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87 results for “Marasmius”
FIG. 13 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 13. — Pictures of fresh basidiomata of Marasmius haematocephalus (Mont.) Fr.: A, JO533 from Atlantic Rainforest (epitype); B, JO1363 from Amazon Forest. Scale bars: 10 mm.
FIG. 17. — Marasmius roseus J.S in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 17. — Marasmius roseus J.S. Oliveira, sp. nov. (JO352): A, Siccus-type broom cells of the pileipellis (type 1); B, Siccus- to Rotalis-type broom cells (type 2). Scale bar: 10 µm.
FIG. 16. — Marasmius roseus J.S in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 16. — Marasmius roseus J.S. Oliveira, sp. nov. (JO352): A, basidiomata; B, basidiospores; C, basidioles; D, pleurocystidia; E, cheilocystidia. Scale bar: A, 10.5 mm; B-E, 10 µm.
FIG. 6 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 6. — Pictures of fresh basidiomata: A, Marasmius bambusinus (Fr.) Fr. (JO343); B, M. gardneri Singer (JO491). Scale bars: 10 mm.
FIG. 7 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 7. — Marasmius bambusinus (Fr.) Fr. (JO343): A, basidiomata; B, basidiospores; C, basidia; D, basidioles; E, pleurocystidia; F, cheilocystidia; G, Siccus-type broom cells of the pileipellis. Scale bar: A, 10.3 mm; B-G, 10 µm.
FIG. 19 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 19. — Marasmius cf. pallescens Murrill (JO426): A1, A2, basidiomata; B, basidiospores; C, basidioles; D, basidia; E, pleurocystidia; F, cheilocystidia; G, Siccus-type broom cells of the pileipellis. Scale bar: A1, 12.5 mm; A2, 10.5 mm; B-G, 10 µm.
FIG. 18 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 18. — Marasmius rubicundus (Singer) J.S. Oliveira, stat. nov. (JO464): A, basidiomata; B, basidiospores; C, basidia; D, basidioles; E, pleurocystidia; F, cheilocystidia; G, Siccus-type broom cells of the pileipellis. Scale bar: A, 19.2 mm; B-G, 10 µm.
FIG. 15 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 15. — Pictures of fresh basidiomata: A, Marasmius roseus J.S. Oliveira, sp. nov. (JO352); B, M. rubicundus (Singer) J.S. Oliveira, stat. nov. (JO464); C, M. cf. pallescens Murrill (JO426). Scale bars: 10 mm.
FIG. 14 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 14. — Marasmius haematocephalus (Mont.) Fr. (JO533): A1, A2, basidiomata; B, basidiospores; C, basidioles; D, basidia; E, pleurocystidia; F, cheilocystidia; G, Siccus-type broom cells of the pileipellis. Scale bar: A1, 8.9 mm; A2, 5.9 mm; B-G, 10 µm.
FIG. 11. — Marasmius castanocephalus J.S in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 11. — Marasmius castanocephalus J.S. Oliveira, sp. nov. (JO523): A1, A2, basidiomata; B, basidiospores; C, basidioles; D, pleurocystidia; E, cheilocystidia; F, Siccus-type broom cells of the pileipellis. Scale bar: A1, 18 mm; A2, 10 mm; B-F, 10 µm.
FIG. 2 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 2. — Best-scored Maximum Likelihood Tree (TL = 0.164547) built from multilocus (nrITS and nrLSU) analysis based on siccus_cp1 in Fig. 1 (DATASET 2a). Support values are BS (70 to 100 %) and PP (0.95 to 1.0). Black, thick stems indicate high support and gray, thick stems indicate weak to moderate support. The gray shades highlight siccus_cp2a, siccus_cp2b, and M. siccus s. str. Blue arrows indicate the geographic origin of the strains. Global map is based on Olson & Dinerstein (2002) with forested areas depicted in their biogeographic realms.
FIG. 10. — Marasmius auranticapitatus J.S in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 10. — Marasmius auranticapitatus J.S. Oliveira, sp. nov. (M. Capelari & L.A.S. Ramos 4554): A, basidiomata; B, basidiospores; C, basidioles; D, pleurocystidia; E, cheilocystidia; F, Siccus-type broom cells of the pileipellis. Scale bar: A, 10 mm; B-F, 10 µm.
FIG. 12. — Marasmius coasiaticus J.S in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 12. — Marasmius coasiaticus J.S. Oliveira, sp. nov. (JO323): A, basidiomata; B, basidiospores; C, basidia; D, basidioles; E, pleurocystidia; F, cheilocystidia; G, Siccus-type broom cells of the pileipellis. Scale bar: A, 12.8 mm; B-G, 10 µm.
FIG. 5 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 5. — Best-scored Maximum Likelihood trees (left side, TL = 0.111755; 0.135069) and 50 % majority-rule consensus trees (right side, TL = 0.106492; 0.120539) of Bayesian analyses built from multilocus (nrITS + rpb2 + ef1-α) analyses (DATASET 4) of the haemat_cp2a (Fig. 3). Black, thick stems indicate high support and gray, thick stems indicate weak to moderate support. Orange shade indicates M. auranticapitatus J.S. Oliveira, sp. nov. and the pink shade indicates M. rubicundus (Singer) J.S. Oliveira, stat. nov. Trees on the top includes MC4554 (holotype of M. auranticapitatus J.S. Oliveira, sp. nov.).
FIG. 1. — 50 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 1. — 50 % majority-rule consensus tree (tree length – TL = 27.160273) of Bayesian analysis reconstructed from multilocus (nrITS and nrLSU) analysis of DATA- SET 1 (M. haematocephalus (Mont.) Fr., M. siccus (Schwein.) Fr. and close species). Support values are PP (0.95 to 1.0) and BS (70 to 100 %). Black, thick stems indicate high support and gray, thick stems indicate weak to moderate support. Global map is based on Olson & Dinerstein (2002) with depicted forested areas in their biogeographic realms. The red area on the map is the putative distribution coverage of haemat_cp1 (in gray shade) on continental and insular terrestrial areas; the blue area represents the putative distribution coverage of siccus_cp1 (in gray shade) based on Fig. S1 in the Appendix, with branches colored accordingly.
FIG. 9 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 9. — Pictures of fresh basidiomata: A, Marasmius auranticapitatus J.S. Oliveira, sp. nov. (M. Capelari & L.A.S. Ramos 4554); B, M. castanocephalus J.S. Oliveira, sp. nov. (JO523); C, M. coasiaticus J.S. Oliveira, sp. nov. (JO323). Scale bars: 10 mm.
FIG. 8 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 8. — Marasmius gardneri Singer (JO491): A1, A2, basidiomata; B, basidiospores; C, basidioles; D, pleurocystidia; E, cheilocystidia; F, Siccus-type broom cells of the pileipellis. Scale bar: A1, 10.8 mm; A2, 5.9 mm; B-F, 10 µm.
FIG. 3 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 3. — Best-scored Maximum Likelihood Tree (TL = 0.555713) built from multilocus (nrITS and nrLSU) analysis based on haemat_cp1 in Fig. 1 (DATASET 2b). Support values are BS (70 to 100 %) and PP (0.95 to 1.0). Black, thick stems indicate high support and gray, thick stems indicate weak to moderate support. The gray shades highlight the haemat_cp2a-e and the cryptic species in red rectangles if pileus color is a determinant constrain. Red arrows indicate the geographic origin of strains in the tree. Global map is based on Olson & Dinerstein (2002) with forested areas depicted in their biogeographic realms.
FIG. 4 in Disentangling cryptic species in the Marasmius haematocephalus (Mont.) Fr. and M. siccus (Schwein.) Fr. species complexes (Agaricales, Basidiomycota)
FIG. 4. — Best-scored Maximum Likelihood tree (left side, TL = 0.054576) and 50 % majority-rule consensus tree (right side, TL = 4.954404) of Bayesian analyses built from multilocus (nrLSU and nrITS) analyses (DATASET 3) of the haemat_cp2a (Fig. 3). Black, thick stems indicate high support and gray, thick stems indicate weak to moderate support. Dark red shade indicates M. haematocephalus (Mont.) Fr., the orange shade indicates M. auranticapitatus J.S. Oliveira, sp. nov. and the pink shade indicates M. rubicundus (Singer) J.S. Oliveira, stat. nov.
FIGURE 5. a–i in Taxonomic and phylogenetic evidence reveal a new species and a new record of the genus Marasmius (Marasmiaceae) from Pakistan
FIGURE 5. a–i Microscopic features of Marasmius paratrichotus, a = Basidia, b = Basidiols, c = Basidiospores, = d = Cheilocystidia, e = Pileipellis Siccus-type broom cells, f = Pileipellis hyphae, g = Caulocystidia, h = Caulosetae, i = Stipitipellis hyphae. Scale bars: a–e = 5 µm, f = 3 µm, g–h = 5 µm, i = 3 µm. Photos by: Fazli Maula.
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