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2 results for “Parellisina”
FIGURE 6. Parellisina latirostris Osburn, 1940 in Bryozoa of Floridan Oculina reefs
FIGURE 6. Parellisina latirostris Osburn, 1940: A, colony encrusting depression in substratum; B, group of autozooids; C, group of zooids, some with ooecia, and an avicularium; D, close-up of ooecium showing opening; E, close-up of the avicularium and associated kenozooid. Scale bars: A, 1 mm; B, C, 0.5 mm; D, 0.1 mm; E, 0.2 mm.
FIGURE 8. Parellisina sileni Osburn, 1949 in Scanning electron microscopy study of Lars Silén's cheilostome bryozoan type specimens in the historical collections of natural history museums in Sweden
FIGURE 8. Parellisina sileni Osburn, 1949. Holotype SMNH-Type-3081, Japan. A. General view of the colony encrusting a rock. B. Ancestrula, seemingly tatiform with at least seven countable spine bases (see white arrows) and early astogeny. Two distolateral spine bases usually visible on periancestrular autozooids (see black arrows). C. Group of ovicellate zooids with complete or incomplete ooecia and an avicularium. Arrows point to preserved circumopesial spine bases. D. Close-up of an ooecium and an autozooid without the frontal membrane showing the beaded cryptocyst, the opesia and spine bases, one placed proximolaterally and the other distolaterally (see arrows). E. Close-up of an ovicellate zooid with frontal membrane and distolateral spine bases flanking the ooecium. F. Close-up of an autozooid with the frontal membrane and open operculum showing the outline of the orifice, and two avicularia with the falciform mandibles mirroring the shape of the rostrum. G. Closeup of an avicularium with the associated kenozooid. H. Avicularia with open mandibles showing the elliptical opesia and robust, triangular condyles almost touching, and the autozooids at colony edge showing the distal pore-chamber window and a broken ooecium. I. Broken autozooids showing the lateral uniporous septula (see arrows) for autozooidal communication. Scale bars: A = 1 mm; B, C, D = 200 µm; E, F, G = 150 µm; H, I = 250 µm.
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