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131 results for “Lecanoromycetes”
Figure 2 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 2 Phylogenetic tree constructed from Maximum Likelihood analyses in Immersaria, based on the concatenated nrITS-nrLSU-RPB1-RPB2 dataset. Maximum Likelihood bootstrap probabilities above 70% (left) and Bayesian Inference posterior probabilities above 0.9 (right) are given at the nodes. Solid brown rectangle: thallus brown; solid orange rectangle: thallus yellow brown to orange brown; solid red rectangle: thallus rusty; hollow brown rectangle: thallus pale yellow brown. Solid green circle: green epihymenium; solid grey circle: without apothecia; hollow green circular: brown epihymenium.
Figure 7 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 7 Lecaimmeria botryoides (a–dKUN 20–66730): a–b thallus c apothecial anatomy. L. lyagea (e–hKUN 20–69070): e–f thallus g apothecial anatomy h scospores. Scale bars: 1 mm (a–b, e–f); 20 μm (c, g); 10 μm (d, h).
Figure 10 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 10 Lecaimmeria tibetica (a–eKUN XY19–1288): a–b thallus c apothecial anatomy d ascus e ascospore. L. tuberculosa (f–iKUN 18–58864): f thallus g conidiomata h apothecial anatomy i ascospores. Scale bars: 1 mm (a–b, f–g); 20 μm (c); 50 μm (h); 10 μm (d, e, i).
Figure 4 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 4 Immersaria athroocarpa (a–e SDNU20190227): a–b thallus c apothecial anatomy d ascus e ascospores. I. aurantia (f–jKUN XY19–1290): f–g thallus h apothecial anatomy i ascus j ascospores. Scale bars: 1 mm (a–b, f–g); 20 μm (c, h); 10 μm (d–e, i–j).
Figure 6 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 6 Immersaria venusta (a–dKUN 20–66725): a–b thallus c apothecial anatomy d ascus. Scale bars: 1 mm (a–b); 20 μm (c); 10 μm (d).
Supplementary material 1 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Table S1
Figure 9 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 9 Lecaimmeria orbicularis (a–eKUN 20–66753): a–b thallus c apothecial anatomy d ascus (Lugol's iodine) e ascospores. L. qinghaiensis (f–iKUN 20–68696): f–g thallus h apothecial anatomy i ascus. Scale bars: 1 mm (a–b, f–g); 20 μm (c, h); 10 μm (d, e, i).
Figure 3 from: Xie C-M, Wang L-S, Zhao Z-T, Zhang Y-Y, Wang X-Y, Zhang L-L (2022) Revision of Immersaria and a new lecanorine genus in Lecideaceae (lichenised Ascomycota, Lecanoromycetes). MycoKeys 87: 99-132. https://doi.org/10.3897/mycokeys.87.72614
Figure 3 Phylogenetic tree constructed from Maximum Likelihood analyses in Lecaimmeria, based on the concatenated nrITS-nrLSU-RPB1-RPB2 dataset. Maximum Likelihood bootstrap probabilities above 70% (left) and Bayesian Inference posterior probabilities above 0.9 (right) are given at the nodes. Solid purple rectangle: areolae margin white; solid grey rectangle: areolae margin black; hollow purple rectangle: areolae margin jade green pigmented. Solid blue circle gyrophoric acid; hollow blue circle: none.
Figure 4 from: Košuthová A, Westberg M, Otálora MAG, Wedin M (2019) Rostania revised: testing generic delimitations in Collemataceae (Peltigerales, Lecanoromycetes). MycoKeys 47: 17-33. https://doi.org/10.3897/mycokeys.47.32227
Figure 4 Thallus habitus: ARostaniacoccophylla (isotype of Collemacoccophyllum Nyl., India, 1858, Perrotet s.n., H-NYL 42355, H–9201376) BRostaniaparamensis (Palice 2796, PRA-00013999; holotype of Collemaparamense PM Jørg. & Palice) CScytinium sp. Palice 2274a DRostaniaparamensis Palice 2274b. tL = thalline lobes, is = isidia. Scale bar: 1 cm.
Figure 6 from: Košuthová A, Westberg M, Otálora MAG, Wedin M (2019) Rostania revised: testing generic delimitations in Collemataceae (Peltigerales, Lecanoromycetes). MycoKeys 47: 17-33. https://doi.org/10.3897/mycokeys.47.32227
Figure 6 Thalli, transversal cross-sections: A Thallus with pseudocortex and densely interwoven hyphae (Rostaniaquadrifida, McCune 2744, UPS) B Thallus with pseudocortex and straight and unbranched hyphae which are perpendicular to the surface (Rostaniaparamensis, Palice 2796, holotype of Collemaparamense) C Thallus with eucortex and straight and unbranched hyphae which are perpendicular to the surface (Leptogiumazureum, Tehler 3140, S) D Thallus with eucortex and paraplectenchymateous throughout (Scytinium sp. Palice 2273) E Thallus paraplectenchymateous throughout (Rostaniaoccultatavar.populina, Llop 56060303, S) A–E in lactic blue C in water. euC = eucortex, PsC = pseudocortex, Hp = hyphae, pPlect = paraplechtenchyma. Scale bar = 10 µm
Figure 2 from: Košuthová A, Westberg M, Otálora MAG, Wedin M (2019) Rostania revised: testing generic delimitations in Collemataceae (Peltigerales, Lecanoromycetes). MycoKeys 47: 17-33. https://doi.org/10.3897/mycokeys.47.32227
Figure 2 Thallus habitus: ARostaniaoccultatavar.populina (Odelvik 1269, S), thallus lobes (arrow) BRostaniamultipunctata (Poelt 8852, GZU), accessory lobules (arrow) CRostaniaceranisca (MW_HOCH020, S), accessory finger-like lobules (arrow) DRostanialaevispora (isotype of Collemalaevisporum Swinscow & Krog, Tanzania, 1986, Swinscow & Krog T 3/6, O-00298), apothecium in initial stage (arrow) ERostaniacallibotrys (Moberg 4431a, UPS), apothecium in initial stage (arrow). tL = thallus lobes, al = accessory lobules, Ai = apothecium in initial stage covering the top of the accessory lobules. Scale bar: 1 cm.
Figure 5 from: Košuthová A, Westberg M, Otálora MAG, Wedin M (2019) Rostania revised: testing generic delimitations in Collemataceae (Peltigerales, Lecanoromycetes). MycoKeys 47: 17-33. https://doi.org/10.3897/mycokeys.47.32227
Figure 5 Ascospores: ARostaniaquadrifida (McCune 2744, UPS), cubic spores with 2–5 cells BRostaniaparamensis (Palice 2796, holotype of Collemaparamense), ellipsoid spores with acute ends CLeptogiumazureum (Tehler 3140, S), ellipsoid spores with acute ends DScytinium sp. (Palice 2273), oblong spores, EScytinium sp. (Palice 2274), oblong spores. Scale bar = 10 µm
Figure 1 from: Košuthová A, Westberg M, Otálora MAG, Wedin M (2019) Rostania revised: testing generic delimitations in Collemataceae (Peltigerales, Lecanoromycetes). MycoKeys 47: 17-33. https://doi.org/10.3897/mycokeys.47.32227
Figure 1 The most likely tree from the combined RAxML analysis based on 1947 aligned characters of mtSSU rDNA, MCM7 and b-tub from 57 specimens. Support values (Likelihood BS/Bayesian PP/parsimony JK) given when BS ≥ 70%, PP ≥ 0.90 and parsimony JK ≥ 70%. Branches receiving BS ≥ 75 %, PP ≥ 0.95 and JK ≥ 75% are indicated with a black dot. The different colour indicate different genera: blue = Leptogium, pink = Rostania, orange = Scytinium.
Figure 3 from: Košuthová A, Westberg M, Otálora MAG, Wedin M (2019) Rostania revised: testing generic delimitations in Collemataceae (Peltigerales, Lecanoromycetes). MycoKeys 47: 17-33. https://doi.org/10.3897/mycokeys.47.32227
Figure 3 Ascospores: ARostaniaoccultatavar.populina (Llop 56060303, S), cubic spores BRostaniaceranisca (Westberg L271_PL433, UPS), oblong spores; ascus (red line) with only four mature spores visible but remnants of four aborted spores can be seen (arrows) CRostaniacallibotrys (Sipman 2049, GZU), oblong spores. Scale bar: 10 µm.
Figure 3 from: Guzow-Krzemińska B, Jabłońska A, Flakus A, Rodriguez-Flakus P, Kosecka M, Kukwa M (2019) Phylogenetic placement of Lepraria cryptovouauxii sp. nov. (Lecanorales, Lecanoromycetes, Ascomycota) with notes on other Lepraria species from South America. MycoKeys 53: 1-22. https://doi.org/10.3897/mycokeys.53.33508
Figure 3 Haplotype network showing relationships between nucITS rDNA sequences from Leprariafinkii. Newly generated nucITS rDNA sequences are given in bold. The names of species are followed with herbarium numbers of specimens or accession numbers precede species names in case of sequences obtained from Genbank. Mutational changes are presented as numbers in brackets near lines between haplotypes.
Figure 2 from: Guzow-Krzemińska B, Jabłońska A, Flakus A, Rodriguez-Flakus P, Kosecka M, Kukwa M (2019) Phylogenetic placement of Lepraria cryptovouauxii sp. nov. (Lecanorales, Lecanoromycetes, Ascomycota) with notes on other Lepraria species from South America. MycoKeys 53: 1-22. https://doi.org/10.3897/mycokeys.53.33508
Figure 2 Haplotype network showing relationships between nucITS rDNA sequences from selected Lepraria spp. Newly generated nucITS rDNA sequences from L.cryptovouauxii, L.impossibilis and L.sipmaniana were analyzed. The names of species are followed with herbarium numbers of specimens. Mutational changes are presented as numbers in brackets near lines between haplotypes. Haplotypes corresponding to each of species are highlighted with separate elipses. The newly described L.cryptovouauxii is given in bold.
Figure 1 from: Guzow-Krzemińska B, Jabłońska A, Flakus A, Rodriguez-Flakus P, Kosecka M, Kukwa M (2019) Phylogenetic placement of Lepraria cryptovouauxii sp. nov. (Lecanorales, Lecanoromycetes, Ascomycota) with notes on other Lepraria species from South America. MycoKeys 53: 1-22. https://doi.org/10.3897/mycokeys.53.33508
Figure 1 ML tree based on nucITS rDNA dataset for Lepraria spp. with midpoint rooting. Newly sequenced specimens of Lepraria are in bold and their names are followed with collection number of specimens. In case of the sequences obtained from GenBank the taxa names are followed with accession numbers. Bootstrap supports from ML analysis ≥ 70 (first value) and posterior probabilities from BA ≥ 0.95 (second value) are indicated near the branches. The newly described L.cryptovouauxii is highlighted in orange, L.vouauxii is highlighted in blue, and L.neglecta is highlighted in grey.
Figure 4 from: Guzow-Krzemińska B, Jabłońska A, Flakus A, Rodriguez-Flakus P, Kosecka M, Kukwa M (2019) Phylogenetic placement of Lepraria cryptovouauxii sp. nov. (Lecanorales, Lecanoromycetes, Ascomycota) with notes on other Lepraria species from South America. MycoKeys 53: 1-22. https://doi.org/10.3897/mycokeys.53.33508
Figure 4 Morphology of Leprariacryptovouauxii (A−C) and L.nothofagi (D). A Holotype (M. Kukwa 14848a) B Thallus with obscurely lobate margins (Flakus 14814) C Thallus with large and compacted aggregations of granules (Flakus 17682) D Details of thallus (Flakus 17651 & Rodriguez). Scale bars: 500 µm (A−C), 300 µm (D).
Fig. 3 in A phylogenetic survey of the ascomycete genus Arthrorhaphis (Arthrorhaphidaceae, Lecanoromycetes) including new species in Arthrorhaphis citrinella sensu lato
Fig. 3. Partial representation of the Bayesian 50% majority-rule consensus tree from analysis of MSA-2, showing the Arthrorhaphis alpina s.l. clade. Branches supported by BPP ≥ 0.95 and ML BS ≥ 70% are indicated by bold black lines; branches supported only by ML BS ≥ 70% are indicated by thin double lines. Numbers in brackets represent clades discussed in the text. "T" indicates an isotype specimen of A. alpina var. jungens. Character states: 1 Life form: juvenile parasitism absent (light green), present (reddish brown). 2 Thallus areolae: present (yellow); 3 Soredia: present (dark green), absent (white); 4 Medulla: pale yellow (yellow), white (blue), cavity (grey), absent (white); 5 Ca-oxalate crystals: present (dark brown), absent (white); 6 Ascospores: alpina type (red), jungens type (light orange), vacillans type (dark olive), 'septentrionalis type' (grey), absent (white). Graphical representation of species delimitations in bGMYC, bPtP, and bP&P: Colours represent delimited species for each species delimitation analysis independently, but have been selected to highlight delimitations congruent across analyses. White represents missing data. The colouring scheme applies only to the current figure.
Fig. 7. A in A phylogenetic survey of the ascomycete genus Arthrorhaphis (Arthrorhaphidaceae, Lecanoromycetes) including new species in Arthrorhaphis citrinella sensu lato
Fig. 7. A, Arthrorhaphis catolechioides (Moberg & Owe-Larsson NZ2:5, UPS); B, A. citrinella (Odelvik 10598, S); C, A. citrinella (Frisch 15/No100, TRH); D, A. farinosa (Ohmura 9312, TNS); E, A. farinosa (Thor 33718, UPS); F, A. bullata (Ohmura 10730, TNS). — Scale: A, B, E & F, 1 mm; C, 0.5 mm; D, 5 mm. Photos: A. Frisch.
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