File:Haliclona cnidata (10.3389-fmars.2018.00509) Figure 4.jpg

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English: Figure 4. Photographs of Haliclona cnidata sp. nov. and its skeletal composition. (A) Haliclona cnidata sp. nov. in the marine aquarium system of Justus Liebig University Giessen. (B) Sponge ectosome showing isodictyal reticulated tangential skeleton. (C) Ectosomal and choanosomal structures. Spongin fibers: (D) collagen filaments, (E) compound fasciculate fibers in choanosome, (F) partially cored with detritus. (G) Megascleres of the type oxea. Depicted are scanning electron micrographs (B–D,F) and light microscopic images (E,G).
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Source https://doi.org/10.3389/fmars.2018.00509
Author Schellenberg J, Reichert J, Hardt M, Schmidtberg H, Kämpfer P, Glaeser SP, Schubert P and Wilke T (2019) The Precursor Hypothesis of Sponge Kleptocnidism: Development of Nematocysts in Haliclona cnidata sp. nov. (Porifera, Demospongiae, Haplosclerida). Front. Mar. Sci. 5:509. doi: 10.3389/fmars.2018.00509
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current18:06, 16 May 2020Thumbnail for version as of 18:06, 16 May 2020510 × 633 (312 KB)Christian Ferrer (talk | contribs){{Information | description = {{en|1=Figure 4. Photographs of ''Haliclona cnidata'' sp. nov. and its skeletal composition. (A) ''Haliclona cnidata'' sp. nov. in the marine aquarium system of Justus Liebig University Giessen. (B) Sponge ectosome showing isodictyal reticulated tangential skeleton. (C) Ectosomal and choanosomal structures. Spongin fibers: (D) collagen filaments, (E) compound fasciculate fibers in choanosome, (F) partially cored with detritus. (G) Megascleres of the type oxea. D...

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