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145 results for “Republic of Korea”
FIGURE 4 in Morphology and molecular description of Wilmottia koreana sp. nov. (Oscillatoriales, Cyanobacteria) isolated from the Republic of Korea
FIGURE 4. Alignment of the 16S–23S rRNA internal transcribed spacer (ITS) region from Nostoc sp. and Wilmottia members. The different conserved domains (D1–D5), the tRNA genes, the major variable stems V2 and V3, and the antiterminator (Box B and Box A) are indicated by boxes and names. The Nostoc sequence contains both tRNAIle and tRNAAla, whereas all Wilmottia have only single tRNAIle. All the compared sequences contain all important structural elements of the ITS, as described by Boyer et al. (2001).
FIGURE 3 in Morphology and molecular description of Wilmottia koreana sp. nov. (Oscillatoriales, Cyanobacteria) isolated from the Republic of Korea
FIGURE 3. Maximum-likelihood (ML) tree of the phylogenetic relationships of species within the family Coleofasciculaceae (Geitlerinema, Potamolinea, Pycnacronema and Wilmottia) inferred from nearly complete 16S rRNA gene sequences, using Arthrospira platensis (CP013008) (Microcoleaceae) as the outgroup. Bayesian analysis was similar in topology of the ML tree and thus, its posterior probabilities (PP) are incorporated into the tree. Nodes display ML bootstrap support (> 50%) and Bayesian posterior probabilities (> 0.50), respectively. The branch lengths are proportional to the scale given.
FIGURE 2 in Morphology and molecular description of Wilmottia koreana sp. nov. (Oscillatoriales, Cyanobacteria) isolated from the Republic of Korea
FIGURE 2. Ultrastructure of two strains; (A–B) Wilmottia koreana strain FBCC-A812 (reference strain) and (C–D) W. murrayi strain FBCC-A401. (A–D) Parietal position of thylakoids (th), showing sheaths (sh) and cell wall (cw).
FIGURE 6 in Morphology and molecular description of Wilmottia koreana sp. nov. (Oscillatoriales, Cyanobacteria) isolated from the Republic of Korea
FIGURE 6. Nucleotide divergence of the Wilmottia 16S rRNA gene sequences (datasets used in Table 3) based on corrected p-distances. Genetic distances between each paired sequence were calculated by the Kimura 2-parameter model, where a total of 3 Wilmottia species (23 sequences) were compared. Bar heights indicate % p-distance measured for W. murrayi (Wm), W. stricta (Ws), and inter-species (e.g., W. koreana (Wk)). The values are shown as mean ±SD (Standard Deviation). Statistical analysis showed that the 16S rRNA gene divergences were significantly different between Wilmottia inter-species, but not intra-species (Student's t-test, ***P <0.01; N = 190 in Wm, 40 in Wm vs. Ws, 20 in Wm vs. Wk, and 2 in Wk vs. Ws respectively).
FIGURE 2 in A newly recognized species in the Anopheles Hyrcanus Group and molecular identification of related species from the Republic of South Korea (Diptera: Culicidae)
FIGURE 2. Results of amplification of rDNA ITS2 of An. sinensis (lane, progeny brood number): (1) KS8(67), (2) KS8(94); An. lesteri: (3) KS8(59), (4) KS8(88); An. pullus: (5) KS8(76), (6) KS8(86); An. unknown 1: (7) KS8(12), (8) KS7(27); An. unknown 2: (9) KS26(2) and (10) KS4 2(1); (11) positive control, complete ITS2 amplicon of KS8(67), An. sinensis; (12) negative control, no template. M: DNA ladder consisting of lambda DNA digested by Hind III, and phiX174 DNA digested with Hae III (Sigma, St. Louis, MO).
FIGURE 1. Ribosomal DNA ITS2 in A newly recognized species in the Anopheles Hyrcanus Group and molecular identification of related species from the Republic of South Korea (Diptera: Culicidae)
FIGURE 1. Ribosomal DNA ITS2 sequence for five Anopheles Hyrcanus Group species from the Republic of South Korea. Bases in the gray areas are common to all species. Speciesspecific primers and direction of amplification are indicated by arrows: sin = An. sinensis, unk1 = An. unknown 1, pul = An. pullus, unk2 = An. unknown 2, les = An. lesteri. Two numbers are given at the end of the figure: 1) ITS2 length, and 2) total length of amplified fragment, which includes 135 bases from the flanking regions.
FIGURE 1. Ribosomal DNA ITS2 in Molecular confirmation of Anopheles (Anopheles) lesteri from the Republic of South Korea and its genetic identity with An. (Ano.) anthropophagus from China (Diptera: Culicidae)
FIGURE 1. Ribosomal DNA ITS2 sequence for potential malaria vectors belonging to Anopheles (Anopheles) Hyrcanus Group from Korea, China, Japan and the Philippines. See Table 2 and text for sequence summaries and discussion. The following GenBank accession numbers correspond to the label numbers at the 5' end of the sequence: 1) AY375464; 2) AY375465; 3) AJ004942; 4) AY375466; 5) AF384172, AJ004941 and AF543860; 6) AY375467; 7) AY187728; 8) AY375468; 9) AY375469; 10) AY375470; 11) AY375471. The number of individuals sequenced, of those presented here for the first time, appears in parentheses
FIGURE 1 in Three new species of Crinipellis and one new variety of Moniliophthora (Basidiomycota, Marasmiaceae) described from the Republic of Korea
FIGURE 1. Photos of basidiocarps. A-a. Crinipellis birhizomorpha, A-b. two types of rhizomorphs of C. birhizomorpha, B. C. wandoensis, C-a. C. pallidipilus, C-b. one type of rhizomorph of C. pallidipilus, d. Moniliophthora conchata var. brevispora. Photo V. Antonín and K.-H. Ka.
FIGURE 5. Moniliophthora conchata var. brevispora. a. cheilocystidia, b. basidiospores, c in Three new species of Crinipellis and one new variety of Moniliophthora (Basidiomycota, Marasmiaceae) described from the Republic of Korea
FIGURE 5. Moniliophthora conchata var. brevispora. a. cheilocystidia, b. basidiospores, c. pileus hairs. Scale bar = 20 μm.
FIGURE 3. Crinipellis wandoensis. a. cheilocystidia, b. basidiospores, c in Three new species of Crinipellis and one new variety of Moniliophthora (Basidiomycota, Marasmiaceae) described from the Republic of Korea
FIGURE 3. Crinipellis wandoensis. a. cheilocystidia, b. basidiospores, c. pileus hairs. Scale bar = 20 μm.
FIGURE 7 in Three new species of Crinipellis and one new variety of Moniliophthora (Basidiomycota, Marasmiaceae) described from the Republic of Korea
FIGURE 7. Phylogenetic tree of the genus Crinipellis based on LSU rDNA using Bayesian (MCMC) and Maximum likelihood (ML) analysis. The phylogenetic tree is a 50% majority-rule consensus tree using GTR + G model with 107 generations for four chains and calculated from the burn-in value of 25,000 trees on MCMC analysis. This tree is estimated in 1000 replicates with the random addition of sequences during each heuristic search under ML analysis. The numbers on the left are posterior probabilities (PP) and those on the right are bootstrap values (BS) on the supported node of the phylogenetic tree.
FIGURE 6 in Three new species of Crinipellis and one new variety of Moniliophthora (Basidiomycota, Marasmiaceae) described from the Republic of Korea
FIGURE 6. Phylogenetic tree of the genus Crinipellis based on ITS rDNA using Bayesian (MCMC) and Maximum likelihood (ML) analyses. The numbers on the left are posterior probabilities (PP) and those on the right are bootstrap values (BS) on the supported node. The phylogenetic tree is a 50% majority-rule consensus tree calculated from the burn-in value of 25,000 trees using the GTR + G model with 107 generations for four chains on MCMC analysis, and estimated in 1000 replicates with the random addition of sequences during each heuristic search under ML analysis.
FIGURE 2. Crinipellis birhizomorpha. a. cheilocystidia, b. basidiospores, c. pileus hairs, d in Three new species of Crinipellis and one new variety of Moniliophthora (Basidiomycota, Marasmiaceae) described from the Republic of Korea
FIGURE 2. Crinipellis birhizomorpha. a. cheilocystidia, b. basidiospores, c. pileus hairs, d. surface of abortive pilei. Scale bar = 20 μm for a–c, 50 μm for d.
FIGURE 1 in Pinocchia daecheonga sp. nov. (Synechococcales, Cyanobacteria) isolated from a Daecheong Lake in Geum River, Republic of Korea
FIGURE 1. Map showing site in the Daecheong Lake in Geum River, Republic of Korea. (A) The red circle is a sample site, and (B) the habitat view of a collection site.
FIGURE 2 in Pinocchia daecheonga sp. nov. (Synechococcales, Cyanobacteria) isolated from a Daecheong Lake in Geum River, Republic of Korea
FIGURE 2. Microphotographs of Pinocchia daecheonga from the reference strain FBCC-A230. (A, C) Colonies (mats) formed in culture, (B) Thin sheath surrounding trichomes (arrow), (D) Hyaline bridges at cross walls (arrows), (E–G) Various types of trichomes in culture, (H) Trichomes with elongated terminal cell (arrows), (I) The enlarged trichome after 4 weeks of culture; Scale bars 5 µm.
FIGURE 4. A in Pinocchia daecheonga sp. nov. (Synechococcales, Cyanobacteria) isolated from a Daecheong Lake in Geum River, Republic of Korea
FIGURE 4. A Maximum likelihood tree based on 16S rRNA gene (1,034 bp) sequences showing the clustering of cultured Pinocchia daecheonga isolates. Phylogenetic relationships of cyanobacteria species within the order Synechococcales (including family Leptolyngbyaceae, Oculatellaceae, Pseudanabaenaceae) and order Oscillatoriales inferred from nearly complete 16S rRNA gene sequences with the Neighbor Joining (NJ) and Bayesian analysis. Numbers above branches indicate bootstrap support (> 50%) in ML, NJ analysis and posterior probabilities (PP;> 0.50) in Bayesian analysis. P. daecheonga studied here marks in bolds. Gloeobacter violaceus PCC 7421 and G. kilaueensis JS1 within the family Gloeobacteraceae were used as the out group. In Pinocchia clade, ten clones of P. polymorpha refer to E5/1, E5/2, E5/4, E5/5, E5/6 and E(10/1-5), five isolates or clones of P. daecheonga to FBCC-A230, and FBCC-A230 clone 1, 2, 3, 4.
Figures 1–6 in Notes on some parasitoids (Hymenoptera: Chalcidoidea) associated with Acanthococcus lagerstroemiae (Kuwana) (Hemiptera: Eriococcidae) in the Republic of Korea
Figures 1–6. Three species of parasitoids associated with Acanthococcus lagerstroemiae (Kuwana) in Korea. 1) Parasitoid emergence holes in scale covers of A. lagerstroemiae (crapemyrtle scale). 2) Marietta picta (Andre), female. 3–4) Metaphycus eriococci (Timberlake), female and head. 5–6) Zaomma eriococci (Ferrière), female and mesoscutum.
Figures 1–6 in Parasitoids (Hymenoptera: Chalcidoidea) reared from Pseudaulacaspis cockerelli (Cooley) (Hemiptera: Coccoidea) in the Republic of Korea
Figures 1–6. Six species of parasitoids associated with Pseudaulacaspis cockerelli (Cooley) in Korea. 1) Aphytis japonicus DeBach and Azim, male. 2) Encarsia berlesei (Howard), female. 3) Marietta carnesi (Howard), female. 4) Pteroptrix sp. 2, male. 5) Arrhenophagus chionaspidis Aurivillius, female. 6) Chartocerus subaenus (Förster), female.
Figure 3 from: Shin Y, Jang Y, Allain SJR, Borzée A (2020) Catalogue of herpetological specimens of the Ewha Womans University Natural History Museum (EWNHM), Republic of Korea. ZooKeys 965: 103-139. https://doi.org/10.3897/zookeys.965.52976
Figure 3 Some of the salamander specimens deposited in the collection of the EWNHMAHynobius leechii (EWNHM-ANIMAL 6658) BOnychodactylus koreanus (EWNHM-ANIMAL 6636).
Figure 5 from: Shin Y, Jang Y, Allain SJR, Borzée A (2020) Catalogue of herpetological specimens of the Ewha Womans University Natural History Museum (EWNHM), Republic of Korea. ZooKeys 965: 103-139. https://doi.org/10.3897/zookeys.965.52976
Figure 5 Some of the snake specimens deposited in the collection of the EWNHMASibynophis chinensis (EWNHM-ANIMAL 6497) BOrientocoluber spinalis (EWNHM-ANIMAL 6500) CGloydius brevicaudus (EWNHM-ANIMAL 6505) DOocatochus rufodorsatus (EWNHM-ANIMAL 6564).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.