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167 results for “Xeniidae”
FIGURE 10 in A new species of Sympodium (Octocorallia, Xeniidae) from Miyazaki, Japan
FIGURE 10. Phylogenetic relationships of species in the Xeniidae based on the concatenated MutS, 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 (>0.85). Sympodium omasum sp. nov. are shown in orange.
FIGURE 8 in A new species of Sympodium (Octocorallia, Xeniidae) from Miyazaki, Japan
FIGURE 8. Scanning electron micrographs of platelets of Sympodium omasum sp. nov., paratype KBF-OA-00083 (MUFSCOMO63 in Koido et al. 2019) A. ellipsoid platelets B. hexagonal platelets C. double-heads. Scale bar: 10 μm.
FIGURE 5 in A new species of Sympodium (Octocorallia, Xeniidae) from Miyazaki, Japan
FIGURE 5. Scanning electron micrographs of platelets of Sympodium omasum sp. nov., holotype KBF-OA-00081 (MUFSCOTUG2 in Koido et al. 2019) A. ellipsoid platelets B. hexagonal platelets C. double-heads. Scale bar: 10 μm.
FIGURE 21 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 21. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816 (USNM 1202010). a. Ellipsoid platelets; b. Fractured sclerite composed of a latticework matrix of calcite rods, dendritic and sinuous, and radially arranged in peripheral region. Scale bar 0.010 mm.
FIGURE 20 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 20. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816 (USNM 1202005). a. Ellipsoid platelets; b. Overview of sclerites; c. Fractured sclerites composed of a latticework matrix of calcite rods, dendritic and sinuous, and radially arranged in peripheral region. Scale bar 0.010 mm.
FIGURE 18 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 18. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816 (ZMTAU CO 36792). Ellipsoid sclerites. Scale bar 0.010 mm.
FIGURE 16 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 16. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816, neotype (ZMTAU CO 36788). a. Ellipsoid platelets; b. Fractured sclerite enlarged, composed of a latticework matrix of calcite rods, in part aligned horizontally on surface; c. Fractured sclerite; d. Overview of sclerites. Scale bar at a, c and d 0.010 mm, at b 0.002 mm.
FIGURE 23 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 23. Bayesian tree of family Xeniidae based on partitioned analysis of mtMutS, igr1+COI and 28S rDNA. Solid circles: posterior probability> 0.9, ML bootstrap value>70%; open circles: pp> 0.9, bs <70%. Genera other than Xenia, Heteroxenia and Ovabunda have been collapsed to facilitate readability. X1, X2 and X3 denote clades defined by McFadden et al. 2014.
FIGURE 15 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 15. Scanning electron micrographs of polyp sclerites of Xenia viridis Schenk, 1896 holotype (SMF 42). a. Ellipsoid platelets featuring rough granulated surface, arrow indicates surface furrow; b. Sclerites with surface crest, fractured; c. Fractured sclerites composed of a latticework matrix of calcite rods, dendritic and sinuous, and radially arranged in peripheral region. Scale bar at a and b 0.010 mm, at c 0.002 mm.
FIGURE 17 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 17. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816 (ZMTAU CO 36780). Ellipsoid sclerites. Scale bar 0.010 mm.
FIGURE 14 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 14. Scanning electron micrographs of polyp sclerites of Xenia ternatana Schenk, 1896 holotype (SMF 43). a. Ellipsoid platelets, most fractured; b. Fractured sclerite composed of dendritic calcite rods; c. Sclerites with surface crest. Scale bar 0.010 mm.
FIGURE 9 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 9. Scanning electron micrographs of polyp sclerites of Xenia membranacea Schenk, 1896 syntype (SMF 41). a. Irregular sclerites with rough surface texture; b. Irregular sclerites with granular surface texture; c. Sclerites with surface crest, some fractured; d. Fractured sclerites composed of dendritic rods (enlarged). e. Ellipsoid platelets; f. Round sclerite; g. Fractured sclerite. Scale bar at a, b, c, e, f, g 0.010 mm, at d 0.002 mm.
FIGURE 12 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 12. Scanning electron micrographs of polyp sclerites of Xenia novaebritanniae Schenck, 1896 syntype (BMNH 1962.7.20.149). a. Ellipsoid platelets, fractured; b. Fractured sclerites; c. Fractured sclerite enlarged, composed of calcite rods. Scale bar at a and b 0.010 mm, at c 0.002 mm.
FIGURE 8 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 8. Scanning electron micrographs of polyp sclerites of Xenia grasshoffi Verseveldt, 1974 holotype (SMF 2616). a. Ellipsoid platelets, fractured; b. Sclerites with surface crest; c. Fractured sclerites composed of a latticework matrix of dendritic calcite rods radially arranged, at least in peripheral region; d. Overview of variety of sclerites. Scale bar at a, b and c 0.010 mm, at d 0.020 mm.
FIGURE 19 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 19. Scanning electron micrographs of polyp sclerites of Xenia umbellata Lamarck, 1816 (ZMTAU CO 37034). a. Ellipsoid platelets; b. Overview of sclerites. b. Fractured sclerite enlarged, revealing sinuous dendritic structure. Scale bar at a and c 0.010 mm, at b 0.002 mm.
FIGURE 11 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 11. Scanning electron micrographs of polyp sclerites of Xenia novaebritanniae Schenk, 1896 syntype (BML 1962.7.20.148). a. Ellipsoid platelets, fractured; b. Fractured sclerite; c. Fractured sclerites enlarged composed of a latticework matrix of calcite rods, dendritic and sinuous, radially arranged in peripheral region. Scale bar at a and b 0.010 mm, at c 0.002 mm.
FIGURE 7 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 7. Scanning electron micrographs of polyp sclerites of Xenia garciae Bourne, 1894 type (BML 1921.11.18.1). a. Sclerite with a surface crest, fractured; b. Ellipsoid sclerites, fractured c. Fractured sclerite composed of a latticework matrix of calcite rods, dendritic and sinuous and radially arranged in the peripheral region; d. Overview of sclerites, fractured. Scale bar at a, b and d 0.010 mm, at c 0.002 mm.
FIGURE 6 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 6. Scanning electron micrographs of polyp sclerites of Xenia fusca Schenk, 1896 syntype (SMF 40). a. Ellipsoid platelets; b. Fractured sclerites composed of a latticework matrix of dendritic calcite rods and more or less radially arranged in the peripheral region; c. Overview of sclerites. Scale at a and c 0.010 mm, at b 0.002 mm.
FIGURE 5 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 5. Scanning electron micrographs of polyp sclerites of Xenia crassa Schenk, 1896 holotype (SMF 39). a. Sclerites with a surface crest, fractured; b. Ellipsoid platelet, mostly fractured; c. Fractured sclerite composed of a latticework matrix of dendritic calcite rods and more or less radially arranged in the peripheral region. Arrows at b, c indicate surface furrow. Scale bar 0.010 mm.
FIGURE 10 in Re-description of type material of Xenia Lamarck, 1816 (Octocorallia: Xeniidae)
FIGURE 10. Scanning electron micrographs of polyp sclerites of Xenia multispiculata Schenk, 1896 Syntype (ZMB 6920). a. Ellipsoid platelets, some fractured; b. Fractured sclerites; c. Fractured sclerites composed of a latticework matrix of calcite rods, dendritic and sinuous, radially arranged in the peripheral region. Scale bar at a and b 0.010 mm, at c 0.002 mm.
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