Ciocalypta magnastyla, Arroyo & Hajdu & Willenz & Cóndor-Luján, 2020

Arroyo, Yessenia, Hajdu, Eduardo, Willenz, Philippe & Cóndor-Luján, Báslavi, 2020, First record of Ciocalypta Bowerbank, 1862 (Demospongiae, Suberitida Halichondriidae) in the Eastern Pacific, with description of a new species from Peru, Zootaxa 4853 (3), pp. 429-441 : 431-434

publication ID

https://doi.org/10.11646/zootaxa.4853.3.6

publication LSID

lsid:zoobank.org:pub:63B6574C-9406-4965-B5E5-76D1AB49A81D

DOI

https://doi.org/10.5281/zenodo.4410893

persistent identifier

https://treatment.plazi.org/id/A79C3BF2-EA70-4E9F-AD5A-D0CC913BBD15

taxon LSID

lsid:zoobank.org:act:A79C3BF2-EA70-4E9F-AD5A-D0CC913BBD15

treatment provided by

Plazi (2021-01-02 16:21:47, last updated 2024-11-28 14:03:29)

scientific name

Ciocalypta magnastyla
status

sp. nov.

Ciocalypta magnastyla sp. nov.

( Figure 2 View FIGURE 2 , Table 1)

urn:lsid:zoobank.org:act:A79C3BF2-EA70-4E9F-AD5A-D0CC913BBD15

Holotype. LaBSIM 2.02-0001= UCSUR 07-000009 with fragments deposited in RBINS Porifera collection ( RBINS -IG 32909 -POR.124) . Paratypes. LaBSIM 2.02-0002= UCSUR 07-000049 and LaBSIM 2.02-0003= UCSUR 07- 000050 . All collected in San Fernando National Reserve, San Juan de Marcona , Ica (15°09’02.72’’S 75°21’05.45’’ W), 10 m of depth, by L. Aguirre and R. Canales, May 4th 2010 GoogleMaps .

Type locality. San Fernando National Reserve, San Juan de Marcona, Nazca, Ica, Peru.

Diagnosis. Ciocalypta with transparent fistules, 1.5–5.0 cm high, apical oscula, styles and oxeas in a single category each (respectively; 370–1000 µm, distributed all over; 160–500 µm, located in the ectosome of the fistules and in the basal mass).

Description. Body, a basal mass, partially covered with sediment, conical, slightly hispid, with fistular projections ( Fig. 2A View FIGURE 2 ). Holotype 5.0 x 4.5 x 4.0 cm, with transparent, cavernous fistules 1.5–5.0 cm high ( Fig. 2B View FIGURE 2 ), with a central axis ( Figs 2 View FIGURE 2 C–C’). Oscula (some of which contracted on preserved specimens), small (1 mm diam.), apical on fistules. Compressible consistency. Color greenish white in life, beige with slightly orange fistules after preservation ( Figs. 2 View FIGURE 2 A–B).

Skeleton. Fistules: Ectosome easily detachable, tangential to the surface, with dense skeleton of styles and few oxeas ( Fig. 2D View FIGURE 2 ). Axial choanosomal skeleton thick (35–75 µm), central, formed by styles parallel to each other. Extra-axial tracts radiate from the central axis as numerous styles that extend towards the ectosome, supporting the latter ( Fig. 2E View FIGURE 2 ). Subectosomal cavities present, diameter 500–1250 µm. Basal mass: Ectosome easily detachable and similar to that of the fistules, choanosome a dense mass of spicules (styles and few oxeas) in ascending tracts running towards the ectosome, delimiting subectosomal cavities ranging from 150 to 250 µm ( Fig. 2F View FIGURE 2 ).

Spicules. Megascleres only: Styles, long and slim, slightly curved or straight ( Fig. 2G View FIGURE 2 ), 520–752.3(±130.5)– 1000/7.5–18.1(±6.3)– 30 µm. Oxeas, long and slightly curved ( Fig. 2H View FIGURE 2 ), 180–285.2(±83.1)–500/6.3– 8.9(±1.2)– 11.3 µm.

Etymology. The specific epithet is used as a noun in apposition, and highlights the presence of large styles in the skeleton.

Remarks. Ciocalypta includes 16 species from the Indo-Pacific Ocean ( van Soest et al. 2020): C. aciculata Carter, 1885 , C. digitata ( Dendy, 1905) , C. expanda Tanita & Hoshino, 1989 , C. gracilis Topsent, 1897 , C. heterostyla Hentschel, 1912 , C. massalis ( Carter 1883) , C. melichlora Sollas, 1902 , C. microstrongylata Vacelet, Vasseur & Lévi, 1976 , C. penicillus sensu Topsent (1897) , C. polymastia ( Lendenfeld, 1888) , C. rutila Sollas, 1902 , C. sasuensis Kang & Sim, 2008 , C. simplex Thiele, 1900 , C. stalagmites Hentschel, 1912 , C. tyleri Bowerbank, 1873 and C. vansoesti ( Hooper, Cook, Hobbs & Kennedy 1997) . The analyzed specimens from Peru do not match any of them. Only two species, C. melichlora and C. rutila , exhibit skeletal compositions similar to Ciocalypta magnastyla sp. nov., presenting both styles and oxeas. Nonetheless, the oxeas of C. melichlora and C. rutila are larger (280–940/ 30–40 µm and 980/ 20 µm, respectively) than those of the Peruvian species (160–500/5.0– 12.5 µm). In addition, they greatly differ in external morphology [see Sollas (1902) Pl XIV, Fig 1 View FIGURE 1 and XIV, Fig. 7].

Ciocalypta penicillus sensu Topsent (1897) needs reassessment as it pushes the species distribution to an unlikely distant spot (Banda Sea) from the type locality (North Sea). Neither Topsent (1897), nor Desqueyroux-Faúndez (1981), first revisor, offered a description and micrometries for the spicules in these specimens. Consequently, a proper comparison of this record with the new species proposed here cannot be made. Instead, we compared the Peruvian materials to C. penicillus ’ lectotype sensu Erpenbeck & van Soest (2002), who reported two categories of incompletely differentiated styles (600–630/ 12–18 µm, 340–390/ 5–10 µm) and small oxeas (200–260/ 5 µm). The latter are thought to be likely modified styles in view of their frequently telescoped or distorted extremities. Both the styles and the oxeas do not reach in C. penicillus the largest dimensions attained by these spicules in the Peruvian species.

Ciocalypta expanda , C. gracillis , C. heterostyla , C. massalis , C. polymastia , C. sasuensis and C. simplex , despite similar to C. magnastyla sp. nov. in external morphology and skeleton organization, do not have oxeas, only styles ( Table 2). Moreover, C. expanda and C. simplex have smaller styles (115–200/ 7–8 µm and 275/ 7 µm, respectively) compared to the new Peruvian species (370–1000/ 5–32 µm). Contrastingly, C. digitata , C. microstrongylata , C. stalagmites , C. tyleri and C. vansoesti do not have styles. Instead, they present two (or more) size categories of oxeas, one of which is larger than the one in C. magnastyla sp. nov. ( Table 2). Besides, C. microstrongylata includes microscleres (microstrongyles centrotylotes) in its skeleton. The spicules of C. aciculata are subtylostyles, originally described as “sub-pinlike” by Carter (1885; as C. penicillus var. aciculata ), who mentioned these as the sole difference in comparison to Bowerbank’s (1862) original description. The type specimen for the variety should be revised because Carter’s description is totally incomplete, and also to settle if this is indeed a Ciocalypta . Hooper & Wiedenmayer (1994) classified it in Halichondria .

Given the amphi-American distribution of some sponge species (e.g. de Paula et al. 2012, Azevedo et al. 2015), we also preferred to compare C. magnastyla sp. nov. with species reported from the Atlantic Ocean. These are C. alba Carvalho, Carraro, Lerner & Hajdu, 2003 , C. alleni Laubenfels, 1936 , C. gibbsi ( Wells, Wells & Gray, 1960) and C. hyaloderma Ridley & Dendy, 1886 . Ciocalypta gibbsi , from North Carolina, is the most similar, but its skeleton possesses smaller styles (510 µm) and two categories of oxeas. Other species with distant geographic distribution (the eastern Mediterranean C. carballoi Vacelet, Bitar, Carteron, Zibrowius & Pérez, 2007 , the Russian C. minuta Revoi, 1931 , and the Moroccan C. weltneri Arnesen, 1920 ) present the same spicule combination, but differ in spicule dimensions ( Table 2).

Given the above comparisons, we feel confident the Peruvian species is indeed new within the genus, and an important new generic record for the Southeast Pacific.

Arnesen, E. (1920) Spongia. Report on the Scientific Result of the Michael Sars North Atlantic Deep-Sea Expedition, 1910, 3 (2), 1 - 29.

Azevedo, F., Condor-Lujan, B., Willenz, Ph., Hajdu, E., Hooker, Y. & Klautau, M. (2015) Integrative taxonomy of calcareous sponges (subclass Calcinea) from the Peruvian coast: morphology, molecules, and biogeography. Zoological Journal of the Linnean Society, 173, 787 - 817. https: // doi. org / 10.1111 / zoj. 12213

Bowerbank, J. S. (1862) On the Anatomy and Physiology of the Spongiadae. Part III. On the Generic Characters, the Specific Characters, and on the Method of Examination. Philosophical Transactions of the Royal Society, 152 (2), 1087 - 1135. https: // doi. org / 10.1098 / rstl. 1862.0044

Bowerbank, J. S. (1873) Contributions to a General History of the Spongiadae. Part IV. Proceedings of the Zoological Society of London, 1873, 3 - 25.

Carter, H. J. (1883) Contributions to our knowledge of the Spongida. Annals and Magazine of Natural History, Series 5, 12 (71), 308 - 329. https: // doi. org / 10.1080 / 00222938309459636

Carter, H. J. (1885) Descriptions of Sponges from the Neighbourhood of Port Phillip Heads, South Australia. Annals and Magazine of Natural History, Series 5, 16 (94), 277 - 294 + 347 - 368. https: // doi. org / 10.1080 / 00222938309459636

Carvalho, M. S., Carraro, J. L., Lerner, C. & Hajdu, E. (2003) First record of Ciocalypta (Demospongiae: Halichondrida) from Brazil, southwestern Atlantic, with the description of a new species. Zootaxa, 302 (1), 1 - 8. https: // doi. org / 10.11646 / zootaxa. 302.1.1

de Laubenfels, M. W. (1936) A discussion of the sponge fauna of the Dry Tortugas in particular and the West Indies in general, with material for a revision of the families and orders of the Porifera. Carnegire Institute of Washington, Tortugas, Laboratory Paper, 30, 1 - 225, pls 1 - 22

de Paula, T. S, Zilberberg, C., Hajdu, E. & Lobo-Hajdu, G. (2012) Morphology and molecules on opposite sides of diversity gradient: Four cryptic species of Cliona celata (Porifera, Demospongiae) complex in South America revealed by mitochondrial and nuclear markers. Molecular phylogenetics and evolution, 62 (1), 529 - 541. https: // doi. org / 10.1016 / j. ympev. 2011.11.001

Dendy, A. (1905) Report on the sponges collected by Professor Herdman, at Ceylon, in 1902. In: Herdman, W. A. (Ed.), Report to the Government of Ceylon on the Pearl Oyster Fisheries of the Gulf of Manaar. Vol. 3. Supplement 18. Royal Society, London, pp. 57 - 246.

Desqueyroux-Faundez, R. (1981) Revision de la collection d'eponges d'Amboine (Moluques, Indonesie) constitue par Bedot et Pictet et conservee au Museum d'histoire naturelle de Geneve. Revue suisse de Zoologie, 88 (3), 723 - 764. https: // doi. org / 10.5962 / bhl. part. 82404

Erpenbeck, D. & van Soest, R. W. M. (2002) Family Halichondriidae Gray, 1867. In: Hooper, J. N. A. & van Soest, R. W. M. (Eds.), Systema Porifera. Vol. 1. A guide to the classification of sponges. Kluwer Academic / Plenum Publishers, New York, Boston, Dordrecht, London and Moscow, pp. 787 - 816. https: // doi. org / 10.1007 / 978 - 1 - 4615 - 0747 - 5 _ 84

Hentschel, E. (1912) Kiesel- und Hornschwamme der Aru- und Kei-Inseln. Abhandlungen herausgegeben von der Senckenbergischen naturforschenden Gesellschaft, 34 (3), 293 - 448. https: // doi. org / 10.5962 / bhl. title. 85325

Hooper, J. N. A. & Wiedenmayer, F. (1994). Porifera. In: Wells, A. (Ed.), Zoological Catalogue of Australia. Vol. 12. CSIRO, Melbourne, pp. 1 - 620.

Hooper, J. N. A., de Cook, S., Hobbs, L. J. & Kennedy, J. A. (1997) Australian Halichondriidae (Porifera: Demospongiae): I. Species from the Beagle Gulf. In: Hanley, J. R., Caswell, G., Megirian, D. & Larson, H. K. (Eds.), Proceedings of the Sixth International Marine Biological Workshop. The marine flora and fauna of Darwin Harbour, Northern Territory, Australia. Museums and Art Galleries of the Northern Territory and the Australian Marine Sciences Association, Darwin, pp. 1 - 65.

Kang, D. & Sim, C. (2008 b) Two New Sponges of the Halichondriidae (Halichondrida: Halichondriidae) from Korea. Animal Cells and Systems, 12 (1), 61 - 64. https: // doi. org / 10.1080 / 19768354.2008.9647155

Lendenfeld, R. von (1888) Descriptive Catalogue of the Sponges in the Australian Museum, Sidney. Taylor & Francis, London, xiv + 260 pp.

Ridley, S. O. & Dendy, A. (1886) Preliminary Report on the Monaxonida collected by H. M. S. Challenger . Annals and Magazine of Natural History, Series 5, 18 (107), 325 - 351. https: // doi. org / 10.1080 / 00222938609459982

Sollas, I. B. J. (1902) On the Sponges collected during the ' Skeat Expedition' to the Malay Peninsula 1899 - 1900. Proceedings of the Zoological Society of London, 2, 210 - 221.

Tanita, S. & Hoshino, T. (1989) The Demospongiae of Sagami Bay. Biological Laboratory, Imperial Household, Japan, 1989, i-xiii + 1 - 197.

Thiele, J. (1900) Kieselschwamme von Ternate I. Abhandlungen herausgegeben von der Senckenbergischen naturforschenden Gesellschaft. Frankfurt, 25, 19 - 80.

Topsent, E. (1897) Spongiaires de la Baie d'Amboine. Revue suisse de Zoologie, 4, 421 - 487. https: // doi. org / 10.5962 / bhl. part. 35507

Vacelet, J., Vasseur, P. & Levi, C. (1976) Spongiaires de la pente externe des recifs coralliens de Tulear (Sud-Ouest de Madagascar). Memoires du Museum national d'Histoire naturelle, A, Zoologie), 49, 1 - 116.

Vacelet, J., Bitar, G., Carteron, S., Zibrowius, H. & Perez, T. (2007) Five new sponge species (Porifera: Demospongiae) of subtropical or tropical affinities from the coast of Lebanon (eastern Mediterranean). Journal of the Marine Biological Association of the United Kingdom, 87 (6), 1539 - 1552. https: // doi. org / 10.1017 / S 0025315407060687

van Soest, R. W. M., Boury-Esnault, N., Hooper, J. N. A., Rutzler, K., de Voogd, N. J., Alvarez, B., Hajdu, E., Pisera, A. B., Manconi, R., Schonberg, C., Klautau, M., Kelly, M., Vacelet, J., Dohrmann, M., Diaz, M. - C., Cardenas, P., Carballo, J. L., Rios, P., Downey, R. & Morrow, C. C. (2020) World Porifera Database. Available from: http: // www. marinespecies. org / porifera (accessed 9 June 2020)

Wells H. W., Wells, M. J. & Gray, I. E. (1960) Marine Sponges of North Carolina. Journal of the Elisha Mitchell Science Society, 76 (2), 200 - 245.

Gallery Image

FIGURE 1. Collection site. Location of San Fernando National Reserve, Ica, Peru.

Gallery Image

FIGURE 2. Ciocalypta magnastyla sp. nov. (holotype LaBSIM 2.02-0001=UCSUR 07-000009). A, Specimen after fixation. B, Isolated fistules. C, Skeleton of the fistule and enlarged region. D, Dermal membrane (ectosomal skeleton) of the fistule.E,Axial and extra-axial skeleton of the fistule. F, Basal skeleton. G, Styles. H, Oxeas. Abbreviations: sc=subectosomal cavities, ac=axial choanosomal skeleton, e-at=extra-axial tracts. Scale bars: A-B, 1 cm; C, 5 mm; C’, 2.5 mm; D, 100 µm; E, 100 µm; F, 100 µm; G, 200 µm; H, 50 µm.

RBINS

Royal Belgian Institute of Natural Sciences

R

Departamento de Geologia, Universidad de Chile

Kingdom

Animalia

Phylum

Porifera

Class

Demospongiae

SubClass

Heteroscleromorpha

Order

Halichondrida

Family

Halichondriidae

Genus

Ciocalypta