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31 results for “Oculatellaceae”
FIGURE 21. Tildeniella nuda. A in Revision of the Synechococcales (Cyanobacteria) through recognition of four families including Oculatellaceae fam. nov. and Trichocoleaceae fam. nov. and six new genera containing 14 species
FIGURE 21. Tildeniella nuda. A. Filaments short, Pseudanabaena-like, trichomes not or only slight constricted, connected by somewhat translucent cell wall; B–H. Cells sometimes distinctively elongated, bent or involuted (arrows). Scale bar 10μm in 1000X magnification.
FIGURE 11. Pegethrix olivacea. A–D in Revision of the Synechococcales (Cyanobacteria) through recognition of four families including Oculatellaceae fam. nov. and Trichocoleaceae fam. nov. and six new genera containing 14 species
FIGURE 11. Pegethrix olivacea. A–D. Irregular filament shapes due to uneven cell division events along trichome. E. Single falsebranching filament. F. Nodule formation. G–K. Irregular cell shape and trichome length, hormogonia few-celled, abundant. Scale bar 10μm in 1000X magnification.
FIGURE 20. Tildeniella torsiva. A in Revision of the Synechococcales (Cyanobacteria) through recognition of four families including Oculatellaceae fam. nov. and Trichocoleaceae fam. nov. and six new genera containing 14 species
FIGURE 20. Tildeniella torsiva. A. Single false-branching very rarely observed, only in senescing culture. B. Cells isodiametric to slightly longer than width. C–D. Filaments sometimes wavy to strongly spirally coiled. Scale bar 10μm in 1000X magnification.
FIGURE 8 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 8. Comparative analysis of V2 and V3 helix of 16S-23S ITS region of test strain AP3b (Aerofilum fasciculatum) with the genera of Oculatellaceae family. a-g. V2 helix. h-n. V3 helix.
FIGURE 4 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 4. Transmission electron microscopy of strain AP3 and AP3b. a and b. Cross-section of a part of filament of strain AP3 showing thylakoidal arrangement and granulations. c and d. Cross-sectional view of cell of strain AP3b showing aerotopes distributed throughout the cell. th = thylakoids; pg = polyphosphate granules; cb = carboxysomes; cw = cell wall; ms = mucilaginous sheath; gv = gas vesicles.
FIGURE 1 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 1. Map showing the location of sample collection sites of the Sundarbans forest located in the state of West Bengal, India. Samples were collected from the Sagar and the Lothian island of Indian Sundarbans. Blue pin = Sagar island; Red pin = Lothian island
FIGURE 2 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 2. Light microscopy of strain AP3 and AP3b (non-axenic cultures). a and b. Microphotographs showing the filaments of strain AP3. c and d. Microphotographs showing the filaments of strain AP3b. Filaments observed in a & c were from exponential phase and in b & d were from stationary phase of the growth period for the respective strains. Scale = 10 µm
FIGURE 6 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 6. Comparative analysis of D1-D1' helix, Box-B and V2 helix of 16S-23S ITS region of test strain AP3 (Euryhalinema pallustris) and reference strain Euryhalinema mangrovii. a-b. D1-D1' helix. c-d. Box-B helix. e-f. V2 helix
FIGURE 3 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 3. Scanning electron microscopy of strains AP3 and AP3b. a, c and d. Filaments of strain AP3. b. Filaments of strain AP3b (nonaxenic) showing a hormogonium and a necridic cell. e and f. Filaments of strain AP3b showing presence of a facultative mucilaginous sheath. hg = hormogonium; nc = necridic cell; ms = mucilaginous sheath
FIGURE 5 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 5. Phylogenetic tree based on 16S rRNA gene sequences of total 115 OTUs belonging to 3 families of Synechococcalean order and Gloeobacter violaceus as outgroup. Bootstrapping with 1000 resamplings was performed. Support values are ML bootstrap/ BI posterior probability. Scores denoted by '-' for any node showed no support in that analysis. The investigated strains with clones (AP3 and AP3b) are shown in bold. Taxon name in quotation mark, e.g. "Calothrix" in our opinion represents an incorrectly submitted sequence and requires revision. Collapsed clades can be viewed expanded in Fig. S1. Designation of families according to Mai et al. (2018).
FIGURE 7 in Aerofilum fasciculatum gen. nov., sp. nov. (Oculatellaceae) and Euryhalinema pallustris sp. nov. (Prochlorotrichaceae) isolated from an Indian mangrove forest
FIGURE 7. Comparative analysis of D1-D1' helix and Box-B helix of 16S-23S ITS region of test strain AP3b (Aerofilum fasciculatum) with the genera of Oculatellaceae family. a-g. D1-D1' helix. h-n. Box-B helix.
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