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FIGURE 6. Antennablennius hypenetes, A in Mitochondrial DNA-based reassessment of Antennablennius Fowler (Blenniidae: Salariini) from the north-western Indian Ocean, with resurrection of A. persicus (Regan)
FIGURE 6. Antennablennius hypenetes, A: male, Obhur, Jeddah, Saudi Arabia; B: SMF 35918 (tissue sample 14-585), 35.0 mm SL, female, Obhur, Jeddah, Saudi Arabia; C: SMF 39710 (tissue sample KAU17-129), 45.0 mm SL, male, Farasan Island, Saudi Arabia; D: 40.0 mm SL, Obhur, Jeddah, Saudi Arabia. Photos by S.V. Bogorodsky.
FIGURE 4. A in Mitochondrial DNA-based reassessment of Antennablennius Fowler (Blenniidae: Salariini) from the north-western Indian Ocean, with resurrection of A. persicus (Regan)
FIGURE 4. A: Antennablennius adenensis, BPBM 34470, 35.0 mm SL, Musandam, Oman. Antennablennius aff. adenensis 2, SMF 34097 (tissue sample SOC18-006), 23.2 mm SL, male, Di Hamri, Socotra Island, B: fresh specimen; C: live specimen. Antennablennius aff. adenensis 1, D & E: ZMFUM-BLE-0104, 40.0 mm SL, male, Kish Island, Iran, Persian Gulf; F: ZMFUMBLE-0110, 31.0 mm SL, female, Kish Island, Iran, Persian Gulf. Photos by J.E. Randall (A), S.V. Bogorodsky (B & C), S. Estekani (D–F).
FIGURE 1 in Mitochondrial DNA-based reassessment of Antennablennius Fowler (Blenniidae: Salariini) from the north-western Indian Ocean, with resurrection of A. persicus (Regan)
FIGURE 1. Map of the distributional ranges and sampled localities of phylogenetic lineages identified on the basis of mitochondrial DNA analyses.
FIGURE 2 in Mitochondrial DNA-based reassessment of Antennablennius Fowler (Blenniidae: Salariini) from the north-western Indian Ocean, with resurrection of A. persicus (Regan)
FIGURE 2. Bayesian tree resulting from the data set of COI gene. Posterior probability values of the Bayesian Inference analysis are indicated by asterisk at the> 99% (**) and> 95% (*) significance levels. Numbers on the branch indicate posterior probability values of the Maximum Likelihood analysis (values greater than 50% were shown).
FIGURE 7 in Mitochondrial DNA-based reassessment of Antennablennius Fowler (Blenniidae: Salariini) from the north-western Indian Ocean, with resurrection of A. persicus (Regan)
FIGURE 7. Antennablennius persicus, Chabahar, Iran, Gulf of Oman. A: ZMFUM-BLE-0124, 60.7 mm SL, male; B: ZMFUMBLE-0113, 61.0 mm SL, male; C: ZMFUM-BLE-0122, 56.0 mm SL, female; D: ZMFUM-BLE-0119, 59.0 mm SL, female. Photos by S. Estekani.
FIGURE 3. TCS haplotype network obtained for 521 in Mitochondrial DNA-based reassessment of Antennablennius Fowler (Blenniidae: Salariini) from the north-western Indian Ocean, with resurrection of A. persicus (Regan)
FIGURE 3. TCS haplotype network obtained for 521 bp fragment of mitochondrial COI of the genus Antennablennius. Numbers between haplotypes represent mutational steps between them.
FIGURE 10 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 10. Lithophyllum socotraense sp. nov. A) The holotype, sample DB635, a rhodolith, conserved in TRH. Note the lumpy growthform. The sample has been cut for histological analyses. B) Microscopical anatomy of a fertile thallus, slide DB635-SO20b_9. C) Sparse trichocytes (arrow) in the perithallus (p) of sample DB636, slide DB636-SO25b_7; e = epithallial cells. D) Same as in C, detail of ventral hypothallial cells (h) and the dimerous organization of the thallus. E) Same as in C, magnification of trichocytes (t). F) Flattened epithallial cells (e) in slide DB635-SO20b_10. G) Tetrasporangial conceptacle with central columella in the holotype, SEM stub 09062010b6. H) Holotype sample DB635. Tetrasporangial conceptacle in slide DB635-SO20b_10; inset: a tetraspore, slide DB635-SO20b_7.
FIGURE 11 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 11. Lithophyllum yemenense sp. nov. A) The holotype, sample DB567 conserved in TRH. B) Appearance of a fertile portion of the holotype; h=hypothallus; p=perithallus; e=epithallial cells, slide DB567-13y4. C) Same as in B, detail of secondary pit-connections (arrow) and trichocytes (t). D) Magnification of the flattened epithallial cells (e), slide DB567-13y2. E) Detail of B to show the dimerous organization with a ventral one-cell layer of hypothallial cells (h) each one giving rise to the perithallial filaments, slide DB567-13y5. F) Uniporate tetrasporangial conceptacle chamber with floor showing a central columella, slide DB567-13y2.
FIGURE 13 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 13. Phylogenetic analysis inferred from psbA including sequences from GenBank (with either incomplete or doubtful identification) and the type specimens of L. socotraense and L. yemenense. Supports at nodes are bootstrap values (1000 replicates).
FIGURE 4 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 4. The syntype collection of Lithophyllum kaiseri Heydrich in TRH. A) Box A20-1264 in TRH. B) The carton box containing the syntype collection of L. kaiseri. C) Thin sections 6 and 1150, part of the collection A20-1264. Only slide 6 is here retained as part of the lectotype, because of the uncertain origin of slide 1150. D) The two specimens A20-1264 in TRH. The small plant (arrow) is here selected as lectotype of L. kaiseri. The larger specimen is excluded because of its uncertain origin.
FIGURE 12. L in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 12. L. yemenense sp. nov., male and carposporangial plants. A) Male conceptacle with unbranched spermatangial filaments, slide DB563-4ya4. B) Carposporangial conceptacle with short peripheral gonimoblast filaments (arrow) bearing terminal carposporangia. Sample DB569, slide DB569-10y5.
FIGURE 5 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 5. Microscopical anatomy of the small plant (Fig. 4D, arrow) lectotype A20-1264 of L. kaiseri in TRH. A) Perithallial cell filaments (p) and an empty uniporate conceptacle, SEM stub 08112012b12. Note trichocytes are not apparent. B) Perithallus (p) in slide A20-1264_8 with abundant trichocytes. C) Detail of a thin portion of the thallus with hypothallus (h) and perithallus (p) of cells connected by primary and secondary pit-connections. D) Same as in B; detail of secondary pit-connections (arrow) and trichocytes (t). E) Epithallial cells in surface view with trichocyte trace (arrow), SEM stub 08112012b12. F) Same as in B; flattened epithallial cells (e). G) Detail of an empty uniporate conceptacle chamber with 4–5 cells forming the roof filaments.
FIGURE 9 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 9. Microscopical anatomy of the holotype of L. subreduncum Foslie, slide A20-1291_2. A) Vegetative thallus with abundant trichocytes (t) in the perithallus (p), and epithallial flattened cells (e). B) Details of the secondary pit-connections (arrow) in the perithallus and the abundant trichocytes (t). C) Magnification of secondary pit-connections (arrow) and epithallial cells (e). D) A tetrasporangial conceptacle with remain of a central columella.
FIGURE 8 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 8. The holotype collection of Lithophyllum subreduncum Foslie in TRH. A) Box A20-1291 in TRH. B) The carton box containing the holotype of L. subreduncum. C) Thin section 503 part of the holotype of L. subplicatum. D) The specimen A20-1291 in TRH, holotype of L. subreduncum.
FIGURE 3 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 3. Microscopical anatomy of L. affine. A) Perithallial cell filaments (p) and terminal epithallial cells (e) of the lectotype of L. affine, slide A20-1279_12 of a decalcified fragment. B) Detail of perithallial cell filaments with secondary pit-connections (arrows) and trichocytes (t) in L. affine, slide A20-1279_12. C) Flattened epithallial cells (e), slide A20-1279_12. D) A tetrasporangial conceptacle in the lectotype A20-1279. Note the pore opening in a depression of the conceptacle chamber roof. Slide A20-1279_12.
FIGURE 1 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 1. Distance analysis (Neighbor joining) performed on the 5'end of the nuclear LSU of the seven type specimens considered in this study.
FIGURE 7 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 7. Microscopical anatomy of the lectotype of L. subplicatum (Foslie) comb. et stat. nov. TRH A20-1286 from decalcified material. A) Trichocytes (arrows) in the perithallus (p) with filaments terminating in flattened epithallial cells (e), slide A20-1286_5. B) Same as in A. Thallus dimerous, with hypothallial (ventral) cells visible on bottom left (h), each one giving rise to a filament of perithallial cells (p). C) Same as in A, with magnification of secondary pit-connections (arrow) and trichocytes (t). D) An empty uniporate conceptacle chamber with 6–8 cells in the roof filaments. Slide A20-1286_5.
FIGURE 6 in The genus Lithophyllum in the north-western Indian Ocean, with description of L. yemenense sp. nov., L. socotraense sp. nov., L. subplicatum comb. et stat. nov., and the resumed L. affine, L. kaiseri, and L. subreduncum (Rhodophyta, Corallinales)
FIGURE 6. The lectotype collection of Lithophyllum subplicatum (Foslie) comb. et stat. nov. in TRH. A) Box A20-1286 in TRH. B) Thin section 596 part of the lectotype of L. subplicatum. C) The specimen A20-1286 in TRH, lectotype of L. subplicatum.
FIGURE 3 in New circumscription of Trichomanes cupressoides Desvaux (Hymenophyllaceae), an endemic filmy fern from the Seychelles (Indian Ocean), and new insights into the genus Abrodictyum C.Presl in the western Indian Ocean
FIGURE 3. Details of pinnules and ultimate segments. A. Seychellois Abrodictyum cupressoides (Rouhan 135, P00696126). B. Malagasy Abrodictyum « cupressoides » (Rakotondrainibe 6229, P00243868). C. Malagasy Abrodictyum «rigidum» (Rakotondrainibe 6111, P00212654). D. Trichomanes boivinii (Rouhan 326, P00749272). E. Abrodictyum guineense (Jongkind 5504, P06243593). F. Trichomanes madagascariense (Rouhan 367, P00749322). Scale = 500 μm.
FIGURE 4 in New circumscription of Trichomanes cupressoides Desvaux (Hymenophyllaceae), an endemic filmy fern from the Seychelles (Indian Ocean), and new insights into the genus Abrodictyum C.Presl in the western Indian Ocean
FIGURE 4. Bayesian phylogeny inferred from rbcL sequences. Support values on nodes are posterior probabilities. The three morphotypes (see text and Fig. 1) are outlined by a box. The dotted line defines the Africa-Indian Ocean clade close to neotropical Trichomanes (see text). The arrow shows the valid A. rigidum (according to the type). Tr = trichomanoid lineage; Ab = subgenus Abrodictyum; Pa = subgenus Pachychaetum; T = genus Trichomanes.
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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.