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95 results for “Pezizales”
Figure 3 from: Kušan I, Matočec N, Jadan M, Tkalčec Z, Mešić A (2018) An overview of the genus Coprotus (Pezizales, Ascomycota) with notes on the type species and description of C. epithecioides sp. nov. MycoKeys 29: 15-47. https://doi.org/10.3897/mycokeys.29.22978
Figure 3 Coprotus sexdecimsporus. a Fresh apothecia on Equus asinus dung b Cross section with immature asci, paraphyses and marginal cells c, d Asci protruding above hymenium e Ascus with ascogenous cells f Paraphyses g Freshly ejected ascospore with a sheath h Mature ascospores i 16-spored freshly ejected packet of ascospores j Marginal cells from side view k Ectal excipulum cells in top view l Fresh apothecia on Lepus europaeus dung m Freshly ejected ascospores held together with a sheath n Ascus with ascogenous cells o Paraphyses with granular pigment and copious exudate p Excipular and marginal tissue. b, c, e–g, i, m-p *tap water d, h *IKI j, k †CB a–i from CNF 2/8394 j–p from CNF 2/8942. Scale bars: a, l 1 mm, b–k, m–o 10 μm, p 20 μm; del. N. Matočec, phot. N. Matočec & I. Kušan.
Figure 1 from: Kušan I, Matočec N, Jadan M, Tkalčec Z, Mešić A (2018) An overview of the genus Coprotus (Pezizales, Ascomycota) with notes on the type species and description of C. epithecioides sp. nov. MycoKeys 29: 15-47. https://doi.org/10.3897/mycokeys.29.22978
Figure 1 Maximum likelihood phylogenetic tree based on a concatenated ITS and LSU dataset. Sequences recovered during this study are shown in bold type. Bootstrap values greater than 50% are indicated at the nodes. Ascobolus crenulatus was used as the outgroup. The bar length indicates the number of nucleotide substitutions per site.
Figure 2 from: Guevara-Guerrero G, Bonito G, Smith ME, Healy R, Grupe II AC, Cázares E, Castellano MA, Trappe JM (2018) Tuber aztecorum sp. nov., a truffle species from Mexico belonging to the Maculatum clade (Tuberaceae, Pezizales). MycoKeys 30: 61-72. https://doi.org/10.3897/mycokeys.30.22887
Figure 2 a–i Tuber aztecorum (holotype ITCV 993). a; Two ascomata showing the peridial surface (bar = 1 cm) b Ascoma in cross-section showing peridial surface and glebal surface (bar = 1 cm) c Peridial surface magnified showing the verrucose surface (bar = 1 mm) d Clusters of erect hyphae emanating from the peridial surface (bar =10 µm) e A single surface hair-like hypha (bar = 10 µm) f Cystidium (bar = 10 µm) g Cross section of peridium showing pseudoparenchyma-like epicutis (bar = 20 µm) h Ascospores within asci in surface view showing the alveoli (bar = 20 µm) i Ascospore within asci in surface view showing the alveoli magnified (bar = 20 µm).
Figure 1 from: Guevara-Guerrero G, Bonito G, Smith ME, Healy R, Grupe II AC, Cázares E, Castellano MA, Trappe JM (2018) Tuber aztecorum sp. nov., a truffle species from Mexico belonging to the Maculatum clade (Tuberaceae, Pezizales). MycoKeys 30: 61-72. https://doi.org/10.3897/mycokeys.30.22887
Figure 1 Phylogenetic tree inferred under the maximum-likelihood (ML) criterion from the ITS rDNA alignment corresponding to the Tuber dataset. The tree was rooted using midpoint rooting. Numbers on the branches represent support values from 1,000 ML bootstrap replicates. The branches are scaled in terms of the expected number of substitutions per site. The phylogeny is rooted with species belonging to the Latisporum clade. Accession numbers in the sequence labels indicate sequences from Genbank.
Figure 5 from: Polemis E, Konstantinidis G, Fryssouli V, Slavova M, Tsampazis T, Nakkas V, Assyov B, Kaounas V, Zervakis GI (2019) Tuber pulchrosporum sp. nov., a black truffle of the Aestivum clade (Tuberaceae, Pezizales) from the Balkan peninsula. MycoKeys 47: 35-51. https://doi.org/10.3897/mycokeys.47.32085
Figure 5 Phylogenetic tree inferred from Bayesian analysis including 62 ITS sequences assigned to 31 Tuber taxa, including members of major clades of the genus. Sequences are labelled with Latin binomials, GenBank accession numbers and geographic origin. T.pulchrosporum sp. nov. is indicated in boldface. Reference sequences deriving from type material are underlined. Choiromycesalveolatus (Tuberaceae) was used as the outgroup. Bootstrap (BS) values from Maximum Likelihood (ML) analysis (≥ 70%) and Posterior Probabilities (PPs) from Bayesian Inference (≥ 0.95) are shown at the nodes of branches.
Figure 1 from: Polemis E, Konstantinidis G, Fryssouli V, Slavova M, Tsampazis T, Nakkas V, Assyov B, Kaounas V, Zervakis GI (2019) Tuber pulchrosporum sp. nov., a black truffle of the Aestivum clade (Tuberaceae, Pezizales) from the Balkan peninsula. MycoKeys 47: 35-51. https://doi.org/10.3897/mycokeys.47.32085
Figure 1 T.pulchrosporum sp. nov.: a ascomata in situ (holotype) b ascomata in situ (paratype) c detail of peridium surface (paratype) d section of peridium (paratype).
Figure 2 from: Polemis E, Konstantinidis G, Fryssouli V, Slavova M, Tsampazis T, Nakkas V, Assyov B, Kaounas V, Zervakis GI (2019) Tuber pulchrosporum sp. nov., a black truffle of the Aestivum clade (Tuberaceae, Pezizales) from the Balkan peninsula. MycoKeys 47: 35-51. https://doi.org/10.3897/mycokeys.47.32085
Figure 2 T.pulchrosporum sp. nov.: a, b peridium structure c, d hair-like hyphae on peridium surface.
Supplementary material 1 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
: Data type: molecular data
Supplementary material 2 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
: Data type: phylogenetic tree
Figure 9 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 9 Microscopic characters of Octosporaconidiophora agg. (lineage B). A Conidia, distal curved part apparently sometimes broken off, five conidia germinating by formation of usually a single hypha, conidium on the left connected to a hypha by two anastomoses B Strongly warted hyphae, the left one seen from above, the two others in optical section C Appresssoria infecting rhizoids in lateral view, the right one seen from above, infection pegs surrounded by lignituber-like tubes formed by the host cell wall, intracellular haustoria present apart from the lowermost infection where the peg is completely encapsulated by the host cell wall A, B, C ZE37/18. Scale bars: 50 µm (A); 30 µm (B, C). Illustrated by P.D.
Figure 7 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 7 Microscopic characters of Octosporaconidiophora. A–C, E–H Conidia, distal curved part apparently sometimes broken off, some conidia germinating D Conidogenous cells, on the right with a developing conidium E (on the right) Conidium anastomosing to mycelial hypha with two-celled appressorium F Conidium germinating by a hypha with a warty surface and a two-celled appressorium G Conidium with anastomosis to mycelial hypha H (on the right) Two germinating conidia with an anastomosis between them A, F ZE63/18 B ZE46/18 C ZE77/18 D, E holotype ZE48/18 G ZE57/18 H ZE11/18. Scale bar: 50 µm. Illustrated by P.D.
Figure 6 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 6 Microscopic characters of Octosporaconidiophora. A Hypha with two-celled appresorium closely attached to the cells of the host leaf B Ascospores C Germinating ascospores found on leaves D Variation of appressoria mostly seen from above, infection pegs not always observed, appressoria seen in lateral view with infection pegs (indicated by arrows) A, B, D holotype ZE48/18 C ZE11/18. Scale bar: 30 µm. Illustrated by P.D.
Figure 5 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 5 Microscopic characters of Octosporaconidiophora. A Cells of the outermost layer of excipulum from an outside view stained with CRBBMycelial hypha stained with CRBC Appressoria and hyphae on a leaf of Sematophyllumbrachycarpum in tap water D Appressorium stained with LACBE Germinating conidium stained with LPCBF Germinated conidium produced a bifurcate warted hypha (right arrow), appressorium (left arrow) probably not connected to the conidium, in LACBA, B, F ZE77/18 C, E ZE11/18 D holotype ZE48/18.
Figure 13 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 13 Geographical distribution of Trichosteleumperchlorosum in southern Africa based on records in BM, L, MO and PRE.
Figure 2 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 2 Maximum clade credibility tree with estimated divergence times, based on SSU and LSU data; calibration points are marked by red circles, posterior probabilities shown above branches, bars indicate the 95% highest posterior density (HPD) intervals.
Figure 3 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 3 Octosporaconidiophora. A–E Apothecia in situ F Habitat A, E ZE63/18 B ZE57/18 C, F ZE11/18 D holotype ZE48/18.
Figure 4 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 4 Microscopic characters of Octosporaconidiophora. A Ascospores inside ascus stained with CRBB Free ascospores in tap water C Paraphyse in tap water D Young ascus in tap water E Margin of apothecium in tap water F Hair and excipular cells in tap water A–F ZE77/18.
Figure 11 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 11 Geographical distribution of Sematophyllumbrachycarpum in southern Africa based on records in BM, L, MO and PRE.
Figure 1 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 1 Bayesian phylogeny inference, based on concatenated alignment of EF1α, LSU and SSU sequences. Bayesian posterior probabilities are shown above branches; Otidealeporina serves as outgroup; trees based on analysis of each locus are shown in Suppl. material 2: Fig. S1.
Figure 10 from: Sochorová Z, Döbbeler P, Sochor M, van Rooy J (2019) Octospora conidiophora (Pyronemataceae) – a new species from South Africa and the first report of anamorph in bryophilous Pezizales. MycoKeys 54: 49-76. https://doi.org/10.3897/mycokeys.54.34571
Figure 10 Sematophyllumbrachycarpum.A Plants B Typical shoot with leaves C Leaf D Leaf base with alar cells.
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