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31 results for “Tremella”
Transcriptome analysis of immune-inflammatory regulation in Tremella Fuciformis-derived Polysaccharide reeducated B16 cells subcutaneous model
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Supplementary material 2 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Supplementary material 2 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Supplementary material 1 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Supplementary material 1 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
FIGURE 8 in A new species of Tremella from Macaronesia
FIGURE 8. Bayesian majority-rule consensus tree. Bold branches were well supported by MP/ML/BI methods.
FIGURES 1–7. Tremella laurisilvae. 1 in A new species of Tremella from Macaronesia
FIGURES 1–7. Tremella laurisilvae. 1) basidiomata, Tenerife, near Ermita de la Cruz del Carmen (Hoya de las Palomas), from holotype and other specimens, scale bars = 1 cm; 2) basidiomata, Tenerife, El Rio, path to Ermita Cruz del Carmen, scale bars = 1 cm; 3) longitudinal section of basidiomata, hymenium in upper part, scale bar = 100 μm; 4a–b) hyphal anastomosis, 4c–d) clamps; 5a–b) catenulate cells, 5c–d) basidia with sterigmata; 6) basidiospores; 7) conidia. Scale bars = 10 μm. Photos of basidiomata by J.Kout; photos of microscopics by L. Quijada.
FIGURE 2 in An old familiar face: Tremella anaptychiae sp. nov. (Tremellales, Basidiomycota)
FIGURE 2. Morphological characteristics of T. anaptychiae, A morphological variation of the basidiomata on the host thallus, B micromorphological features; B1 hymenium; B2 young hyphae with haustorial branches (black arrows); B3 young cell (perhaps a probasidial initial) with a spur-like basal swelling (white arrow); B4–B5 asteroconidia and conidiogenous cell (black arrow); B6–B11 basidiospores, in B11 collapsed basidiospore with yeast-like cells; B12–B18 basidial development, note that basidia are often thick-walled, particularly towards the stalk; B19–B20 epibasidia with an apical sterigma, in B19 with an asymmetrically attached young basidiospore; B21–B24 basidia with transverse (B21), almost longitudinal (B22) or oblique (B23, B24) septa; B25 young long-stalked basidium. B26– B31; mature basidia with epibasidia in different degrees of development; B1–B11 and B19–B31, phloxin B in 5% KOH; B12–B18, Congo red and phloxin B in 5% KOH. Scale bars: A=1 mm (all photographs at the same scale), B=20 μm (B2–B31 at the same scale). B4–B5 from E. Zimmermann 1065, all other photographs from the holotype.
FIGURE 1 in An old familiar face: Tremella anaptychiae sp. nov. (Tremellales, Basidiomycota)
FIGURE 1. Fifty-percent majority rule Bayesian consensus phylogram with average branch lengths, from the combined analyses of ITS1, 5.8S, ITS2, and 28S datasets. Bayesian Posterior Probability values are indicated over the branches, and bootstrap values obtained in the maximum likelihood analysis are added below the branches. White circles represent nodes supported only in the Bayesian analysis. Black circles represent nodes supported in both Bayesian and ML analyses. BPP values ≥ 0.5 are indicated above the branches, and ML bootstrap values ≥ 50%, below branches. The newly described species is highlighted in bold font, and the type specimen is indicated with (T). Some lichenicolous groups distinguished by Millanes et al. (2011) are indicated in grey in the right margin. Branch lengths are scaled to the expected number of nucleotide substitutions per site.
FIGURE 3 in A new species of Tremella s.s. (Tremellaceae, Basidiomycota) from southeastern China
FIGURE 3 Microscopic structures of Tremella zhejiangensis (Wu 346). A. Basidiospores; B. Germination tubes of basidiospores; C. Conidia like cells function as conidia; D–E. Basidia at different stages; F. Hyphae with clamp connections. Scale bars = 10 µm. Photos by: Long-Fei Fan.
FIGURE 1 in A new species of Tremella s.s. (Tremellaceae, Basidiomycota) from southeastern China
FIGURE 1 Phylogeny of Tremella s.s. by BI analysis based on ITS (ITS1, 5.8S, ITS2) and nLSU rDNA sequences. Branches are labeled with parsimony bootstrap proportions and maximum likelihood bootstrap> 70%, and Bayesian posterior probabilities> 0.95, respectively.
FIGURE 1. A–P in A new species of Tremella from India
FIGURE 1. A–P: Tremella poilkavensis. A. Basidiocarp growing on host (white arrow); B–G. Swollen cells; H. Basidiospores with microconidia; I & L. Basidia; J. Conidiospores from basidia; K. Cross section showing hymenium, trama; M. Yeast-like microconidia; N. Branched haustoria; O–P. Haustoria attached to the host hyphae.
FIGURE 2 in A new species of Tremella from India
FIGURE 2. Maximum Likelihood phylogram based on the combined nrITS and nrLSU sequences. Bootstrap support values are indicated above branches. The new species is indicated in bold.
Figure 6 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Figure 6 - Microscopic structure of Tremella salmonea (HMAS 279588). A Section through hymenium B Hyphae from context C Swollen cells D Conidia in cluster E–G Mature basidia H–M Basidiospres. Scale bars: 10 μm (A–M).
Figure 2 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Figure 2 - Tremella basidiomaticola CGMCC 2.5724T A Vegetative cells grown in YM agar for 7 days at 17 °C B Ballistoconidia produced on CMA agar for 7 days at 17 °C. Scale bars: 5 μm.
Figure 5 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Figure 5 - Microscopic structure of Tremella erythrina (HMAS 255317). A Section through hymenium B Hyphae from context C Hyphidia with basidia of different developmental stages D–H Mature basidia I–K Basidiospres. Scale bars: 10 μm (A–C), 5 μm (D–K).
Figure 4 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Figure 4 - Microscopic structure of Tremella cheejenii (HMAS 279589). A Section through hymenium B Hyphidia from context C Hyphae from context D Probasidia E–H Mature basidia I Mature basidia and conidia produced from the sterigmata J–K Basidiospres and its germination with short sterigma. Scale bars: 10 μm (A–D), 5 μm (E–J).
Figure 3 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Figure 3 - Macromorphology of Tremella basidiomata. A T. cheejenii B T. erythrina C T. salmonea . Scale bars: 1 cm.
Figure 1 from: Zhao Y, Liu X-z, Bai F-y (2019) Four new species of Tremella (Tremellales, Basidiomycota) based on morphology and DNA sequence data. MycoKeys 47: 75-95. https://doi.org/10.3897/mycokeys.47.29180
Figure 1 - The maximum likelihood tree of the novel species and related taxa in Tremella sensu stricto based on the combined sequences of the nuc rDNA ITS region and nuc 28S rDNA D1/D2 domain. Bootstrap supports (BP) (> 50%) of maximum likelihood method and Bayesian posterior probability (BPP) values (> 0.9) are shown at each node. Note: ns, not supported (BP < 50% or PP < 0.9); nm, not monophyletic.
Figure 6 from: Fan L-F, Alvarenga RLM, Gibertoni TB, Wu F, Dai Y-C (2021) Four new species in the Tremella fibulifera complex (Tremellales, Basidiomycota). MycoKeys 82: 33-56. https://doi.org/10.3897/mycokeys.82.63241
Figure 6 Microscopic structures of Tremella guangxiensis (Wu 3) A basidiospores B germination tubes of basidiospores and secondary spores C conidia and conidiophores D basidia at different stages E, F probasidia G hyphae with clamp connections and clamp complexes H hyphidia I a section of hymenium. Scale bars: 10 μm (A–H); 20 μm (I).
Figure 7 from: Fan L-F, Alvarenga RLM, Gibertoni TB, Wu F, Dai Y-C (2021) Four new species in the Tremella fibulifera complex (Tremellales, Basidiomycota). MycoKeys 82: 33-56. https://doi.org/10.3897/mycokeys.82.63241
Figure 7 Microscopic structures of Tremella latispora (Dai 17568) A basidiospores B germination tubes of basidiospores and secondary spores C conidia and conidiophores D, E basidia F, G probasidia H, I hyphae with clamp connections and clamp complexes. Scale bars: 10 μm (A–I).
Figure 9 from: Fan L-F, Alvarenga RLM, Gibertoni TB, Wu F, Dai Y-C (2021) Four new species in the Tremella fibulifera complex (Tremellales, Basidiomycota). MycoKeys 82: 33-56. https://doi.org/10.3897/mycokeys.82.63241
Figure 9 Microscopic structures of Tremella subfibulifera (Alvarenga 334) A basidiospores and secondary spores B germination tubes of basidiospores C conidia and conidiophores D–F basidia and probasidia G hyphae with clamp connections and clamp complexes H a section of hymenium. Scale bars: 10 μm (A–H).
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