Schizaster floridiensis ( Kier & Grant, 1965 )
publication ID |
https://doi.org/10.11646/zootaxa.4529.1.1 |
publication LSID |
lsid:zoobank.org:pub:B3EF69F4-7E42-4924-9A9F-FFF5D83022EB |
DOI |
https://doi.org/10.5281/zenodo.5971064 |
persistent identifier |
https://treatment.plazi.org/id/C4255B09-4E18-FFC6-FF55-1AEEFBA2F853 |
treatment provided by |
Plazi (2019-03-27 15:07:28, last updated 2024-11-26 05:28:37) |
scientific name |
Schizaster floridiensis ( Kier & Grant, 1965 ) |
status |
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Schizaster floridiensis ( Kier & Grant, 1965) View in CoL
Figure 9 View FIGURE 9 E–K
Schizaster (Paraster) floridiensis Kier & Grant, 1965: 50 View in CoL –54, pl. 13, figs 4–6, pl. 14, figs 1–9. Paraster floridensis Chesher, 1966: 1 View in CoL –19, figs 1–6.― Manso, 2004: 20 –21, fig. 1.― Magalhães et al., 2005: 63.― Oliveira et al., 2010: 11.
Material examined. Photographic record.
Description (modified from Chesher 1966, Manso 2004 and Smith & Stockley 2005). Test small, fragile, subglobular, almost as broad as long, slightly larger than high, and vertically truncate posteriorly ( Fig. 9 View FIGURE 9 F–G). Test covered by slender, hyaline, and and often curved spines ( Fig. 9 View FIGURE 9 F–G), with slightly spatulate tips. Apical system ethmolytic, with four large gonopores. Anterior genital pores about half the size of posterior pores. Anterior paired petals (ambulacra II and IV) slightly curved and two to three times longer than posterior petals (ambulacra I and V) ( Fig. 9E View FIGURE 9 ). Ambulacrum III forms a strongly sunken furrow extending toward peristome ( Fig. 9E View FIGURE 9 ) that lacks primary spines. Peripetalous and lateroanal fascioles well-developed ( Fig. 9G View FIGURE 9 ). Peripetalous fasciole crosses ambulacrum III ( Fig. 8E View FIGURE 8 ), and anteriorly over plates 2.a.4 and 2.b.4 [4, 4 :: 5+6/7, 6(7) :: 10]. Lateroanal fasciole begins close to ambulacra II and IV and extends towards of periproct [–, – :: 5, 4(5) :: 5+4] ( Fig. 9E, G View FIGURE 9 ). Plates of ambulacra I and V without spines ( Fig. 9F View FIGURE 9 ). Peristome narrow, three times as broad as long ( Fig. 9F View FIGURE 9 ). Labrum extends to second plate of interambulacrum 5. Plastron amphisternous, covered by long, narrow spines, spatulate ( Fig. 9F View FIGURE 9 ). Periproct large, oval, located almost vertically.
Pedicellariae. Globiferous and tridentate pedicellariae distributed over entire test. Rostrate pedicellariae found near periproct ( Fig. 9H View FIGURE 9 ). Globiferous pedicellariae with stalk, without a neck, valves with two end teeth ( Fig. 9J, K View FIGURE 9 ). Tridentate pedicellariae with valve having an enlarged and serrate tip ( Fig. 9I View FIGURE 9 ). Valve of rostrate pedicellariae with a narrow, serrate and spatulate blade ( Chesher 1966). Chesher (1966) provides illustrations of all the pedicellariae of this species ( Fig. 9 View FIGURE 9 H–K).
Colour. Test light pink to yellowish ( Hendler et al. 1995). The fascioles and tube feet of petals red, tube feet of anterior groove yellow-orange ( Hendler et al. 1995; Manso 2004).
Distribution. Gulf of Mexico, Florida, Bahamas, Bermudas, Belize, Puerto Rico, Honduras, Dominican Republic, Panama, Venezuela, and Brazil ( Hendler et al. 1995; Lessios 1998; Manso 2004; Alvarado 2011; Rodríguez-Barreras et al. 2013; Solís-Marín et al. 2013). In Brazil, from BA and RJ ( Manso 2004; Oliveira et al. 2010). From depths of 2 to 45 m ( Manso 2004).
Remarks. The genus Schizaster contains nine extant species, of which only three are recorded from the tropical Atlantic [ S. doederleini ( Chesher, 1972) , S. orbignyanus A. Agassiz, 1880 and S. floridiensis ]. The first two range from the Gulf of Mexico to Venezuela and the latter has Rio de Janeiro as its southern limit. Schizaster floridiensis differs from S. doederleini by its rounded test, presence of less numerous pore-pairs in petal III, a shorter distance from the periproct to the lateroanal fasciole, and a larger petaloid. Schizaster floridiensis also differs from its congener S. orbignyanus , which has two genital pores and ambulacrum III more depressed and larger. According to Chesher (1966), details are lacking for several important taxonomic characters in the original description given by Kier & Grant (1965). Thus, Chesher (1966) redescribed the species and furnished an excellent discussion on variations found in S. floridiensis .
Ecological notes. This species lives burrowed in sandy and muddy sediments, at depths of about 25 cm into the sediment ( Chesher 1966). Schizaster floridiensis frequently occurs in association with S. doederleini and other fragile, burrowing spatangoids ( Hendler et al. 1995). Manso (2004) recorded S. floridiensis together with the ophiuroid Amphioplus camamuensis Manso, 2004 , from Baía de Camamu (Bahia) .
Agassiz, A. (1880) Reports on the results of dredging, under the supervision of Alexander Agassiz, in the Caribbean Sea in 1878 - 79, and along the Atlantic Coast of the United States during summer of 1880, by the U. S. Coast Survey Steamer Blake . IX. Preliminary report on the Echini. Bulletin of the Museum of Comparative Zoology at Harvard College, 8, 69 - 84. Available from: http: // www. biodiversitylibrary. org / item / 95375 # page / 81 / mode / 1 up (accessed 31 July 2017)
Alvarado, J. J. (2011) Echinoderm diversity in the Caribbean Sea. Marine Biodiversity, 41, 261 - 285. https: // doi. org / 10.1007 / s 12526 - 010 - 0053 - 0
Chesher, R. H. (1966) Redescription of the echinoid species Paraster floridiensis (Spatangoida: Schizasteridae). Bulletin of Marine Science, 16 (1), 1 - 19.
Chesher, R. H. (1972) A new Paraster (Echinoidea: Spatangoida) from the Caribbean (Biological results of the University of Miami deep-sea expeditions. 86). Bulletin of Marine Science, 22, 10 - 25.
Hendler, G., Miller, J., Pawson, D. & Porter, K. (1995) Sea Stars, Sea Urchins, and Allies. Echinoderms of Florida and the Caribbean. Smithsonian Institution Press, Washington, 390 pp.
Kier, P. M. & Grant, R. E. (1965) Echinoid distribution and habits, Key Largo Coral Reef Preserve, Florida. Smithsonian Miscellaneous Collections, 149, 1 - 68.
Lessios, H. A. (1998) Shallow water echinoids of Cayos Cochinos, Honduras. Revista de Biologia Tropical, 46 (Supplement 4), 95 - 101.
Magalhaes, W. F., Martins, L. R. & Alves, O. F. S. (2005) Inventario dos Echinodermata do Estado da Bahia. Brazilian Journal of Aquatic Science and Technology, 40, 375 - 381. https: // doi. org / 10.14210 / bjast. v 9 n 1. p 61 - 65
Manso, C. L. C. (2004) Echinodermata da Bacia de Camamu, Bahia, Brasil. Biologia Geral e Experimental, 5 (1), 19 - 25. Available from: http: // www. biologiageralexperimental. bio. br / temas / echinodermata / 1. pdf (accessed 20 November 2012)
Oliveira, J. P., Oliveira, J. & Manso, C. L. C. (2010) Inventario da colecao de equinodermos do LABIMAR, Campus Prof °. Alberto Carvalho, Universidade Federal de Sergipe. Scientia Plena, 6 (12), 1 - 14.
Rodriguez-Barreras, R., Sabat, A. M. & Calzada-Marrero, J. R. (2013) The new list of shallow water echinoids (Echinodermata: Echinoidea) for Puerto Rico. Marine Biodiversity Records, 6, e 49. https: // doi. org / 10.1017 / S 175526721300026
Smith, A. B. & Stockley, B. (2005) Fasciole pathways in spatangoid echinoids: a new source of phylogenetically informative characters. Zoological Journal of the Linnean Society, 144, 15 - 35. https: // doi. org / 10.1111 / j. 1096 - 3642.2005.00161. x
Solis-Marin, F. A., Alvarado, J. J., Abreu-Perez, M., Aguilera, O., Alio, J., Bacallado-Aranega, J. J., Barraza, E., Benavides- Serrato, M., Benitez-Villalobos, F., Betancourt-Fernandez, L., Borges, M., Brandt, M., Brogger, M. I., Borrero-Perez, G. H., Buitron-Sanchez, B. E., Campos, L. S., Cantera, J., Clemente, S., Cohen-Renjifo, M., Coppard, S., Costa-Lotufo, L. V., del Valle-Garcia, R., Diaz, Y., Diaz de Vivar, M. E., Diaz-Martinez, J. P., Duran-Gonzalez, A., Epherra, L., Escolar, M., Francisco, V., Freire, C. A., Garcia-Arraras, E., Gil, D. G., Guarderas, P., Hadel, V. F., Hearn, A., Hernandez, J. C., Hernandez-Delgado, E. A., Herrera-Moreno, A., Herrero-Perezrul, M. D., Hooker, Y., Honey-Escandon, M. B. I., Lodeiros, C., Luzuriaga, M., Manso, C. L. C., Martin, A., Martinez, M. I., Martinez, S., Moro-Abad, L., Mutschke, E., Navarro, J. C., Neira, R., Noriega, N., Palleiro-Nayar, J. S., Perez, A. F., Perez-Ruzafa, A., Prieto-Rios, E., Reyes, J., Rodriguez, R., Rubilar, T., Sancho-Mejia, T., Sangil, C., Silva, J. R. M. C., Sonnenholzner, J. I., Ventura, C. R., Tablado, A., Tavares, Y., Tiago, C. G., Tuya, F. & Williams, S. M. (2013) Appendix. In: Alvarado, J. J. & Solis-Marin, F. A. (Eds.), Echinoderm Research and Diversity in Latin America. Springer, Berlin / Heidelberg, pp. 543 - 654.
FIGURE 8. Morphological characters of Tripneustes ventricosus (UFPB/ECH.1722). (A) Aboral view; (B) Oral view; (C–D) Valve of globiferous pedicellariae; (E) Valve of ophicephalous pedicellariae; (F) Valve of tridentate pedicellariae; (G) Valve of triphyllous pedicellariae; (H) C-shaped spicules of tube feet; (I) Tube foot ossicle; (J) Aboral view of naked test; (L)) Detail of the apical system; (M) Ambulacral plates; (N) Interambulacral plates.
FIGURE 9. Morphological characters of Echinoneus cyclostomus (UFPB/ECH.1973) (A–D) and Schizaster floridiensis (UFRJ, without voucher) (E–L). (A) Aboral view; (B) Apical system; (C) Oral view; (D) Lateral view; (E) Aboral view; (F) Oral view; (G) Lateral view; (H–L) Illustrations of pedicellariae of S. floridiensis provided by Chesher (1966); (H) Rostrate pedicellariae; (I) Valve of tridentate pedicellariae; (J) Valve of globiferous pedicellariae; (K) Globiferous pedicellariae.
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Genus |
Schizaster floridiensis ( Kier & Grant, 1965 )
Gondim, Anne Isabelley, Moura, Rafael Bendayan De, Christoffersen, Martin Lindsey & Dias, Thelma Lúcia Pereira 2018 |
Schizaster (Paraster) floridiensis
Oliveira, J. P. & Oliveira, J. & Manso, C. L. C. 2010: 11 |
Magalhaes, W. F. & Martins, L. R. & Alves, O. F. S. 2005: 63 |
Manso, C. L. C. 2004: 20 |
Chesher, R. H. 1966: 1 |
Kier, P. M. & Grant, R. E. 1965: 50 |
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