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106 results for “Lactarius”
FIGURE 2 in Lactarius vividus sp. nov. (Russulaceae, Russulales), a widely distributed edible mushroom in central and southern China
FIGURE 2. Maximum Likelihood (ML) phylograms of Lactarius vividus and its relatives based on the ITS region and the gpd gene, rooted with L. rufus. Bootstrap proportions higher than 70% in the ML analysis and Posterior probabilities higher than 95% in the Bayesian Inference analysis are indicated above and below the branches respectively. Initials of the sample numbers correspond to the collectors or herbaria in Table 1. Samples of L. vividus are in bold.
FIGURE 2 in Lactarius cucurbitoides (Russulales, Basidiomycota), a new species from South Korea supported by molecular and morphological data
FIGURE 2. Fruit body of Lactarius cucurbitoides (SFC20130730-110, holotype): (a) surface of pileus and (b) lamellae with white latex.
FIGURE 1 in Lactarius cucurbitoides (Russulales, Basidiomycota), a new species from South Korea supported by molecular and morphological data
FIGURE 1. Maximum likelihood tree inferred from ITS dataset for Lactarius cucurbitoides and allied species. Bootstrap scores are presented at the nodes only if>50. The scale bar indicates the number of nucleotide substitutions per site. Accession numbers of the representative specimens are marked following the species name.
FIGURE 3 in Lactarius cucurbitoides (Russulales, Basidiomycota), a new species from South Korea supported by molecular and morphological data
FIGURE 3. Microscopic features of Lactarius cucurbitoides (SFC20130719-110, holotype): (a) basidiospores (SEM), (b) basidia, (c) pleuropseudocystidia, (d) pileipellis, and (e) marginal cells.
FIGURE 7. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 7. L. kesiyae: a. basidiospore, b. basidia, c. marginal cell, d. pleuromacrocystidia, e. cheilocystidia, f. pseudocystidia, g. pileipellis (a−g: KW353) (scale bar = 10 μm).
FIGURE 5. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 5. L. fuscomaculatus: a. basidiospore, b. cheilocystidia, c. marginal cell, d. basidia, e. pseudocystidia, f. pleuromacrocystidia, g. pileipellis (a and c−f: KW365, b and g: KW373, holotype) (scale bar = 10 μm).
FIGURE 3. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 3. L. austrorostratus: a. basidiospore, b. pleuromacrocystidia, c. pseudocystidia, d. basidia, e. marginal cell, f. cheilocystidia, g. pileipellis (a and g: KW109, b−f: KW108, holotype) (scale bar = 10 μm).
FIGURE 2. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 2. L. aquosus: a. basidiospore, b. pleuromacrocystidia, c. basidia, d. cheilocystidia, e. marginal cell, f. pseudocystidia, g. pileipellis (a−g: KW231, holotype) (scale bar = 10 μm).
FIGURE 9. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 9. L. rubrocorrugatus: a. basidiospore, b. basidia, marginal cell, d. pseudocystidia, e. pleuromacrocystidia, f. cheilocystidia, g. pileipellis (a: KW384, holotype, b−g: KW294) (scale bar = 10 μm).
FIGURE 1 in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 1. The obtained ML phylogeny based on ITS sequences. Names in boldface are new species. Names in blue are obtained from public databases. Bootstrap values and posterior probabilities are indicated if they exceed 50% and 0.85, respectively. The bar scale represents the expected number of nucleotide changes per site.
FIGURE 8. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 8. L. rubrobrunneus: a. basidiospore, b. marginal cell, c. pleuromacrocystidia, d. pseudocystidia, e. basidia, f. pileipellis (a−f: AV12-044, holotype) (scale bar = 10 μm).
FIGURE 6. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 6. L. inconspicuus: a. basidiospore, b. pseudocystidia, c. pleuromacrocystidia, d. cheilocystidia, e. basidia, f. marginal cell, g. pileipellis (a−f: LTH256, g: KW339, hylotype) (scale bar = 10 μm).
FIGURE 4. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 4. L. chichuensis: a. basidiospore, b. cheilocystidia, c. basidia, d. pleuromacrocystidia, e. pseudocystidia, f. marginal cells, g. pileipellis (a: KW271, b−g: KW421) (scale bar = 10 μm).
FIGURE 11. basidiocarps a. L in Lactarius subgenus Russularia (Russulaceae) in South-East Asia: 3. new diversity in Thailand and Vietnam
FIGURE 11. basidiocarps a. L. aquosus (KW231), b. L. fuscomaculatus (KW373), c. L. rubrobrunneus (AV12-044, photo by A. Verbeken), d. L. inconspicuus (KW339, photo by F. Hampe), e–f. L. tangerinus (EDC14-475, photo by E. De Crop), g–h. L. kesiyae (g: KW032, h: KW353), i. L. rubrocorrugatus (KW384), j. L. chichuensis (KW271).
FIGURE 1 in Phylogenetic and mycogeographical aspects of Lactarius and Rhizopogon associated with Pinus radiata in south-central Chile
FIGURE 1. Micromorphology of Lactarius quieticolor; A. Fruiting bodies; B-C. Basidiospores; D. Macropleurocystidia; E. Basidioles; F. Basidia; G. Lageniform cheilocystidia; H. Cylindrical, septate cheilocystidia.
FIGURE 3 in Phylogenetic and mycogeographical aspects of Lactarius and Rhizopogon associated with Pinus radiata in south-central Chile
FIGURE 3. Phylogenetic trees (DNAr ITS1F/ITS4 sequences) and selected taxa; A. Lactarius sect. Deliciosi; B. Rhizopogon sp.
FIGURE 2 in Phylogenetic and mycogeographical aspects of Lactarius and Rhizopogon associated with Pinus radiata in south-central Chile
FIGURE 2. Micromorphology of Rhizopogon roseolus; A. Fruiting bodies; B–C. Basidiospores; D. Basidia; E. Cystidia; F. Pseudoparaphysis (arrow).
FIGURE 2 in Lactarius taedae (Russulales): an unexpected new gasteroid fungus from Brazil
FIGURE 2. Lactarius taedae basidiomata in situ M.A. Sulzbacher 510 (holotype). (bars = 10 mm). Photos by: Marcelo A. Sulzbalcher.
FIGURE 1 in Lactarius taedae (Russulales): an unexpected new gasteroid fungus from Brazil
FIGURE 1. The ML phylogeny based on ITS sequences. Lactarius taedae sp. nov. is in green. Names in red are hypogeous milkcap species. Bootstrap values and posterior probabilities are indicated if they exceed 60% and 0.80, respectively. The bar scale represents the expected number of nucleotide changes per site.
FIGURE 4 in Lactarius taedae (Russulales): an unexpected new gasteroid fungus from Brazil
FIGURE 4. Lactarius taedae SEM micrographs of the basidiospores a,b M.A. Sulzbalcher 510 (holotype). a) Front view b) Side and front view. (bars = 5 μm).
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