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87 results for “Inocybe”
FIGURE 5 in Inocybe messapica (Inocybaceae, Agaricales, Basidiomycota), a new species in section Splendentes, from Mediterranean oak woods
FIGURE 5. Inocybe athenana: BA) Basidia; CA) Caulocystidia; CH) Cheilocystidia; PA) Paracystidia; PL) Pleurocystidia; SP) Basidiospores; VE) detail of velipellis (DB15-6-19-2!, isotype). Drawings by M. Cervini.
FIGURE 3. a–b. Basidiospores. c–d. Basidia e. Pleurocystidia. f. cheilocystidia and cheiloparacystidia. g. Pileipellis. h. Hymenophoral trama. i. Stipitipellis hyphae. J. Stipe trama hyphae. K in Inocybe carpinicola (Inocybaceae, Agaricales), a new nodulose-spored species from Hainan Province, China
FIGURE 3. a–b. Basidiospores. c–d. Basidia e. Pleurocystidia. f. cheilocystidia and cheiloparacystidia. g. Pileipellis. h. Hymenophoral trama. i. Stipitipellis hyphae. J. Stipe trama hyphae. K. Stipitipellis. Scale Bars: a–h = 10 μm. Photo by P.M. He
FIGURE 2 in Inocybe carpinicola (Inocybaceae, Agaricales), a new nodulose-spored species from Hainan Province, China
FIGURE 2. Basidiomata of Inocybe carpinicola. a–b. FYG6297 (FCAS3617). c–g. FCAS6307 (FCAS3619, holotype). d-g. FCAS3154. Photos by Y.G. Fan.
FIGURE 1 in Inocybe carpinicola (Inocybaceae, Agaricales), a new nodulose-spored species from Hainan Province, China
FIGURE 1. Phylogenetic placement of Inocybe carpinicola inferred from a multilocus (rDNA-ITS, nrLSU, and rpb2) dataset. Bayesian Inference posterior probabilities (BI-PP) ≥0.95 and ML bootstrap proportions (ML-BP) ≥70 are represented as BI-PP/ML-BP.
FIGURE 4. Inocybe tenuicystidiata, Fresh basidiomata. A in Inocybe hamadryadis (Inocybaceae, Agaricales), a new smooth-spored species from Europe and West Asia
FIGURE 4. Inocybe tenuicystidiata, Fresh basidiomata. A) DB26-10-19-2; B) DB29-10-16-7. Photos by D. Bandini.
FIGURE 1 in Inocybe hamadryadis (Inocybaceae, Agaricales), a new smooth-spored species from Europe and West Asia
FIGURE 1. Best tree of the Maximum Likelihood analysis of selected sequences of Inocybe from ITS-LSU sequence data. Maximum Likelihood bootstrap values (ML-BP) / Bayesian Posterior probabilities (PP) are shown on branches, ordered as ML-BP/PP. Thickened branches received support at least in one analysis (ML-BP ≥70 % and/or PP ≥0.95). Sequences in bold refer to type specimens. Original identification, ISO country code/potential host/voucher or isolate numbers are provided in this order for each taxon. Names recognized are indicated on the right side.
FIGURE 3 in Inocybe hamadryadis (Inocybaceae, Agaricales), a new smooth-spored species from Europe and West Asia
FIGURE 3. Inocybe hamadryadis MA-Fungi 98476 (holotype): microscopic structures (Ca: Caulocystidia, Ch: Cheilocystidia, Cpa: Cauloparacystidia, Pa: Paracystidia, Pl: Pleurocystidia, sp: Basidiospores). Drawings by D. Bandini
FIGURE 2 in Inocybe hamadryadis (Inocybaceae, Agaricales), a new smooth-spored species from Europe and West Asia
FIGURE 2. Inocybe hamadryadis: a: MA-Fungi 98476 (holotype) fresh basidiomata b: MA- Fungi 98651 fresh basidomata c: Basidiospores; d: Pleurocystidia; e: Cheilocystidia; f: Caulocystidia. (All microphotos from MA-Fungi 98476, holotype—Scale bars: a–b: 1 cm. Photos by F.J. Rodríguez-Campo.
A new species of smooth-spored Inocybe from Coniferous forests of Pakistan
<p><em>Inocybe</em> <em>bhurbanensis</em> is described and illustrated as a new species from Himalayan Moist Temperate forests of Pakistan. It is characterized by fibrillose, conical to convex, umbonate, brown to dark brown pileus, non-pruinose, fibrillose stipe with whitish tomentum at the base and smooth basidiospores that are larger (9 × 5.2 µm) and thicker caulocystidia (up to 21 m) as compared to the sister species <em>Inocybe</em> <em>demetris</em>. Phylogenetic analyses of a nuclear rDNA region encompassing the internal transcribed spacers 1 and 2 along with 5.8S rDNA (ITS) and the 28S rDNA D1–D2 domains (28S) also confirmed its novelty.</p>
A new species of smooth-spored Inocybe from Coniferous forests of Pakistan
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Data from: DNA barcoding analyses and taxonomy reveal two new species of genus <em>Inocybe</em> from pine forests of Pakistan
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Figure 6 from: Li SN, Xu F, Jiang M, Liu F, Wu F, Zhang P, Fan YG, Chen ZH (2021) Two new toxic yellow Inocybe species from China: morphological characteristics, phylogenetic analyses and toxin detection. MycoKeys 81: 185-204. https://doi.org/10.3897/mycokeys.81.68485
Figure 6 SEM images showing basidiospores of aInocybe squarrosoluteabInocybe squarrosofulva. Scale bars: 5 µm.
Figure 2 from: Li SN, Xu F, Jiang M, Liu F, Wu F, Zhang P, Fan YG, Chen ZH (2021) Two new toxic yellow Inocybe species from China: morphological characteristics, phylogenetic analyses and toxin detection. MycoKeys 81: 185-204. https://doi.org/10.3897/mycokeys.81.68485
Figure 2 Basidiomata of Inocybe squarrosoluteaa, b MHHNU8536 c MHHNU31006, and d MHHNU31427. Scale bars: 10 mm.
Figure 5 from: Li SN, Xu F, Jiang M, Liu F, Wu F, Zhang P, Fan YG, Chen ZH (2021) Two new toxic yellow Inocybe species from China: morphological characteristics, phylogenetic analyses and toxin detection. MycoKeys 81: 185-204. https://doi.org/10.3897/mycokeys.81.68485
Figure 5 Microscopic features of Inocybe squarrosofulva (MHHNU31548, holotype) a, b basidiospores, c basidia with probasidium d gill edge e pleurocystidia f cheilocystidia and paracystidia g caulocystidia and cauloparacystidia h oleiferous hyphae i hymenial hyphae, and j, k pileipellis. Scale bars: 10 µm.
Figure 1 from: Li SN, Xu F, Jiang M, Liu F, Wu F, Zhang P, Fan YG, Chen ZH (2021) Two new toxic yellow Inocybe species from China: morphological characteristics, phylogenetic analyses and toxin detection. MycoKeys 81: 185-204. https://doi.org/10.3897/mycokeys.81.68485
Figure 1 Phylogenetic relationship and placement of Inocybe squarrosofulva and I. squarrosolutea inferred from the combined dataset (ITS, nrLSU, and rpb2) using ML. Bootstrap values ≥80% and Bayesian posterior probabilities ≥0.95 are reported on the branches. Sequences generated in this study are shown in bold. The new species is indicated in red. The red branch indicates the confirmed presence of muscarine, the gray branch indicates ambiguous for muscarine, and the black branch indicates a lack of muscarine.
Figure 3 from: Li SN, Xu F, Jiang M, Liu F, Wu F, Zhang P, Fan YG, Chen ZH (2021) Two new toxic yellow Inocybe species from China: morphological characteristics, phylogenetic analyses and toxin detection. MycoKeys 81: 185-204. https://doi.org/10.3897/mycokeys.81.68485
Figure 3 Microscopic features of Inocybe squarrosolutea (MHHNU31427) a basidiospores b basidia with probasidium c gill edge d cheilocystidia and paracystidia e pleurocystidia f caulocystidia and cauloparacystidia g, h pileipellis i oleiferous hyphae, and j hymenial hyphae. Scale bars: 10 µm.
FIGURE 2 in Inocybe messapica (Inocybaceae, Agaricales, Basidiomycota), a new species in section Splendentes, from Mediterranean oak woods
FIGURE 2. Inocybe messapica: basidiomata in habitat (AMB 12794!, holotype). Photo M. Cervini.
Figure 3 from: Kuo M, Matheny PB (2015) Contemporary documentation of the rare eastern North American species Inocybe insignis (Inocybaceae, Agaricales). MycoKeys 11: 23-31. https://doi.org/10.3897/mycokeys.11.5604
Figure 3 - Microscopic features of Inocybe insignis (Kuo 07101101). A Basidiospores B Basidiospores and cheilocystidia C Pileipellis hyphae D Caulocystidia and cauloparacystidia.
Figure 2 from: Kuo M, Matheny PB (2015) Contemporary documentation of the rare eastern North American species Inocybe insignis (Inocybaceae, Agaricales). MycoKeys 11: 23-31. https://doi.org/10.3897/mycokeys.11.5604
Figure 2 - Basidiomes of Inocybe insignis (Kuo 07101101). A–C Kuo 07101101 D Holotype collection (A.H. Smith 9781, held in MICH); The Regents of the University of Michigan, Ann Arbor, MI 48109. Used with permission. Contact the University of Michigan Herbarium for details.
Figure 1 from: Kuo M, Matheny PB (2015) Contemporary documentation of the rare eastern North American species Inocybe insignis (Inocybaceae, Agaricales). MycoKeys 11: 23-31. https://doi.org/10.3897/mycokeys.11.5604
Figure 1 - Maximum likelihood tree for the Inocybe asterospora group. The tree is inferred from combined ITS-nLSU-rpb2 DNA sequence data. Values above branches represent bootstrap proportions (only those >70% are shown). The scale bar represents the number of expected substitutions per site.
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