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15 results for “Terfezia”
FIGURE 3 in Two new Terfezia species from Southern Europe
FIGURE 3. Terfezia cistophila: (A, B) inmature ascocarp, (C) semi-mature ascocarp, (D) mature ascocarps, (E, F) asci with ascospores. Bars: 20 μm.
FIGURE 2 in Two new Terfezia species from Southern Europe
FIGURE 2. Terfezia grisea: (A) inmature ascocarp, (B) semi-mature ascocarp, (C, D) mature ascocarps, (E, F) ascospores. Bars: 20 μm.
FIGURE 1 in Two new Terfezia species from Southern Europe
FIGURE 1. Neighbor-Joining (NJ) consensus phylogenetic tree based on ITS sequences. Bold numbers are percentages of 1000 bootstrapping replicates supporting the NJ tree presented here. Non-bold numbers are percentages of 500 bootstrapping replicates supporting the same node by the MP method.
FIGURE 2 in Terfezia lusitanica, a new mycorrhizal species associated to Tuberaria guttata (Cistaceae)
FIGURE 2. Macro and micro features of Terfezia lusitanica: (a) ascocarp collected under Tuberaria guttata, (b) mature ascocarps with T. guttata flower, (c) whitish gleba of an inmature ascocarp, (d) pseudoparenchymatous peridium, (e, f) ascospores. Bars: d) 20 μm; e) 13 μm; f) 7.5 μm.
FIGURE 1 in Terfezia lusitanica, a new mycorrhizal species associated to Tuberaria guttata (Cistaceae)
FIGURE 1. Neighbor-Joining (NJ) and Maximum Parsimony (MP) consensus phylogenetic tree of the ITS sequences. The first values on the branches are the NJ bootstrap proportions (≥50%) and the values after the slash represent the MP bootstrap proportions (≥50%) of 500 bootstrapping replicates.
FIGURE 1 in Typification of Terfezia fanfani (Ascomycota, Pezizaceae)
FIGURE 1. Terfezia fanfani: (a) Lectotype (iconotype), illustrated by Mattirolo, Malpighia 14, pl. I f. 28–32, Bar: 1 cm. (b) Epitype, macromorphological features. (c–e) Spores. (f) Peridium. (c, d, f) in 5% KOH, (e) in water, bars: 20 μm.
FIGURE 2 in Typification of Terfezia fanfani (Ascomycota, Pezizaceae)
FIGURE 2. Terfezia fanfani (epitype): (a) Macromorphological features. Fresh ascomata in situ. (b) Collection site. Bar: 1 cm.
FIGURE 3 in Genetic diversity of the genus Terfezia (Pezizaceae, Pezizales): New species and new record from North Africa
FIGURE 3. Macro- and micromorphological characteristics of Terfezia eliocrocae. a. the steppic habitat with Bedouins desert truffles harvesters. b,c. ascomata collected under Helianthemum salicifolium. d. asci and spores. e–g. ascospores (f,g. scanning electron micrograph). Bars: c = 2 cm, d = 10 μm; e–g = 5 μm.
FIGURE 2 in Genetic diversity of the genus Terfezia (Pezizaceae, Pezizales): New species and new record from North Africa
FIGURE 2. Macro- and microscopic characters of Terfezia crassiverrucosa. a. ascocarp collected under Helianthemum hirtum. b. gleba, cross section. c,d. asci with spores. e–h. ascospores (f–h. scanning electron micrograph). Bars: a–b = 1 cm, c–d = 10 μm, e = 5 μm, f–g = 5 μm, h = 2 μm.
FIGURE 1 in Genetic diversity of the genus Terfezia (Pezizaceae, Pezizales): New species and new record from North Africa
FIGURE 1. Maximum likelihood (ML) tree inferred from the combined ITS and 28S rDNA sequences of Terfezia species with Peziza depressa and Tirmania pinoyi as outgroups. The sequences obtained in the present study are highlighted in bold. The first value on the branches represent the ML bootstrap proportions (≥ 70%) and the value after the slash shows the posterior probability calculated by Bayesian analysis (≥ 0.95). Bar = 1 changes /100 characters.
Figure 3 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Figure 3 Terfezia species collected in the present work AT. arenariaBT. fanfaniCT. cistophilaDT. griseaET. dunensisFT. extremadurensisGT. lusitanicaHT. piniIT. solaris-libera.
Figure 1 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Figure 1 a Phylogenetic relationship between Terfezia species. The reconstructed phylogeny corresponds to the majority rule consensus tree higher than 0.50 of trees sampled in a Bayesian analysis, and the posterior probability values are shown for main nodes b clades with new sequenced specimens collected within the present study.
Figure 2 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Figure 2 Phylogenetic reconstruction of intra-species diversity (Fig. 1) linking to soil properties and putative host plant aT. arenariabT. fanfanicT. grisea [specimens in the circle represent deviations from the ecological grouping, see text for details] dT. lusitanica. The other species are identified and their relation to soil and host plant are presented in the main text.
Supplementary material 1 from: Santos-Silva C, Louro R, Natário B, Nobre T (2021) Lack of knowledge on ecological determinants and cryptic lifestyles hinder our understanding of Terfezia diversity. MycoKeys 84: 1-14. https://doi.org/10.3897/mycokeys.84.71372
Table S1
Terfezia claveryi mycorrhizal symbiosis
GEO Series GSE154490. Terfezia claveryi; Helianthemum almeriense. 9 samples. Type: Expression profiling by high throughput sequencing.
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