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81 results for “Suberitidae”
FIGURE 1. A in A new species of Aaptos (Porifera, Hadromerida, Suberitidae) from Pribilof Canyon, Bering Sea, Alaska
FIGURE 1. A: Holotype of Aaptos kanuux sp. n. in situ at 219 m depth in Pribilof Canyon. Black pebbles to which the sponge is attached are buried in the silt and not visible. Sponge diameter is approx. 3cm. B: Holotype, preserved in ethanol. Two fragments have already been cut out of the sponge. Note the radial arrangement in the interior. Sponge diameter is 1.9cm C: Radial arrangement of spicules and partly hispid surface visible. D: Overview of spicules occurring in Aaptos kanuux sp. n. Large strongyloxeas, medium sized subtylostyles and short, ectosomal tylostyles. Scale bar is 1 mm. E: Medium sized subtylostyles and ectosomal tylostyles. Scale bar *is* 100µm. F: Ectosomal tylostyles and ends of medium sized spicule category. Scale bar *is* 100µm.
FIGURE 9. Suberites aff. latus Lambe, 1893. A–B in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 9. Suberites aff. latus Lambe, 1893. A–B, live specimen of the encrusting form (MNRJ 13688); C, skeleton architecture in transverse ground section (MNRJ 13688); D–E, tylostyles I & II respectively; F–G, tylostyles heads of D–E; H–K, centrotylotes. Scale bars: A, approx. 5 cm; B, 1 cm; C, 500 μm; D–E, 100 μm; F–G, 20 μm; H–K, 10 μm.
FIGURE 11 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 11. Terpios cf. granulosus Bergquist, 1967. A–B, live specimens (MNRJ 11399 and MNRJ 11495 respectively); C, skeleton architecture in transversal ground section; D–F, tylostyles; G–J, details of D. Scale bars: A, 2 cm; B, 1 cm; C, 500 μm; D–F, 50 μm; G–J, 2 μm.
FIGURE 10 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 10. Suberites inti sp. nov. (MNRJ 12869) A–B, live specimen (right one in A); C, ectosomal skeleton in tangential ground section; D, detail of choanosome; E, skeleton architecture in transverse ground section; F–G, tylostyles I & II respectively; H–I, tylostyles heads of F–G. Scale bars: A, 2 cm; B, 1 cm; C–E, 500 µm; F–G, 100 µm; H–I, 20 µm.
FIGURE 8. Suberites aff. latus Lambe, 1893. A–B in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 8. Suberites aff. latus Lambe, 1893. A–B, live specimen (MNRJ 13698); C, tangential section of the ectosome in ground section (MNRJ 13698); D, skeleton architecture in transverse ground section (MNRJ 13698); E–F, tylostyles I & II, respectively; G–H, tylostyles heads of E–F. Scale bars: A, approx. 2 cm; B, 1 cm; C, 200 µm; D, 500 µm; E–F, 100 µm; G–H, 20 µm.
FIGURE 5 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 5. Hymeniacidon perlevis (Montagu, 1814)—yellow. A–B, live specimens (MNRJ 12859 and MNRJ 11252); C, ectosomal skeleton in tangential ground section (UCSUR-07-000007); D, skeleton architecture in transverse ground section (MNRJ 12859); E–F, styles (MNRJ 12859); G–H, details of E. Scale bars: A, approx. 2 cm; B, 5 cm; C, 200 µm; D, 500 µm; E–F, 100 µm; G–H, 20 µm.
FIGURE 7 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 7. Plicatellopsis expansa (Thiele, 1905). A–B, live specimen between 10 and 15 m (MNRJ 11248); C, live specimen at 45 m (MNRJ 12152); D, skeleton architecture in transverse ground section (MNRJ 11247); E–F, subtylostyles I & II (MNRJ 11247); G–H, subtylostyles heads of E–F. Scale bars: A–B, 2 cm; C, 2 cm; D, 500 µm; E–F, 100 µm; G–H, 20 µm.
FIGURE 6 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 6. Johannesia reticulosa (Thiele, 1905). A–B, live specimens (MNRJ 12073 and MNRJ 12198 respectively); C, skeleton structure of the ectosome in tangential ground section; D, skeleton architecture in transverse ground section; E, oxea; F–G, Details of E; H, subtylostyle; I–J, details of H. Scale bars: A, 5 cm; B, 1 cm; C, 500 µm; D, 200 µm; E–H, 100 µm; F–G, 50 µm; I–J, 20 µm.
FIGURE 4 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 4. Hymeniacidon perlevis (Montagu, 1814)—orange. A–B, live specimens (MNRJ 12181 and MNRJ 12183); C, ectosomal skeleton in tangential ground section (UCSUR 07-000059); D skeleton architecture in transverse ground section (MNRJ 12084); E–F, styles (MNRJ 12084); G–H, details of E. Scale bars: A–B, approx. 2 cm; C, 200 µm; D, 500 µm; E–F, 100 µm; G–H, 20 µm.
FIGURE 2 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 2. Halichondria (Halichondria) cristata Sarà, 1978. A–B, live specimens (MNRJ 11388 and MNRJ 12821, respectively); C, skeleton architecture in transverse ground section; D, skeleton architecture of the ectosome in tangential ground section; E–F, oxeas; G–H, details of E; Scale bars: A, 1 cm; B, approx. 1 cm; C–D, 500 µm; E–F, 100 µm; G–H, 20 µm; (C–H = MNRJ 11388).
FIGURE 3 in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 3. Halichondria (Halichondria) prostrata Thiele, 1905. A, live specimen (MNRJ 12884); B, skeleton architecture in transverse ground section; C, skeleton architecture of the ectosome in tangential ground section; D, oxea; E–F, details of D. Scale bars: A, 2 cm; B–C, 500 cm; D, 100 µm; E–F, 20 µm.
FIGURE 1 in First record of Ciocalypta Bowerbank, 1862 (Demospongiae, Suberitida Halichondriidae) in the Eastern Pacific, with description of a new species from Peru
FIGURE 1. Collection site. Location of San Fernando National Reserve, Ica, Peru.
FIGURE 13 in A new species of habitat – forming Suberites (Porifera, Demospongiae, Suberitida) in the Benguela upwelling region (South Africa)
FIGURE 13. Heatmap indicating high densities of S. dandelenae sp. nov.
FIGURE 2 in A new species of habitat – forming Suberites (Porifera, Demospongiae, Suberitida) in the Benguela upwelling region (South Africa)
FIGURE 2. Sponge species distribution (red dot) trawls (black dots).
FIGURE 3. Three specimen groups for west coast S in A new species of habitat – forming Suberites (Porifera, Demospongiae, Suberitida) in the Benguela upwelling region (South Africa)
FIGURE 3. Three specimen groups for west coast S. dandelenae sp. nov.
Fig. 11. Polymastia viridis n in Ten new species of families Suberitidae and Polymastiidae (Demospongia: Heteroscleromorpha) from Korea
Fig. 11. Polymastia viridis n. sp. A, external morphology; B, spicules; C, D, brush-like spicules at the ectodome; E, head of tylostyles; F, sharp end of spicules. Scale bars: A = 1 cm, B = 50 μm, C-F = 25 μm.
Fig. 10. Polymastia sasuensis n in Ten new species of families Suberitidae and Polymastiidae (Demospongia: Heteroscleromorpha) from Korea
Fig. 10. Polymastia sasuensis n. sp. A, external morphology; B, underside of sponge; C, spicules with ectoderm; D, hair-like surface spicules under the dissecting microscope; E, F, tylostyles; G, bundle of tylostyles; H, tylostyles with spongin. Scale bars: A = 2 cm, B = 1 cm, C, F- H = 50 μm, E = 100 μm.
Fig. 7. Suberite srugosa n in Ten new species of families Suberitidae and Polymastiidae (Demospongia: Heteroscleromorpha) from Korea
Fig. 7. Suberite srugosa n. sp. A, external morphology; B, C, brush-like surface spicules; D, spicules; E, F, tylostyles. Scale bars: A = 1.5 cm, B = 100 μm, C-F = 50 μm.
FIGURE 8. Rhizaxinella gadus. A in Taxonomy and phylogeny of the family Suberitidae (Porifera: Demospongiae) in California
FIGURE 8. Rhizaxinella gadus. A: Whale-fall where SIO-BIC P1999 was collected. B: Soft-sediment where P2000 was collected; when disturbed by the slurp tube, all stalked sponges in this photo were revealed to be connected below the sediment by branched stalks. C: DDT-barrel dump site where SIO-BIC P2015 was collected. D: Cross-section of SIO-BIC P1999 showing ectosomal spicule bouquets and confused choanosomal skeleton. E: Cross-section of SIO-BIC P2016 showing confused spicules and spicule bundles in choanosome. F: tylostyle from SIO-BIC P1999.
FIGURE 1 in Taxonomy and phylogeny of the family Suberitidae (Porifera: Demospongiae) in California
FIGURE 1. Maximum likelihood phylogeny of the 28S locus. Genbank accession numbers and collection locations (when known) are shown; bold indicates new sequences. Asterisks at nodes indicate SH-aLRT ≥ 80% and UFbootstrap ≥ 95%. Scale bar indicates substitutions per site. Asterisks in node names indicate type species of a genus.
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International Brain Laboratory public data
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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.