidioma. g Pycnidial wall. h Paraphyses. i-l Conidiogenous cells with conidia. m-o Conidia. p,q Conidiomata on the culture. r Conidia from the culture. Scale bars: e = 20 µm g,i,r = 10 µm f = 50 µm h,j–o = 5 µm
FIGURE 1 in A novel addition to the Pezizellaceae (Rhytismatales, Ascomycota)
FIGURE 1. RAxML tree based on a combined dataset of LSU and ITS partial sequence data. Bootstrap support values for maximum likelihood equal to or higher than 65% and Bayesian posterior probabilities equal to or greater than 0.90 are displayed on the nodes, respectively. Newly introducing taxon is indicated in white. The tree is rooted to Calloria urticae (MFLU 18-0697) and Dactylaria dimorphospora (CBS 256.70).
Supplementary material 1 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Dataset for molecular analyses
Figure 5 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 5 Terriera sigmoideosporaa, b apothecia observed under the dissecting microscope c section of covering stroma d median vertical section through an apothecium e immature ascus f paraphyses and asci in various states of maturity g, h ascospores. Note: c–h mounted in water. Scale bar: 1 mm (a), 500 µm (b), 100 µm (c), 20 µm (d–h).
Figure 3 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 3 Terriera karstia, b apothecia observed under the dissecting microscope c detail of covering stroma in vertical section d vertical section through an apothecium e, f asci in various states of maturity g apices of paraphyses h, i ascospores. Note: c–i mounted in water. Scale bar: 1 mm (a), 500 µm (b), 20 µm (c, e, f), 100 µm (d), 10 µm (g, i).
Figure 2 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 2 Hypoderma paralinderaea, b apothecia observed under a dissecting microscope in face view c vertical section through an apothecium d lips adjacent to the top of covering stroma e section of covering stroma f section of basal stroma g paraphyses and asci in various states of maturity h immature ascus i, j ascospores. Note: c–j mounted in water. Scale bar: 1 mm (a), 500 µm (b), 200 µm (c), 20 µm (d, g, h), 10 µm (e, i, j), 5 µm (f).
Figure 1 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 1 Phylogram of Rhytismataceae is presented as the best tree revealed by MP analysis, based on the concatenated LSU-ITS-mtSSU sequence dataset. MP bootstrap support values (MPBP ≥ 50%) and Bayesian inference posterior probabilities (BYPP ≥ 0.95) are shown near the nodes. The tree is rooted to Marthamyces emarginatus (ICMP 22854), the scale bar showing 10 changes. Type strains are indicated in bold and new sequences, generated in this study, are given in red.
Figure 4 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 4 Terriera meitanensisa habit of apothecia on substrate b, c apothecia observed under the dissecting microscope in face view d vertical section through an apothecium e covering stroma f triangular space in section between the covering stroma and basal stroma g basal stroma h paraphyses with anastomoses amongst asci in various states of maturity i, j immature asci k, l ascospores. Note: d–l mounted in water. Scale bar: 1 cm (a), 1 mm (b), 500 µm (c), 100 µm (d), 10 µm (e, g, k, l), 30 µm (f), 20 µm (h–j).
Figure 1 from: Karakehian JM, Quijada L, Friebes G, Tanney JB, Pfister DH (2019) Placement of Triblidiaceae in Rhytismatales and comments on unique ascospore morphologies in Leotiomycetes (Fungi, Ascomycota). MycoKeys 54: 99-133. https://doi.org/10.3897/mycokeys.54.35697
Figure 1 Morphological features of Triblidiaceae. a–d, h–l, uTriblidiumcaliciiformea dried apothecia on bark b same apothecia hydrated c 15 µm thick longitudinal section d dead asci containing living ascospores h–i ascospores j germinating ascospore k dead ascus containing living ascospores, detailing the apex l ascus detailing the apex (phl) u fine transverse striations of dehisced ascus (phl). e–g, m–tHuangshaniaverrucosae habit of apothecia on bark (dried) f detail of dried apothecia g detail of same apothecia hydrated m 15 µm thick longitudinal section in (Cr) n asci (KOH & Mlz) o detail of ascus apex (Cr) p ascospore q ascospore (cb/l) r detail of plug-like structure in a terminal cell of an ascospore s–t detail of verrucose ascospore surface (t in cb/l). All microphotographs of cells and tissues mounted in water unless otherwise noted: Congo red (Cr), cotton blue in lactophenol (cb/l), Melzer's reagent (Mlz), phloxine (phl), potassium hydroxide (KOH). † = dead, * = living. Scale bars: 1 mm (a–b, e–g); 50 µm (c, m–n); 20 µm (h–k, p–q); 10 µm (l, o); 5 µm (r–u). Specimens photographed: T.caliciiforme: a–b, d, j GJO-0088904; i FH-15071105; c, h, k–l, u CUP-18080101; H.verrucosa: UME-29336a.
Figure 4 from: Karakehian JM, Quijada L, Friebes G, Tanney JB, Pfister DH (2019) Placement of Triblidiaceae in Rhytismatales and comments on unique ascospore morphologies in Leotiomycetes (Fungi, Ascomycota). MycoKeys 54: 99-133. https://doi.org/10.3897/mycokeys.54.35697
Figure 4 Select examples of ascospore morphologies in Graphidaceae and Leotiomycetesa ascospores of Glyphiscicatricosa in Lugol's solution b muriform ascospore of Mellitiosporiumversicolorc–e muriform ascospores of Claussenomyces spp. within living, immature asci. All microphotographs of cells and tissues mounted in water unless otherwise noted. † = dead, * = living. Scale bars: 10 µm (a); 20 µm (b); 5 µm = (c–e). Specimens photographed: a = J.M.K personal collection; b = U.S.A., Oregon, Horse Rock Ridge, M. A. Sherwood, L. H. Pike & D. Wagner, 21 Mar 1979, FH [s.n.], image courtesy of Farlow Herbarium of Harvard University; c–e = L.Q. personal collections.
Figure 3 from: Karakehian JM, Quijada L, Friebes G, Tanney JB, Pfister DH (2019) Placement of Triblidiaceae in Rhytismatales and comments on unique ascospore morphologies in Leotiomycetes (Fungi, Ascomycota). MycoKeys 54: 99-133. https://doi.org/10.3897/mycokeys.54.35697
Figure 3 Bayesian majority-rule consensus tree of Leotiomycetes based on the ITS1-5.8S-ITS2 + LSU + mtSSU region. Thickened branches are those that were well supported by ML and BI methods. An asterisk indicates that this branch was supported only by Bayesian inference. Classification, orders and families follows Baral in Jaklitsch et al. (2016) using Trichoglossumhirsutum as the outgroup. Species for which molecular sequences have been generated for this study are given in bold followed by fungarium acronym, a dash, then identifying number.
Figure 2 from: Karakehian JM, Quijada L, Friebes G, Tanney JB, Pfister DH (2019) Placement of Triblidiaceae in Rhytismatales and comments on unique ascospore morphologies in Leotiomycetes (Fungi, Ascomycota). MycoKeys 54: 99-133. https://doi.org/10.3897/mycokeys.54.35697
Figure 2 Morphological features of Pseudographis. a–e, g, l–oPseudographispinicolaa dried apothecia on bark b same apothecia hydrated c–e hydrated apothecia g dead ascus containing living ascospores (cb), l ascospores m ascus containing mature ascospores, detail of apex (in dilute L) n ascospore emerging from ascus apex (Cr) o ascus apex. f, h–k, p–rPseudographiselatinaf hydrated ascomata h 15 µm thick longitudinal section i–j ascospores k ascospores (in dilute L) p detail of ascus apex (L) q turgid ascus r same ascus (in dilute L). All microphotographs of cells and tissues mounted in water unless otherwise noted: cresyl blue (cb), Congo red (Cr), Lugol's solution (L). † = dead, * = living. Scale bars: 1 mm (a–f); 50 µm (h, q–r); 20 µm (i–k); 10 µm (g, n–p); 5 µm (l–m). Specimens photographed: P.pinicola: a–b, g, l–o, FH-18061706; c–e courtesy of Adam Polhorský; P.elatina: GJO-0090016.
FIGURE 3 in A novel addition to the Pezizellaceae (Rhytismatales, Ascomycota)
FIGURE 3. ITS pairwise comparison with clustering using Ward's method.
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