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145 results for “Republic of Korea”
FIGURES 1–10 in New species and new records of the family Laelapidae (Acari: Mesostigmata) from Republic of Korea
FIGURES 1–10. Cosmolaelaps sejongi sp. nov., female. 1, dorsal idiosoma; 2, dorsal seta j1 enlarged (not to scale); 3, dorsal seta j3 enlarged (not to scale); 4, dorsal seta Z5 enlarged (not to scale); 5, ventral idiosoma; 6, ventral seta Jv5 enlarged (not to scale); 7, post anal seta enlarged (not to scale); 8, subcapitulum; 9, epistome; 10, chelicera.
FIGURES 32–36 in New species and new records of the family Laelapidae (Acari: Mesostigmata) from Republic of Korea
FIGURES 32–36. Ololaelaps wangi Bai et. al., 1996, female. 32, dorsal idiosoma; 33, ventral idiosoma; 34, epistome;35, subcapitulum; 36, chelicera.
FIGURES 19–21 in New species and new records of the family Laelapidae (Acari: Mesostigmata) from Republic of Korea
FIGURES 19–21. Holostaspis mooni sp. nov., female. 19, femur, genu and tibia II; 20, femur, genu and tibia III; 21, femur, genu and tibia IV.
FIGURE 7 in The genus Rhodocollybia (Omphalotaceae, Basidiomycota) in the Republic of Korea
FIGURE 7. Rhodocollybia hongneungensis (holotype). A. Cheilocystidia. B. Basidiospores. C. Pileipellis. Scale bar = 20 µm. Drawings by V. Antonín and R. Ryoo.
FIGURE 5 in The genus Rhodocollybia (Omphalotaceae, Basidiomycota) in the Republic of Korea
FIGURE 5. Rhodocollybia butyraceoides (BRNM 840481). A. Cheilocystidia. B. Basidiospores. C. Pileipellis. Scale bar = 20 µm. Drawings by V. Antonín and R. Ryoo.
FIGURE 4 in The genus Rhodocollybia (Omphalotaceae, Basidiomycota) in the Republic of Korea
FIGURE 4. Rhodocollybia maculata (BRNM 840489). A. Cheilocystidia. B. Basidiospores. C. Pileipellis. Scale bar = 20 µm. Drawings by V. Antonín and R. Ryoo.
FIGURE 1. Phylogenetic tree for ITS r in The genus Rhodocollybia (Omphalotaceae, Basidiomycota) in the Republic of Korea
FIGURE 1. Phylogenetic tree for ITS r DNA of the genus Rhodocollybia. New species were indicated in bold.
FIGURE 6 in The genus Rhodocollybia (Omphalotaceae, Basidiomycota) in the Republic of Korea
FIGURE 6. Rhodocollybia variabilicolor (BRNM 840488). A. Cheilocystidia. B. Basidiospores. C. Pileipellis. Scale bar = 20 µm. Drawings by V. Antonín and R. Ryoo.
FIGURE 3. Basidiomata A in The genus Rhodocollybia (Omphalotaceae, Basidiomycota) in the Republic of Korea
FIGURE 3. Basidiomata A. Rhodocollybia maculata (BRNM 840489). B. R. butyraceoides (BRNM 840485). C. R. butyraceoides (BRNM 840490, holotype). D. R. variabilicolor (BRNM 718751). E. R. variabilicolor (BRNM 840482). F. R. variabilicolor (BRNM 840488). G. R. variabilicolor (BRNM 840491, holotype). H. R. hongneungensis (BRNM 718721, holotype). Photos by: V. Antonín.
FIGURE 6 in Strobilomyces pteroreticulosporus (Boletales), a new species of the S. strobilaceus complex from the Republic of Korea and remarks on the variability of S. confusus
FIGURE 6. Strobilomyces confusus. SEM microphotographs of basidiospores. Left: BRNM 766850, right BRNM 766849. Photo L. Ilkovics.
FIGURE 4 in Strobilomyces pteroreticulosporus (Boletales), a new species of the S. strobilaceus complex from the Republic of Korea and remarks on the variability of S. confusus
FIGURE 4. Strobilomyces pteroreticulosporus (Basidiomata, holotype). SEM microphotograph of basidiospores. Photo L. Ilkovics.
FIGURE 1. Bayesian phylogram obtained from general rpb1 in Strobilomyces pteroreticulosporus (Boletales), a new species of the S. strobilaceus complex from the Republic of Korea and remarks on the variability of S. confusus
FIGURE 1. Bayesian phylogram obtained from general rpb1 sequence alignment. Porphyrellus porphyrosporus was used as outgroup taxon. Support values in either Bayesian (Posterior Probabilities values, BPP) or maximum likelihood (ML Bootstrap percentage, MLB) analyses are indicated. Only BPP values over 0.70 and MLB values over 50 % are given above clade branches. Newly sequenced collections are in bold.
FIGURE 2. Bayesian phylogram obtained from general ITS2 in Strobilomyces pteroreticulosporus (Boletales), a new species of the S. strobilaceus complex from the Republic of Korea and remarks on the variability of S. confusus
FIGURE 2. Bayesian phylogram obtained from general ITS2 sequence alignment. Porphyrellus porphyrosporus was used as outgroup taxon. Support values in either Bayesian (Posterior Probabilities values, BPP) or maximum likelihood (ML Bootstrap percentage, MLB) analyses are indicated. Only BPP values over 0.70 and MLB values over 50 % are given above clade branches. Newly sequenced collections are in bold.
FIGURE 5 in Strobilomyces pteroreticulosporus (Boletales), a new species of the S. strobilaceus complex from the Republic of Korea and remarks on the variability of S. confusus
FIGURE 5. Strobilomyces pteroreticulosporus (holotype). a. Cheilocystidia, b. Basidia, c. Basidiospores, d. Pileipellis. Scale bar = 20 μm for a‒c, 40 μm for d.
FIGURE 3 in Strobilomyces pteroreticulosporus (Boletales), a new species of the S. strobilaceus complex from the Republic of Korea and remarks on the variability of S. confusus
FIGURE 3. Strobilomyces pteroreticulosporus (Basidiomata, holotype). REPUBLIC OF KOREA, Hamyang, Hamyangsangrim, 9 July 2008. Photo V. Antonín.
FIGURE 2 in Arabis erecta (Brassicaceae), a new species from Republic of Korea
FIGURE 2. Illustrations of Arabis erecta Y.Y. Kim & C.G. Jang. A. Habit. B. Stem. C. Leaf margin. D. Sepals (a: median, b: lateral). E. Petals. F. Stamens. G. Receptacle, nectar glans and ovary. H. Fruit. I. Seed. Illustrations by Hyosun Leem & Yoon-Young Kim.
FIGURE 1 in Arabis erecta (Brassicaceae), a new species from Republic of Korea
FIGURE 1. Images of Arabis erecta Y.Y. Kim & C.G. Jang. A. Habit. B. Root and rhizome. C. Stem. D. Leaf base. E. Leaf margin. F. Flowers. G. Petal. H. Fruits. I. Fruiting pedicel. J. Fruiting styles (a: adaxial view, b: lateral view). K. Arrangement of seeds (wetted). L. Seeds (dried). Photographs by Yoon-Young Kim.
FIGURE 3 in Arabis erecta (Brassicaceae), a new species from Republic of Korea
FIGURE 3. Distribution map of Arabis erecta Y.Y. Kim & C.G. Jang (right: zoomed in area in Google Maps of boxed area on left). Illustrations by Yoon-Young Kim.
FIGURE 5. Secondary structures for the D1–D1 in Morphology and molecular description of Wilmottia koreana sp. nov. (Oscillatoriales, Cyanobacteria) isolated from the Republic of Korea
FIGURE 5. Secondary structures for the D1–D1', Box-B, and V3 helix in the conserved regions of the 16S–23S internal transcribed spacer region: A, F, K,: Wilmottia murrayi KGI28; B, G, L: W. murrayi FBCC-A402; C, H, M: W. murrayi FBCC-A401; D, I, N, S: W. stricta 16PC; and E, J, O: W. koreana FBCC-A812. These structures were drawn considering Machado-de-Lima et al. (2017).
FIGURE 1 in Morphology and molecular description of Wilmottia koreana sp. nov. (Oscillatoriales, Cyanobacteria) isolated from the Republic of Korea
FIGURE 1. Microphotographs of Wilmottia koreana, from the reference strain FBCC-A812. (A–C) Fasciculated growth of filaments and (D–L) details of the trichomes and firm sheath (sh); Scale bars = A (100 µm), B and C (20 µm), D–L (10 µm).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.