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Fig. 2 in A report on 30 unrecorded bacteria species in Korea belonging to the classes Betaproteobacteria and Gammaproteobacteria in 2021
Fig. 2. Neighborjoining (NJ) phylogenetic tree based on 16S rRNA gene sequences, showing the relationships between the strains identified in this study and their relatives of the order Burkholderiales in the class Betaproteobacteira. Black dots indicate that the corresponding nodes were also recovered in the trees generated using the maximum likelihood (ML) and maximum parsimony (MP) algorithms. Bootstrap values (>70%) based on 1,000 replications are indicated at branch points (NJ/ML/MP). The scale bar represents a 0.02 nucleotide sequence divergence.
Fig. 3 in A report of 31 unrecorded bacterial species in South Korea belonging to the class Gammaproteobacteria
Fig. 3. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationships between the strains isolated in this study and their relatives of the order Enterobacteriales in the class Gammaproteobacteria. Bootstrap values (>50%) are shown at branching points. Filled circles indicate that the corresponding nodes were also recovered in the trees generated with the maximum-likelihood and maximum-parsimony algorithms, while open circles indicate that the corresponding nodes were also recovered in the tree generated with one of these algorithms. Bar, 0.01 substitutions per nucleotide position.
Fig. 2 in A report of 31 unrecorded bacterial species in South Korea belonging to the class Gammaproteobacteria
Fig. 2. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationships between the strains isolated in this study and their relatives of the order Pseudomonadales in the class Gammaproteobacteria. Bootstrap values (>50%) are shown at branching points. Filled circles indicate that the corresponding nodes were also recovered in the trees generated with the maximum-likelihood and maximum-parsimony algorithms, while open circles indicate that the corresponding nodes were also recovered in the tree generated with one of these algorithms. Bar, 0.01 substitutions per nucleotide position.
Fig 2 in A report of 21 unreported bacterial species in Korea, belonging to the Betaproteobacteria
Fig 2. Phylogenetic tree based on 16S rRNA gene sequence comparisons, showing the relationship between the isolated 21 strains in this study and the notable type species from class Betaproteobacteria. The tree was mainly reconstructed using the neighbour-joining algorithm (NJ). Maximum-likelihood (ML) and maximum-parsimony (MP) algorithms were applied for additional comparison. Filled diamonds indicate branches present in the phylogenetic trees generated using the three different methods. Numbers on the nodes (>70%) represent bootstrap values as percentages of 1000 replicates (NJ/ML/MP). Escherichia coli ATCC 11775T (JMST01000030) was used as an outgroup. Values <70% are not shown at the branch points. Bar, 0.02 accumulated changes per nucleotide.
Fig. 1 in A report of 21 unreported bacterial species in Korea, belonging to the Betaproteobacteria
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1, MWS- 11; 2, HME9229; 3, HME9289; 4, HME94085; 5, HME9441; 6, HME9445; 7, DT6-05; 8, SR2-07; 9, SR4-06; 10, W9-3-1; 11, W3-2-5; 12, W6-4-1; 13, MY2F10; 14, MY2F9; 15, JJ9008; 16, JJ9012; 17, 2013 C3; 18, 2013 C24; 19, 2013 Y1; 20, NC3Y-10-3; 21, MS6Y-8-9.
Fig. 4 in A report of 31 unrecorded bacterial species in South Korea belonging to the class Gammaproteobacteria
Fig. 4. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationships between the strains isolated in this study and their relatives of the class Gammaproteobacteria. Bootstrap values (>50%) are shown at branching points. Filled circles indicate that the corresponding nodes were also recovered in the trees generated with the maximum-likelihood and maximum-parsimony algorithms. Bar, 0.01 substitutions per nucleotide position.
Fig. 1 in A report of 31 unrecorded bacterial species in South Korea belonging to the class Gammaproteobacteria
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1, DT1-03; 2, DT1-04; 3, DT1-05; 4, DT5-05; 5, ST6-03; 6, DR3-01; 7, SR3-03; 8, SR4-03; 9, SR6-02; 10, Gsoil 852; 11, MBM1; 12, MDY2F18; 13, MBB2-1; 14, JJ9010; 15, IMCC1859; 16, IMCC20105; 17, IMCC20160; 18, IMCC20164; 19, IMCC20180; 20, MWS24; 21, NMWL17; 22, SD19; 23, B-12; 24, SJ3-2; 25, JW17; 26, HME9287; 27, HME9331; 28, HME9414; 29, HME9429; 30, WS85; 31, WW126.
Fig. 3. Neighborjoining phylogenetic tree constructed from a in Report on 14 unrecorded bacterial species in Korea that belong to the phyla Bacteroidetes and Deinococcus-Thermus
Fig. 3. Neighborjoining phylogenetic tree constructed from a comparative analysis of 16S rRNA gene sequences showing the relationships between the strains isolated in this study and their relatives of the class Bacteroidetes. Numbers at nodes are levels of bootstrap support for branch points, based on 1,000 resampling; values are shown only if greater than 70%. Filled circles at nodes indicate that the corresponding nodes were also recovered using maximumlikelihood algorithm. Bar, 5% sequence divergence.
Fig. 2. Neighborjoining phylogenetic tree constructed from a in Report on 14 unrecorded bacterial species in Korea that belong to the phyla Bacteroidetes and Deinococcus-Thermus
Fig. 2. Neighborjoining phylogenetic tree constructed from a comparative analysis of 16S rRNA gene sequences showing the relationships between the strains isolated in this study and their relatives of the class DeinococcusThermus. Numbers at nodes are levels of bootstrap support for branch points, based on 1,000 resampling; values are shown only if greater than 70%. Filled circles at nodes indicate that the corresponding nodes were also recovered using maximumlikelihood algorithm. Bar, 2% sequence divergence.
Fig. 1 in Report on 14 unrecorded bacterial species in Korea that belong to the phyla Bacteroidetes and Deinococcus-Thermus
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1. DaeR4; 2. BE44; 3. KA18; 4. KYW884; 5. PN22; 6. HME8473; 7. KYW842; 8. KA3; 9. KYW573; 10. HD33; 11. WSWMO1; 12. WSWMO2; 13. IMCC1073; 14. HME8545.
Fig. 1 in Report on 24 unrecorded bacterial species of Korea belonging to the phylum Firmicutes
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1. RS35 B; 2. DE L 1 4; 3. DE L 2 2; 4. J27; 5. J29; 6. WRM2W; 7. MA19; 8. HME8790; 9. KYW872; 10. PM1; 11. OR L 1 6; 12. OR L 2 3; 13. MR1; 14. IK36; 15. HY M 2 2; 16. H421 H; 17. RS51; 18. Rk57 B; 19. MS514; 20. MK52; 21. UEJ41 D; 22. CT11; 23. SJ26; 24. ES05 9M1MA; 25. CNS51; 26. OR Y 1 1.
Fig. 2 in Report on 24 unrecorded bacterial species of Korea belonging to the phylum Firmicutes
Fig. 2. Neighborjoining phylogenetic tree based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the family Bacillaceae. Bootstrap values (>50%) are shown at nodes. Filled circles indicate the nodes recovered by three other treeing methods including maximum likelihood, maximum parsimony, and neighbor joining. Bar, 0.01 substitutions per nucleotide position.
Fig. 5 in A report of 39 unrecorded bacterial species in Korea, belonging to the Betaproteobacteria and Gammaproteobacteria
Fig. 5. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the class Gammaproteobacteria. Bootstrap values (>70%) are shown above nodes for the neighbor-joining and below nodes for the maximum-likelihood methods. Filled circles indicate the nodes recovered by the two treeing methods. Bar, 0.02 substitutions per nucleotide position.
Fig. 4 in A report of 39 unrecorded bacterial species in Korea, belonging to the Betaproteobacteria and Gammaproteobacteria
Fig. 4. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the order Pseudomonadales in the class Gammaproteobacteria. Bootstrap values (>70%) are shown above nodes for the neighbor-joining and below nodes for the maximum-likelihood methods. Filled circles indicate the nodes recovered by the two treeing methods. Bar, 0.02 substitutions per nucleotide position.
Fig. 3 in A report of 39 unrecorded bacterial species in Korea, belonging to the Betaproteobacteria and Gammaproteobacteria
Fig. 3. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the order Alteromonadales in the class Gammaproteobacteria. Bootstrap values (>70%) are shown above nodes for the neighbor-joining and below nodes for the maximum-likelihood methods. Filled circles indicate the nodes recovered by the two treeing methods. Bar, 0.02 substitutions per nucleotide position.
Fig. 1 in A report of 39 unrecorded bacterial species in Korea, belonging to the Betaproteobacteria and Gammaproteobacteria
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1. VNT1; 2. RMH2-4; 3. mNT30; 4. HME8439; 5. HME8586; 6. J6; 7. HD47; 8. J4; 9. J7; 10. KYW799; 11. WS-MG1; 12. ES05-9M-7-MA; 13. KA23; 14. HME8844; 15. IMCC1088; 16. WR-R8Y; 17. MA16; 18. SB11; 19. WR-M4W; 20. MUG3-2; 21. CR2-4; 22. CRS5-1; 23. HWDM10; 24. WS-MW4; 25. WS-MW1; 26. CT3-6; 27. HME8588; 28. CR6-3; 29. HY_N_1_1; 30. LE_C_1_2; 31. ES05-27M-7; 32. J19; 33. HME8508; 34. M8; 35. PM3; 36. KYW889; 37. CT5-2; 38. Gsoil549; 39. WSW-MW5.
Fig. 3 in A report of 26 unrecorded bacterial species in Korea, belonging to the Bacteroidetes and Firmicutes
Fig. 3. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the class Firmicutes. Bootstrap values (>70%) are shown above nodes for the neighbor-joining and below nodes for the maximum-likelihood methods. Filled circles indicate the nodes recovered by the two treeing methods. Bar, 0.02 substitutions per nucleotide position.
Fig. 4 in Report on 24 unrecorded bacterial species of Korea belonging to the phylum Firmicutes
Fig. 4. Neighborjoining phylogenetic tree based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the family Paenibacillaceae. Bootstrap values (>50%) are shown at nodes. Filled circles indicate the nodes recovered by three other treeing methods including maximum likelihood, maximum parsimony, and neighbor joining. Bar, 0.01 substitutions per nucleotide position.
Fig. 1 in A report of 26 unrecorded bacterial species in Korea, belonging to the Bacteroidetes and Firmicutes
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1, WM10; 2, WW2; 3, JJ9006; 4, WS101; 5, JJ9011; 6, HME8661; 7, WS78; 8, 2013 C18; 9, HME9268; 10, M-M24; 11, BM17; 12, JJ9009; 13, HDW8; 14, HD32; 15, 2013 C56; 16, HME8520; 17, G9-2; 18, DT7-08; 19, DT2-01; 20, M4Y-2-1; 21, JJ9001; 22, G-M13; 23, 2013 C17; 24, ST5- 08; 25, WT2K-1; 26, PA4; 27, EMB6; 28, WT2K-2.
Fig. 2 in A report of 26 unrecorded bacterial species in Korea, belonging to the Bacteroidetes and Firmicutes
Fig. 2. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the class Bacteroidetes. Bootstrap values (>70%) are shown above nodes for the neighbor-joining and below nodes for the maximum-likelihood methods. Filled circles indicate the nodes recovered by the two treeing methods. Bar, 0.05 substitutions per nucleotide position.
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.