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39 results for “Bacteroidetes”
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.
Fig. 1 in A report of nine unrecorded bacterial species in the phylum Bacteroidetes collected from freshwater environments in Korea
Fig. 1. Transmission electron micrographs of the strains isolated in this study. Strains: A, SJ-153; B, SS1-37; C, BK-550; D, KS1-10; E, SJ- 361; F, ES1-03; G, BK-168; H, 04KS1-21; I, SJ-175. Bar: 0.2 μm (A-G), 0.5 μm (H and I).
Fig. 2 in A report of nine unrecorded bacterial species in the phylum Bacteroidetes collected from freshwater environments in Korea
Fig. 2. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationships among the isolates and related taxa in the order Flavobacteriales. The values above each branch indicate the percentage levels of bootstrap support based on 1,000 resamplings (NJ/MP/ML). The closed circles indicate that the corresponding nodes were recovered by all treeing algorithms (NJ, MP and ML). Bar, 0.02 changes per nucleotide position.
Fig. 2 in A report of 28 unrecorded bacterial species, phylum Bacteroidetes, in Korea
Fig. 2. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1. PR22204; 2. HMF4563; 3. HMF4572; 4. HMF4589; 5. HMF6044; 6. HMF6519; 7. SFD5; 8. CAU 1400; 9. LPB0152; 10. LPB0155; 11. LPB0158; 12. LPB0163; 13. IMCC25638; 14. IMCC25641; 15. IMCC25651; 16. RUG1-3; 17. 1008; 18. 3130; 19. 6024; 20. 2PKS213; 21. CAU 1108; 22. IMCC25637; 23. JMW-3; 24. POB2; 25. POB7; 26. SFD63; 27. ZO2-10; 28. GLB7.
Fig. 1 in A report of 28 unrecorded bacterial species, phylum Bacteroidetes, in Korea
Fig. 1. Neighbor-joining tree based on 16S rRNA gene sequences showing the phylogenetic relationships between the strains isolated in this study and their relatives in the phylum Bacteroidetes. Escherichia coli ATCC 11775T (X80725) was used as an outgroup. Filled circles indicate the nodes were also recovered in maximum-likelihood tree. Bootstrap values (>70%) are shown above nodes. Scale bar, 0.1 substitutions per nucleotide.
Fig. 2 in A report of 17 unrecorded bacterial species of Korea belonging to the phylum Bacteroidetes
Fig. 2. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences showing the relationships between bacterial strains isolated in this study and their relatives in the phylum Bacteroidetes. Only bootstrap values greater than 70% 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. Escherichia coli ATCC 11775T (GenBank accession no. X80725) was used as an outgroup. Bar, 0.02 substitutions per nucleotide position.
Fig. 1 in A report of 17 unrecorded bacterial species of Korea belonging to the phylum Bacteroidetes
Fig. 1. Electron micrographs of cells of the strains isolated in this study. Strains: 1, JH2; 2, GH1-5; 3, HMF7877; 4, 17J42-12; 5, BT2401; 6, JH4; 7, r2a108d329; 8, IMCC34136; 9, BMW36; 10, IMCC34176; 11, HMF9511; 12, BMW32; 13, IMCC34232; 14, IMCC34139; 15, LPB0187; 16, IMCC34137; 17, Amx_S_17.
Fig. 3 in A report of 22 unrecorded bacterial species in Korea in the phyla Bacteroidetes and Rhodothermaeota
Fig. 3. Neighborjoining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the order Sphingobacteriales. Numbers at the nodes are levels of bootstrap value (%) based on 1000 replicated datasets; only values above 50% are shown. Sphingobacterium spiritivorum ATCC 33861T (ACHA01000008) was used as an outgroup. Bar, 0.02 substitutions per nucleotide position.
Fig. 2 in A report of 22 unrecorded bacterial species in Korea in the phyla Bacteroidetes and Rhodothermaeota
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 order Cytophagales. Numbers at the nodes are levels of bootstrap value (%) based on 1000 replicated datasets; only values above 50% are shown. Microscilla marina ATCC 23134T (AAWS01000102) was used as an outgroup. Bar, 0.01 substitutions per nucleotide position.
Fig. 4 in A report of 22 unrecorded bacterial species in Korea in the phyla Bacteroidetes and Rhodothermaeota
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 order Flavobacteriales. Numbers at the nodes are levels of bootstrap value (%) based on 1000 replicated datasets; only values above 50% are shown. Ornithobacterium rhinotracheale DSM 15997T (CP003283) was used as an outgroup. Bar, 0.02 substitutions per nucleotide position.
Fig. 5 in A report of 22 unrecorded bacterial species in Korea in the phyla Bacteroidetes and Rhodothermaeota
Fig. 5. Neighborjoining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationship between the strains isolated in this study and their relatives of the phylum Rhodothermaeota. Numbers at the nodes are levels of bootstrap value (%) based on 1000 replicated datasets; only values above 50% are shown. Bacteroides massiliensis B84634T (AQHY01000028) was used as an outgroup. Bar, 0.02 substitutions per nucleotide position.
Fig. 1 in A report of 22 unrecorded bacterial species in Korea in the phyla Bacteroidetes and Rhodothermaeota
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. Strains: 1. IMCC12361; 2. WS57; 3. WS16; 4. CH1; 5. SCR0201; 6. CWF4; 7. HMF2732; 8. GOF5; 9. NK 6Y-4-4; 10. IMCC12433; 11. 142-9; 12. WA3; 13. WM121; 14. WW93; 15. SRY13; 16. IMCC12447; 17. HMF2263; 18. HMF2264; 19. WS72; 20. HME7508; 21. HME8677; 22. WB5; 23. HME8461.
Fig. 4 in A report of 29 unrecorded bacterial species belonging to the phylum Bacteroidetes in Korea
Fig. 4. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences, showing the phylogenetic relationships between the strains isolated in this study and their relatives of the order Sphingobacteriales in the phylum Bacteroidetes. Escherichia coli ATCC 11775T (X80725) was used as an outgroup (not shown). Bootstrap values (>70%) are shown above nodes. Scale bar: 0.01 changes per nucleotide.
Fig. 1 in A report of 29 unrecorded bacterial species belonging to the phylum Bacteroidetes in Korea
Fig. 1. Transmission electron micrographs or scanning electron micrographs of cells of the strains isolated in this study. The cells were cultured at their optimal growth conditions. Strains: 1, HN30-2; 2, RDH3; 3, G4; 4, HMF3809; 5, YBF1; 6, JD36; 7, MW24; 8, LPB0108; 9, M2015-5; 10, KYW1172; 11, C2-40; 12, NR 2-02; 13, DF-2; 14, M2015-1; 15, RDH2; 16, HMF4059; 17, 2015-2; 18, HN41; 19, HN1; 20, HN49; 21, KYW1047; 22, MW105; 23, HMF2508; 24, NU3; 25, HMF3898; 26, LPB0111; 27, HMF3876; 28, LPB0115; 29, HMF3932.
Fig. 2 in Report of 22 unrecorded bacterial species in Korea belonging to phylum Bacteroidetes, discovered during surveys in 2018
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 Flavobacteriales in the class Bacteroidetes. 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, 0.05 substitutions per nucleotide position.
Fig. 3 in A report of nine unrecorded bacterial species in the phylum Bacteroidetes collected from freshwater environments in Korea
Fig. 3. Neighbor-joining phylogenetic tree, based on 16S rRNA gene sequences, showing the relationships among the isolates and taxa in the order Cytophagales. The values above each branch indicate the percentage levels of bootstrap support (>70%) based on 1,000 resamplings. The closed circles indicate that the corresponding nodes were recovered by all treeing algorithms (NJ, MP and ML). Bar, 0.02 changes per nucleotide position.
Fig. 3 in A report of 29 unrecorded bacterial species belonging to the phylum Bacteroidetes in Korea
Fig. 3. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences, showing the phylogenetic relationships between the strains isolated in this study and their relatives of the order Flavobacteriales in the phylum Bacteroidetes. Escherichia coli ATCC 11775T (X80725) was used as an outgroup (not shown). Bootstrap values (>70%) are shown above nodes. Scale bar: 0.01 changes per nucleotide.
Fig. 2 in A report of 29 unrecorded bacterial species belonging to the phylum Bacteroidetes in Korea
Fig. 2. Neighbor-joining phylogenetic tree based on 16S rRNA gene sequences, showing the phylogenetic relationships between the strains isolated in this study and their relatives of the order Cytophagales in the phylum Bacteroidetes. Escherichia coli ATCC 11775T (X80725) was used as an outgroup (not shown). Bootstrap values (>70%) are shown above nodes. Scale bar: 0.01 changes per nucleotide.
A conserved Bacteroidetes antigen induces anti-inflammatory intestinal T lymphocytes
GEO Series GSE198037. Mus musculus. 175 samples. Type: Expression profiling by high throughput sequencing.
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