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16 results for “Buffonellaria”

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Figure 16 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 16. Distribution of North Atlantic and Mediterranean Buffonellaria species. Note that the Greenland location of Buffonellaria arctica sp. nov. was randomly chosen, as these samples lack specific locality information.

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Figure 15 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 15. Buffonellaria sp. 2: SMF 3015, off Sierra Leone. A, general aspect; scale bar, 200 Mm. B, Close-up of autozooecia; scale bar, 100 Mm.

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Figure 13 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 13. Escharella linearis (Hassall, 1841) forma biaperta (Michelin, 1848): SNHM 1742, Svalbard, Edge Island, illustrated by Smitt (1868: pl. 24, figs 71–73), uncleaned specimen. A, autozooids at colony margin; note the large areolar pores compared with Buffonellaria arctica sp. nov.; scale bar, 400 Mm. B, autozooids with thick secondary calcification; scale bar, 200 Mm.

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Figure 14 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 14. Buffonellaria porcellanum Arístegui Ruiz, 1987: holotype, NHM 1987.1.3.2, Canary Islands. A, general aspect; note the reparative growth in zooecia on the right, and the reversed polarity growth of two zooecia at the centre; scale bar, 200 Mm. B, autozooecia and ovicellate zooecia; scale bar, 100 Mm. C, close-up of orifice; scale bar, 50 Mm. D, close-up of ooecium; scale bar, 40 Mm.

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Figure 12 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 12. Buffonellaria arctica sp. nov. A, autozooecia from the colony growth margin; holotype & NHM 2007.5.18.4, Spitsbergen; scale bar, 200 Mm. B, ovicellate zooecia and frontal avicularia, orifices immersed by secondary calcification; holotype; scale bar, 200 Mm. C, close-up of orifice and oral avicularium; paratype & NHM 2007.5.18.5, Spitsbergen; scale bar, 50 Mm. D, close-up of ovicellate zooecia and frontal avicularia; holotype; scale bar, 100 Mm.

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Figure 11 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 11. Buffonellaria antoniettae sp. nov.: Sicily. A, general aspect of bilaminar colony, with a branch margin at the left-hand side; holotype, PMC B16.30.6.2006a; scale bar, 500 Mm. B, autozooecia with and without oral avicularia; note that the rostrum tips appear spatulate as a result of abrasion; holotype; scale bar, 200 Mm. C, close-up of frontal avicularia; paratype, PMC B16.30.6.2006b, scale bar, 100 Mm. D, close-up of orifice; holotype; scale bar, 40 Mm. E, proximal colony region with ooecia and frontal avicularia extensively covered by secondary calcification; paratype.; scale bar, 400 Mm. F, close-up of ooecia and deeply immersed orifices; paratype; scale bar, 100 Mm.

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Figure 10 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 10. Buffonellaria sp. 1: NHM 2007.5.18.12, off Toulon, Mediterranean Sea. A, general aspect of autozooecia; scale bar, 200 Mm. B, Close-up of orifice; scale bar, 50 Mm.

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Figure 8 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 8. Buffonellaria muriella sp. nov. A, general aspect of autozooecia; note the formation of frontal avicularia at lower left, and the variability in orifice shape; NHM 1911.10.1.1082–1083, Guernsey; scale bar, 200 Mm. B, colony region with abundant formation of frontal avicularia and advanced frontal calcification immersing the orifices; holotype NHM 2007.5.18.1, Guernsey; scale bar, 100 Mm. C, close-up of orifice with deep, V-shaped sinus and long condyles; holotype; scale bar, 50 Mm. D, close-up of ooecia and frontal avicularia prior to precipitation of secondary calcification; NHM 1911.10.1.1082–1083, Guernsey; scale bar, 100 Mm. E, close-up of orifice with broad, shallow, U-shaped sinus and shorter condyles; NHM 1911.10.1.1082–1083, Guernsey; scale bar, 200 Mm. F, close-up of orifice of an Adriatic specimen; CNHM Inv.br.28; scale bar, 50 Mm.

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Figure 9 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 9. Buffonellaria harmelini sp. nov.: holotype, NHM 2007.5.18.10, off Port-Cros Island, Mediterranean Sea. A, general aspect of autozooecia; scale bar, 200 Mm. B, ovicellate zooecia and frontal avicularia in colony region, affected by secondary calcification; scale bar, 400 Mm. C, close-up of orifice; scale bar, 50 Mm. D, ooecia, oral and frontal avicularia; note the damaged frontal avicularium regenerated as oral an avicularium at lower left; scale bar, 100 Mm.

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Figure 7 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 7. Buffonellaria jensi sp. nov.: holotype, NHM 2007.5.18.8, Madeira, off Porto Santo. A, general aspect; note formation of frontal avicularia and onset of secondary calcification in ontogentically older zooecia, at lower left-hand corner; scale bar, 400 Mm. B, autozooecia at the colony growth margin; scale bar, 200 Mm. C, close-up of orifice and oral avicularia; scale bar, 50 Mm. D, ooecia and frontal avicularia in colony region covered by secondary calcification; note deeply immersed orifices; scale bar, 200 Mm.

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Figure 6 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 6. Buffonellaria acorensis sp. nov.: holotype, MNHN BRY-20057, Azores. A, autozooecia and two frontal avicularia; scale bar, 200 Mm. B, ovicellate zooecia in colony region with secondary calcification; scale bar, 200 Mm. C, close-up of orifice; scale bar, 50 Mm. D, close-up of ooecium and frontal avicularia; scale bar, 100 Mm.

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Figure 3 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 3. Buffonellaria divergens (Smitt, 1873): lectotype, SNHM 1880, Florida, off Key West. A, general aspect of autozooecia from the colony growth margin; scale bar, 200 Mm. B, close-up of orifice, as well as of oral and frontal avicularia; scale bar, 100 Mm.

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Figure 4 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 4. Buffonellaria ritae sp. nov.: holotype, NHM 2007.5.18.6, Madeira, off Santa Cruz. A, general aspect of autozooecia; scale bar, 200 Mm. B, ovicellate zooecia; scale bar, 200 Mm. C, close-up of orifice and oral avicularia; scale bar, 50 Mm. D, close-up of ooecium; scale bar, 50 Mm.

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Figure 2. Ooecium formation. A in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 2. Ooecium formation. A, colony with several ontogenetic stages of ooecium formation, in which ooecial pores are present in zooecia at the very left-hand side, but in which ooecium formation has not yet commenced. The second series of zooecia further to the right, as well as two zooecia in the upper right-hand corner, show the earliest stages of ooecium development, in which the fold of entooecium and ectooecium shows concentric growth. In the central series of zooecia, the basal ooecium wall is completed and entooecium and ectooecium proceed to grow in a globular fashion. The intervening coelomic lumen is best visible in this stage. The frontal tabula of the entooecium is produced as the ectooecium ceases to grow, producing a central window (zooecium at centre right). Ooecium growth is then completed, a frontal avicularium is budded, and secondary calcification begins to cover the colony surface (zooecia in lower right corner). Buffonellaria muriella sp. nov., CNHM Inv.br.27, Adriatic Sea; scale bar, 200 Mm. B, close-up of the finely pitted entooecial surface. Buffonellaria antoniettae sp. nov., paratype, PMC B16.30.6.2006b, Sicily; scale bar, 20 Mm.

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Figure 1. Frontal wall formation. A in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 1. Frontal wall formation. A, note the presence of frontal-wall pores during early ontogeny in zooecia at the growth margin, and their subsequent closure in older, more proximal zooecia. Buffonellaria muriella sp. nov., NHM 2007.5.18.2, Guernsey; scale bar, 200 Mm. B, early ontogeny of the erect bilaminar Buffonellaria sp. 1, NHM 2007.5.18.12, Toulon, Mediterranean Sea; scale bar, 200 Mm.

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Figure 5 in North-east Atlantic and Mediterranean species of the genus Buffonellaria (Bryozoa, Cheilostomata): implications for biodiversity and biogeography

Figure 5. Buffonellaria nebulosa (Jullien & Calvet, 1903): lectotype, MNHN 3991a, Azores. A, general aspect of autozooecia; scale bar, 200 Mm. B, ovicellate zooecia; scale bar, 200 Mm. C, close-up of orifice showing a comparatively deep and V-shaped sinus; scale bar, 50 Mm. D, close-up of frontal avicularium; scale bar, 50 Mm. E, close-up of ooecium and orifice with a rather U-shaped sinus; scale bar, 50 Mm.

opencc-by-4.0Mar 2008View details →

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