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167 results for “Xeniidae”
FIGURE 13 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 13. Scanning electron micrographs of polyp sclerites of Xenia rubens Schenk, 1896 type (SMF 46). a. Ellipsoid platelets; b. Fractured sclerites revealing internal void; c. Overview of sclerites. Scale bar at a 0.010 mm, at b 0.002 mm, at c 0.020 mm.
FIGURE 3 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 3. Scanning electron micrographs of polyp sclerites of Xenia blumi Schenk, 1896 holotype (SMF 44). a. Ellipsoid platelets, fractured; b. Fractured sclerite enlarged; c. Fractured sclerite composed of dendritic rods; d. Overview of sclerites. Scale bar at a, c and d 0.010 mm, at b 0.002 mm.
FIGURE 22 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 22. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816 (USNM 1202016). a. Ellipsoid platelets, some fractured; b. Fractured sclerite (enlarged) composed of a latticework matrix of calcite rods, dendritic and sinuous, and radially arranged in peripheral region. c. Fractured sclerite. Scale bar at a, c 0.010 mm, at b 0.002 mm.
FIGURE 4 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 4. Scanning electron micrographs of polyp sclerites of Xenia plicata Schenk, 1896 holotype (SMF 45). a. Ellipsoid platelets, most fractured; b. Fractured sclerite; c. Fractured sclerite, enlarged, composed of calcite rods, often dendritic and sinuous, and more or less radially arranged in the peripheral region. Scale bar at a and b 0.010 mm, at c 0.001 mm.
FIGURE 2 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 2. Scanning electron micrographs of polyp sclerites of Xenia bauiana May, 1899 syntype (ZMB 3673). a. Ellipsoid platelets, mostly fractured; b. Fractured sclerite composed of dendritic rods, more or less radially arranged in the peripheral region; Scale bar at a 0.010 mm, at b 0.005 mm.
FIGURE 1 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 1. Scanning electron micrographs of polyp sclerites of Xenia flexibilis n. sp. holotype (ZMB 6105). a. Ellipsoid platelets, some fractured; b. Fractured sclerite revealing matrix of calcite rods, more or less radially arranged, at peripheral region; c. Overview of group of sclerites. Scale bar 0.010 mm.
Data from: Molecular operational taxonomic units reveal restricted geographic ranges and regional endemism in the Indo‐Pacific octocoral family Xeniidae
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Figure 8 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 8 Scanning electron micrographs of the surface of sclerites in tentacles of Xenia konohana sp. nov., holotype KBF-OA-00092 A surface of platelets covered by minute papillae B broken platelets with radial dendritic rods C central surface of spindle covered by minute granular D thorns on the surface of spindles E broken spindle F close-up view of a broken spindle with fused grain G tip of a spindle. Scale bar: 0.001 mm.
Figure 9 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 9 Scanning electron micrographs of paratype (KBF-OA-00093) of Xenia konohana sp. nov.: A platelets B spindles (arrow indicates thorns on the surface of spindles) C surface of platelets D central surface of spindle E tip surface of a spindle F thorns on the surface of spindles. Scale bar: 0.01 mm (A, B); 0.001 mm (C–F).
Figure 4 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 4 Light microscope images of sclerites in polyps of Xenia konohana sp. nov., holotype KBF-OA-00092 A spindles B simple platelets.
Figure 5 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 5 Stereoscopic microscopes images of sclerites in polyps of Xenia konohana sp. nov., holotype KBF-OA-00092 A spindles B simple platelets.
Figure 3 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 3 Tentacles of Xenia konohana sp. nov. aboral (left) and oral sides (right) A schema of holotype KBF-OA-00092: three rows (the number is shown in the upper-right) and 13 pinnules at the outermost row (the number is shown in the center) B holotype KBF-OA-00092 C paratype KBF-OA-00093 D paratype KBF-OA-00094. Scale bar: 1 mm.
Figure 11 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 11 Phylogenetic relationships of species in the Xeniidae based on the concatenated mtMutS, COI and 28S sequences. Numbers above main branches show percentages of bootstrap values (> 50%) in maximum likelihood analysis; numbers below main branches show Bayesian posterior probabilities. X1, X2 and X3 denote clades defined by McFadden et al. (2014b). Xenia konohana sp. nov. is shown in red.
Figure 10 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 10 Scanning electron micrographs of paratype (KBF-OA-00094) of Xenia konohana sp. nov.: A platelets B spindles (arrow indicates thorns on the surface of spindles) C surface of platelets D central surface of spindle E tip surface of a spindle F thorns on the surface of spindles. Scale bar: 0.01 mm (A, B); 0.001 mm (C–F).
Figure 2 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 2 Fixed specimens of Xenia konohana sp. nov. A holotype BF-OA-00092 B paratype KBF-OA-00093 C, D paratype KBF-OA-00094. Scale bar: 10 mm.
Figure 7 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 7 Scanning electron micrographs of spindles of Xenia konohanasp. nov., holotype KBF-OA-00092 A in tentacles B in polyp body C in stalk surface D in branch surface. Arrow indicates thorns on the surface of spindles. Scale bar: 0.010 mm.
Figure 6 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 6 Scanning electron micrographs of platelets of Xenia konohana sp. nov., holotype KBF-OA-0009 A in tentacles B in polyp body C in stalk surface D in branch surface. Scale bar: 0.010 mm.
Figure 12 from: Koido T, Imahara Y, Fukami H (2022) Xenia konohana sp. nov. (Cnidaria, Octocorallia, Alcyonacea), a new soft coral species in the family Xeniidae from Miyazaki, Japan. ZooKeys 1085: 29-49. https://doi.org/10.3897/zookeys.1085.77924
Figure 12 Phylogenetic relationships of species in the Xeniidae based on ND2 sequences. Numbers above main branches show percentages of bootstrap values (> 50%) in maximum likelihood analysis; numbers below main branches show Bayesian posterior probabilities. Xenia konohana sp. nov. is shown in red.
FIGURE 1 in A new species of Sympodium (Octocorallia, Xeniidae) from Miyazaki, Japan
FIGURE 1. Map of the collection sites of Sympodium.
Figure 9 from: Benayahu Y, van Ofwegen LP, McFadden CS (2018) Evaluating the genus Cespitularia MilneEdwards & Haime, 1850 with descriptions of new genera of the family Xeniidae (Octocorallia, Alcyonacea). ZooKeys 754: 63-101. https://doi.org/10.3897/zookeys.754.23368
Figure 9 Conglomeratusclera coerulea (May, 1898), ZMTAU Co 35765. Conglomerate sclerite composed of striated ovals and cylinder-like small sclerites (left top corner).
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