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41 results for “Morchella”
FIGURES 39–41 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 39–41. Habitus of Anthobium morchella group: 39—A. morchella (paratype), 40—A. hydraenoides (paratype), 41—A. puetzi (holotype). Scale bars: 1.0 mm.
FIGURE 38 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURE 38. Distribution of Anthobium gracilipalpe group: A. gracilipalpe (black circles), A. daliense (black triangle), A. nivale (black square).
FIGURE 37 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURE 37. Type locality of Anthobium nivale in the Gaoligong Shan range, Yunnan, China (photograph: M. Schülke).
FIGURES 35–36 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 35–36. Aedeagus of Anthobium daliense (holotype): 35—parameral view, 36—lateral view. Scale bar: 0.1 mm.
FIGURES 4–15 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 4–15. Mouthparts (dorsal view) of Anthobium (4, 7, 10, 13—A. gracilipalpe, 5, 8, 11, 14—A. morchella, 6, 9, 12, 15—A. nigrum): 4–6—labrum, 7–9—mandibles (left and right), 10–12—maxilla (right), 13–15—labium and submentum. Scale bars: 0.1 mm.
FIGURES 28–30 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 28–30. Female genital segment (dorsal view) of Anthobium: 28—A. gracilipalpe, 29—A. morchella, 30—A. nigrum. Scale bars: 0.1 mm.
FIGURES 1–3 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 1–3. Habitus of Anthobium gracilipalpe group: 1—A. gracilipalpe (INDIA: Garhwal), 2—A. nivale (holotype), 3— A. daliense (holotype). Scale bars: 1.0 mm.
FIGURES 31–34 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 31–34. Aedeagus of Anthobium gracilipalpe (31–32: paratype) and A. nivale (33–34: holotype): 31, 33—parameral view, 32, 34—lateral view. Scale bars: 0.1 mm.
FIGURES 16–27 in A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups
FIGURES 16–27. Abdominal segments of Anthobium (16, 19, 22, 25—A. gracilipalpe, 17, 20, 23, 26—A. morchella, 18, 21, 24, 27—A. nigrum): 16–18—male tergite VIII (dorsal view), 19–21—male sternite VIII (ventral view), 22–24—female tergite VIII (dorsal view), 25–27—female sternite VIII (ventral view). Scale bars: 0.1 mm.
FIGURE 2 in Epitypification of Morchella steppicola (Morchellaceae, Pezizales), a morphologically, phylogenetically and biogeographically distinct member of the Esculenta Clade from central Eurasia
FIGURE 2. Phylogeny of Morchella steppicola and M. sceptriformis inferred via maximum parsimony (MP) and Bayesian analyses of ITS rDNA sequence data. The phylogeny was rooted using the midpoint method. MP bootstrap (≥70%) values and posterior probabilities (≥95%), respectively, are shown near branches.
FIGURE 1 in Epitypification of Morchella steppicola (Morchellaceae, Pezizales), a morphologically, phylogenetically and biogeographically distinct member of the Esculenta Clade from central Eurasia
FIGURE 1. Geographic distribution of M. steppicola spanning approximately 4800 km in central Eurasia based on our own data, published literature and personal communication. Terrestrial ecoregions of the world are according to Olson et al. (2001).
FIGURE 4. Morchella steppicola. a in Epitypification of Morchella steppicola (Morchellaceae, Pezizales), a morphologically, phylogenetically and biogeographically distinct member of the Esculenta Clade from central Eurasia
FIGURE 4. Morchella steppicola. a. Hairs on stipe surface (CWU-D208). b. Mature asci with eight uniseriate ascospores (TAAM204905). c. Clavate paraphyses (TAAM204905). d. Freshly collected ascospores with guttules (CWU-D208); e. SEM of epitype specimen (CWU- D208) ascospore with longitudinal ridges.
FIGURE 3 in Epitypification of Morchella steppicola (Morchellaceae, Pezizales), a morphologically, phylogenetically and biogeographically distinct member of the Esculenta Clade from central Eurasia
FIGURE 3. Mature fruit bodies of Morchella steppicola. a–c. Epitype specimen (CWU-D208) from Ukraine. d. Collection from Uzbekistan (TAAM205794).
FIGURE 3 in New insights on post-fire morels (Morchella spp.) in Italy
FIGURE 3. Habitats and macro-morphology of M. vulgaris f. atrovelutipes (Mvu39) (a–d) and M. tomentosa (Mto1) (e–g). a, e: collection sites; b, f: ascoma; c, g: ascoma in section; d: detail of the stipe of M. vulgaris f. atrovelutipes.
FIGURE 4 in New insights on post-fire morels (Morchella spp.) in Italy
FIGURE 4. Micro-morphology of M. vulgaris f. atrovelutipes (Mvu39). a: empty asci; b: paraphyses; c: acroparaphyses; d–e: hairs on outer stipe surface; f: spherocytes of the inner stipe surface. Bars = 40 µm.
Transcriptome and metabolome analyses reveal the regulatory network governing red fruitbody disease in Morchella
GEO Series GSE212851. Morchella sextelata. 6 samples. Type: Expression profiling by high throughput sequencing.
Morchella importuna SI transcriptome raw sequence
GEO Series GSE153704. Morchella importuna. 4 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 2 in New insights on post-fire morels (Morchella spp.) in Italy
FIGURE 2. Phylogeny of the Mel1 clade within Morchella genus (Richard et al. 2015) based on the full-length ITS1-5.8S-ITS2 sequences. Throughout bootstrap of maximum-likelihood analysis (>60) and posterior probabilities of Bayesian analysis (>0.85) are reported on nodes. Black circles identify strongly supported nodes (bootstrap> 80; posterior probability> 0.95). Specimens are labelled by their GenBank accession number, the name reported in the published reference when available and the country of origin.
FIGURE 5 in New insights on post-fire morels (Morchella spp.) in Italy
FIGURE 5. Micro-morphology of M. tomentosa (Mto1). a: hairs on sterile ridges; b: hairs on ridges in water; c: hair on ridges in congo red; d: hairs on ridges under Scanning Electron Microscope (SEM); e: asci in congo red; f: paraphyses in congo red; g: acroparaphyses in congo red; h: spores in congo red; i: spores in water; j: hairs on outer stipe surface in congo red; k: hairs on inner stipe surface; l: hairs on inner stipe surface in water. Bars = 20 µm (b–d, i) and 40 µm (e–h, j, l).
FIGURE 1 in New insights on post-fire morels (Morchella spp.) in Italy
FIGURE 1. Phylogeny of the Mes17 clade within Morchella genus (Richard et al. 2015) based on the full-length ITS1-5.8S-ITS2 sequences. Throughout bootstrap of maximum-likelihood analysis (>60) and posterior probabilities of Bayesian analysis (>0.85) are reported on nodes. Black circles identify strongly supported nodes (bootstrap> 80; posterior probability> 0.95). Specimens are labelled by their GenBank accession number, the name reported in the published reference when available and the country of origin.
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