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97 results for “fungal biodiversity”

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FIG. 9 in Fungal Biodiversity Profiles 81-90

FIG. 9. — Original tree generated by Neighbor-Joining (NJ) phylogenetic analysis, rooted with midpoint. NJ analysis was conducted in MEGA X, using bootstrap method (1000 replicates), p-distance as substitution model, transitions and transversions both included, uniform rates among sites, homogeneous pattern among lineages and pairwise deletion for gaps treatment. The bootstrap proportions higher than 70% are indicated above the nodes. New species are in bold. Sample labels are provided in the order of species name, GenBank accession, and geographical origin. For new species, sample numbers with initials of collectors are provided after GenBank accessions.

opencc-zeroAug 2019View details →
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FIG. 8 in Fungal Biodiversity Profiles 81-90

FIG. 8. — Line drawings of Laccaria indohimalayana K. Das, I. Bera & Vizzini, sp. nov. (KD 17-20, holotype): A, basidiospores; B, basidia; C, sterile elements on face of the lamellae; D, sterile elements on edge of lamellae; E, hyphal elements in pileipellis. Scale bars: A-E, 10 µm.

opencc-zeroAug 2019View details →
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FIG. 7. — Laccaria indohimalayana K. Das, I in Fungal Biodiversity Profiles 81-90

FIG. 7. — Laccaria indohimalayana K. Das, I. Bera & Vizzini, sp. nov. (KD 17-20, holotype): A, B, fresh basidiomata in the field and basecamp; C, lamellae; D, E, transverse section through pileipellis; F-H, sterile elements on the face of the lamellae; I, 2- to 4-spored basidia; J, K, sterile elements on the edge of the lamellae; L, transverse section through stipitipellis; M, N, basidiospores under SEM. Scale bars: D-L, 10 µm; M, N, 2 µm.

opencc-zeroAug 2019View details →
zenodo40/100

FIG. 5 in Fungal Biodiversity Profiles 81-90

FIG. 5. — Hymenochaete sharmae Hembrom, K. Das & A. Parihar, sp. nov., (MEH-70191, holotype), microscopic features: A, transverse section through basidi- omata showing arrangement of hyphae, setae, basidia, basidioles, cystidioles and hyphidia; B, setae; C, basidiospores; D, hyphidia; E, basidia; F, cystidioles; G, basidioles. Scale bars: A-G, 10 µm.

opencc-zeroAug 2019View details →
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FIG. 20. — Russula clavatohyphata R.P. Bhatt, A in Fungal Biodiversity Profiles 81-90

FIG. 20. — Russula clavatohyphata R.P. Bhatt, A. Ghosh, Buyck & K. Das, sp. nov. (AG 15-756): A-D, fresh and sectioned basidiomata in the field and basecamp; E-G, radial section through pileipellis showing elements; H-K, transverse section through lamellae showing pleurocystidia; L, SEM micrograph of basidiospores. Scale bars: A, 50 mm; E-K, 10 µm; L, 3 µm.

opencc-zeroAug 2019View details →
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FIG. 3 in Fungal Biodiversity Profiles 81-90

FIG. 3. — Phylogram inferred from maximum likelihood analysis using raxmlGUI based on nrLSU sequences. One thousand bootstrap replicates were analyzed to obtain the nodal support values. Bootstrap support values (>70%) obtained from ML analysis are shown above or below the branches at nodes. The novel species Hymenochaete sharmae Hembrom, K. Das & A. Parihar, sp. nov., (KY929017, MK588753), is shown in bold.

opencc-zeroAug 2019View details →
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FIG. 1 in Fungal Biodiversity Profiles 81-90

FIG. 1.— Distribution of Hymenochaete sharmae Hembrom, K. Das & A. Parihar, sp. nov., in Rajmahal hills, Jharkhand, India. Map was prepared with the help of ArcGIS installed in Central National Herbarium of Botanical Survey of India, Howrah, India.

opencc-zeroAug 2019View details →
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FIG. 4 in Fungal Biodiversity Profiles 81-90

FIG. 4. — Hymenochaete sharmae Hembrom, K. Das & A. Parihar, sp. nov., (MEH-70191, holotype), morphological features: A-C, basidiomata in the field; D, margin; E-G, hyphidia; H, cystidioles; I-N, setae; O, basidiospores. Scale bars: C, 50 mm; D, 10 mm; E-O, 10 µm.

opencc-zeroAug 2019View details →
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FIG. 26. — Serpula dendrocalami C.L in Fungal Biodiversity Profiles 81-90

FIG. 26. — Serpula dendrocalami C.L. Zhao, sp. nov. (holotype), microscopic structures: A, basidiospores; B, basidia and basidioles; C, a section of hymenium; D, hyphae from trama; E, hyphae from context; F, skeletal hyphae from context. Scale bars: A, 5 µm; B-F, 10 µm.

opencc-zeroAug 2019View details →
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FIG. 19 in Fungal Biodiversity Profiles 81-90

FIG. 19. — Phylogram generated from Maximum Likelihood approach (ML) in raxmlGUI 1.2 (Stamatakis et al. 2008; Silvestro & Michalak 2012) with 1000 bootstrap replicates. One thousand bootstrap replicates were analyzed to obtain the nodal support values. Bootstrap support values (>70%) are shown above or below the branches at nodes. The Indian specimens of Russula clavatohyphata R.P. Bhatt, A. Ghosh, Buyck & K. Das, sp. nov., with GenBank Accession Numbers are shown in bold red.

opencc-zeroAug 2019View details →
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FIG. 6. — A in Fungal Biodiversity Profiles 81-90

FIG. 6. — A maximum likelihood (ML) phylogram inferred from raxmlGUI (Silvestro & Michalak 2012) based on nrITS sequences. One thousand bootstrap replicates were analyzed to obtain the nodal support values. Bootstrap support values (>70%) obtained from ML analysis are shown above or below the branches at nodes. Two collections (KD 17-20 and KD 17-46) of the novel Indian species Laccaria indohimalayana K. Das, I. Bera & Vizzini, sp. nov., are shown in bold red with GenBank accession numbers MK584157 and MK575505 respectively.

opencc-zeroAug 2019View details →
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FIG. 2 in Fungal Biodiversity Profiles 81-90

FIG. 2. — Phylogram inferred from Maximum Likelihood analysis using raxmlGUI based on nrITS sequences. One thousand bootstrap replicates were analyzed to obtain the nodal support values. Bootstrap support values (>70%) obtained from ML analysis are shown above or below the branches at nodes. The novel species Hymenochaete sharmae Hembrom, K. Das & A. Parihar, sp. nov., (KY929018, MK588836) is shown in bold.

opencc-zeroAug 2019View details →
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FIG. 14 in Fungal biodiversity profiles 111-120

FIG. 14. — Phaeolus sharmae Hembrom, A. Parihar, K. Das & A. Ghosh, sp. nov. (from holotype): A, B, habitat; C, habit; D, gloeoplerous hyphae; E, G, cystidia; H, basidioles and basidia; I, basidiospores. Scale bars: 10 µm.

opencc-zeroMar 2022View details →
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FIG. 6 in Fungal biodiversity profiles 111-120

FIG. 6. — Microstructures of Entoloma nigroflavescens Armada, Bellanger, Noordel. & Dima, sp. nov.: A, spores; B, lamella edge with basidia and basidioles; C, D, elements of pileipellis. Photos: F. Armada. Scale bars: A, 10 µm; B, D, 20 µm; C, 50 µm.

opencc-zeroMar 2022View details →
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FIG. 17 in Fungal biodiversity profiles 111-120

FIG. 17. — Russula ferruginea subsp. ferruginea Corrales & Vera, subsp. nov. (HUA Corrales 944, holotype). Elements of the hymenium drawn as seen by light microscopy. A, basidia and basidiola; B, marginal cells near the edges of lamellae; C, basidiospores in Melzer's reagent; D, hymenial cystidia near the edges of lamellae; E, hymenial cystidia on the sides of lamellae. Cystidia with contents as observed in Congo Red. Scale bars: A, B, D, E, 10 μm; C, 5 μm. Drawings by Michelle Vera.

opencc-zeroMar 2022View details →
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FIG. 5 in Fungal biodiversity profiles 111-120

FIG. 5. — Entoloma nigroflavescens Armada, Bellanger, Noordel. & Dima, sp. nov., habit in situ (from holotype). Photo: F. Armada.

opencc-zeroMar 2022View details →
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FIG. 24 in Fungal biodiversity profiles 111-120

FIG. 24. — Vuilleminia tropica Hembrom, A. Ghosh, A. Parihar & K. Das, sp. nov. (from holotype): A, B, basidiomata showing decorticant tendency of growth on bark; C, habit; D, basidioles filled with dense globules in cytoplasm and empty septate basidia; E, section through hymenium showing basidia, basidioles and hyphidia; F, indistinct subiculum with crystalline contents; G, H, dendrohyphidia; I, hyphidia; J, septate, moderately thick-walled hyphae in indistinct subiculum; K, clamped moderately thick-walled hyphae with cyanophilic cytoplasmic contents; L, delicate thin-walled clamped hyphae; M, basidiospores in phloxine; N, basidiospore in cotton blue showing thick-wall and cyanophilic cytoplasmic contents. Scale bars: D-I, M, 10 µm; J-L, N, 5 µm.

opencc-zeroMar 2022View details →
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FIG. 4 in Fungal biodiversity profiles 111-120

FIG. 4. — Microstructures of Entoloma aurantioalpinum Armada, Vila, Bellanger, Noordel., Krisai & Dima, sp. nov.: A, spores; B, lamella edge with cheilocystidia; C, D, elements of pileipellis. Photos: F. Armada. Scale bars: A, B, 10 µm; C, D, 20 µm.

opencc-zeroMar 2022View details →
zenodo40/100

FIG. 8 in Fungal biodiversity profiles 111-120

FIG. 8. — Inocybe hebes Eyssart. & Buyck, sp. nov. (holotype): A, fruiting bodies; B, basidia; C, cystidia; D, marginal cells of the gill edge; E, spores; F, pileipellis in section (detail). Scale bars: A, 1 cm; B-E, 10 μm. Drawings by G. Eyssartier.

opencc-zeroMar 2022View details →
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FIG. 3 in Fungal biodiversity profiles 111-120

FIG. 3. — Entoloma aurantioalpinum, Armada, Vila, Bellanger, Noordel., Krisai & Dima, sp. nov., habit in situ (from holotype). Photo: F. Armada.

opencc-zeroMar 2022View details →

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