Aplysia (Varria) inca d'Orbigny 1837

Autor: Mendivil, Alejandro, Cardoso, Franz
Rok vydání: 2022
Předmět:
DOI: 10.5281/zenodo.7467208
Popis: Aplysia (Varria) inca d’Orbigny, 1837 (Figures 18–32) Aplysia inca d´Orbigny, 1837: 207–209, pl. 19, figs. 1–3; Alamo & Valdivieso 1997: 84; Uribe et al. 2013a: 47. ? Aplysia chierchiana Mazzarelli & Zuccardi, 1889: 52; Mazzarelli & Zuccardi, 1890: 52; Alamo & Valdivieso 1997: 83; Nakamura 2006: 79; Uribe et al. 2013a: 47. Tethys inca — Pilsbry, 1895: 87, pl. 19, figs. 29–31. ? Tethys chierchiana — Pilsbry, 1895: 87. Aplysia (Varria) inca — Eales, 1960: 321; Paredes et al. 1999b: 31; Ramírez et al. 2003: 264; Nakamura 2006: 79. Type material. Syntype, 1 dissected individual, deposited at MNHN, Paris (Valdés & Héros 1998). Type locality. Between Callao and San Lorenzo Island, Peru (d’Orbigny 1837). Material examined. PERU, Piura: Sechura (Matacaballo), 1 specimen 60 mm length, 17.I.2004 (LaBSIM 15.06-0013). PERU, La Libertad: Huanchaco, 1 specimen 110 mm length, 21.III.2018, J. Esplana col. (LaBSIM 15.06-0034). PERU, Ancash: Samanco, 3 specimens 113–149 mm length, 1992, V.H. Vera col. (LaBSIM 15.06- 0006), 3 specimens 70–80 mm length, 6.III.1996 (LaBSIM 15.06-0009). PERU, Lima: Ancón, 1 specimen 70 mm length, 9.X.1977, C. Paredes col. (LaBSIM 15.06-0002.1), 2 specimens 63–106 mm length, 5.II.1993, C. Paredes col. (LaBSIM 15.06-0007), 3 specimens 58–80 mm length, 10.IV.1995, J. Quesada col. (LaBSIM 15.06-0008), 1 specimen 96 mm length, 27.IX.1997, C. Paredes col. (LaBSIM 15.06-0010), 1 specimen 79 mm length, 26.IX.1999, C. Paredes col. (LaBSIM 15.06-0011), 1 specimen, 83 mm length; 8.XII.2000, F. Cardoso col. (LaBSIM 15.06- 0042), 1 specimen 91 mm length, 8.XII.2000, F. Cardoso col. (LaBSIM 15.06-0012), 1 specimen 101 mm length, 2. VI.2017, F. Cardoso col. (LaBSIM 15.06-0020.1), 2 specimens 66–102 mm length; 17. VI.2017, F. Cardoso col. (LaBSIM 15.06-0022), 3 specimens, 19.XI.2017, P. Guardales & J. Leandro col. (LaBSIM 15.06-0027.1-3), 1 specimen 185 mm length; 7.IX.2018 (LaBSIM 15.06-0038). PERU, Callao: La Punta (La Arenilla), 2 specimens 161–177 mm length, 6.XII.2000, F. Cardoso col. (LaBSIM 15.06-0044). PERU, Lima: Barranco, 16 specimens 87–186 mm length, 15.I.2018, A. Mendivil col. (LaBSIM 15.06-0032). PERU, Lima: Chorrillos, 4 specimens 136– 146 mm length, 16.IX.2017, A. Mendivil col. (LaBSIM 15.06-0025), 6 specimens 115–186 mm length, 5.XI.2017, A. Mendivil col. (LaBSIM 15.06-0026), 5 specimens 136–199 mm length, 9.XII.2017, A. Mendivil col. (LaBSIM 15.06-0028), 1 specimen 84 mm length, 10.I.2018, A. Mendivil col. (LaBSIM 15.06-0031). PERU, Lima: Pucusana, 2 specimens 149–151 mm length, 11.XII.1977 (LaBSIM 15.06-0004), 1 specimen 40 mm length, 1983 (IMARPE 04-001902), 1 specimen 179 mm length, 2017, C. Cisneros col. (LaBSIM 15.06-0017), 3 specimens 147–205 mm length, 16.XII.2017, A. Mendivil & A. Bravo col. (LaBSIM 15.06-0029.1-3), 2 specimens 222–233 mm length, 6.I.2018, A. Mendivil col. (LaBSIM 15.06-0030.1-2). PERU, Ica: Paracas, 1 specimen 64 mm length, IV.2017, P. Carbajal col. (IMARPE 04-001901). PERU, Ica: Laguna Grande, 1 specimen 77 mm length, 6. V.1984, C. Paredes col. (LaBSIM 15.06-0005), 1 specimen 108 mm length, 24.XII.1998, C. Paredes col. (LaBSIM 15.06-0043.1). Description External morphology. Size ~ 230 mm in length. Color variable, purple, reddish, or dark green, with or without white or yellow spots, sometimes aggregated in dense concentrations, specially between anterior end of parapodia and rhinophores, posterior internal margin of parapodia and dorsal mantle (Figs. 18, 19); parapodia edge sometimes lighter than body color; mantle papilla sometimes with fine radial lines (Fig. 21). Body soft, elongated, relatively high, narrowing gradually towards cephalic region (Fig. 20A). Cephalic tentacles elongated, thick, enrolled, with narrower bases, forming oral veil (Fig. 20A: tc). Oral lobes located on ventral surface of oral veil (Figs. 20A–B: lo). Rhinophores conical, thick, close together. Foot sole relatively narrow, thick, with pair of lobes poorly differentiated in propodium, with narrow and elongated metapodium, sometimes developed in pointed tail (Fig. 20C). Parapodia broad, widely open, joined low down posteriorly, joined anteriorly with lobes slightly developed in anterior margin of parapodia (Figs. 20A–B: lpa). Visceral hump relatively large, oval, elevated, well differentiated, occupying more than 1/3 of body length (Fig. 20A). Mantle foramen reduced to elevated papilla, located on center of mantle (Fig. 20A, 21A, 21D: arrow). Anal siphon wide, elongated, tubular, occupying ~1/3 of mantle length, freely exposed within parapodial cavity (Fig. 22). Opaline gland resembling a bunch of grapes, with large, rounded main opening surrounded by many very small secondary openings, occupying small area on pallial cavity floor (Figs. 20A: oa, 21B–C, 21E–F: arrows). Opaline gland secretion milky white. Ink gland secretion purple, copious. Shell. Relatively large, shell length more than 1/3 of body length, width/length ratio about 3:4, arched, rounded to oval, relatively broad, wider close to anal sinus; on apertural view left margin slightly convex; right margin convex, narrowing gradually towards apex, anal sinus relatively narrow, usually concave (Fig. 23). Protoconch in apex of calcified layer. Sculpture formed by very fine concentric lines. Haemocoel organs. Haemocoel of A. inca very similar to A. nigra (Fig. 24), except for the grape-shaped opaline gland on dorsal wall of haemocoel, occupying a very small fraction of haemocoel volume (Figs. 21C, 21F: arrow). Circulatory and excretory systems. Arrangement of circulatory and excretory systems very similar to A. nigra (Fig. 25). Digestive system. Digestive system of A. inca similar to A. nigra, as described above, except for the following: Jaws thin, without longitudinal ridges, ~2 times wider than long, anterior and posterior borders smooth (Fig. 26A), with elongated jaw elements, sometimes knobbed, slightly curved toward distal end, tip narrower with a longitudinal slit (Fig. 26B–D). Dorsal folds less developed than in A. nigra (Fig. 26E: arrows), with elongated palatal elements, curved toward distal end, tip narrower (Figs. 26F–G). Odontophore muscles: m1x, pair of auxiliary jugal muscles, ~10 times longer than wide (Figs. 27A, 27C); m2, pair of strong retractor muscles of buccal mass, relatively thin, ~15 times longer than wide (Figs. 27A–C); m7, pair of very narrow and thin muscles, ~20 times longer than wide (Fig. 27I). Pair of odontophore cartilages forming radular bolsters narrow and slightly elevated (Fig. 27I: oc). Radular formula 48 x 1.19.1.17.1 (specimen length: 66 mm, LaBSIM 15.06-0022.2), to 67 x 2.40.1.40.2 (specimen length: 130 mm, LaBSIM 15.06-0032.5). Rachidian tooth bilaterally symmetrical, wider om base, with small, triangular central cusp with 2 small denticles on each side, 1 small secondary cusp on each side of central cusp, lacking secondary cusps (Fig. 28: black arrow). Lateral teeth asymmetrical, elongated, with large and triangular main cusp with up to 4 denticles on each side, 1 secondary cusp well developed with up to 2 additional smaller cusps distally (Fig. 28: white arrow). Marginal teeth small, with vestigial cusp. Pair of salivary glands ducts thin, cylindrical, equal in width along their length (Figs. 29 A-B, 30H: sg). Crop subdivided in two chambers of similar volume (Figs. 29 A-B). Gizzard presenting 10-11 large, pyramidal chitinous plates of rhomboid base, distributed in 3 transverse rows occupying posterior region of gizzard (Figs. 29B, 30A–D); presenting up to 20 small, conical chitinous plates of oval to circular base, usually distributed in a single row occupying anterior region of gizzard (Figs. 29B, 30A, 30E–F). Filter chamber occupying 1/3 of gizzard volume, presenting many small, conical gastric hooks distributed in several irregular transverse rows forming a relatively narrow band (Figs. 29B, 30A, 30G). Digestive caecum running embedded within digestive gland along most of its length, tip wide and flattened (Figs. 29A, 29C, 30I: ca); typhlosole continuing into intestine for about 1/3 of stomach length. Intestine slightly convoluted (Fig. 29C). Reproductive system. Penial sheath well differentiated into proximal penial canal and distal penial sac (Fig. 31A). Penial canal elongated, with muscular, thick wall, highly folded (Figs. 31B–D: pl). Penial sac bulbous, with thin wall, unarmed (Figs. 31B–D: ps). Penis thin, elongated, ~12 times longer than wide, unarmed; with triangular, rounded tip (Fig. 31E), seminal groove ending on longer side of tip, opposite side thinner (Figs. 31B–D). Pair of retractor muscles of penis thick, ~10 times longer than wide (Fig. 31A: mr). Protractor muscles of penis formed by many thin fibers (Fig. 31A: mp). Hermaphrodite reproductive system of A. inca like A. nigra, except for the following: Preampullary duct wide, about same width as ampulla, slightly curved. Ampulla thick, strongly convoluted, leading to very narrow postampullary duct (Fig. 31F: am). Large hermaphroditic duct relatively narrow, cylindrical, curved, but not convoluted as ampulla, ~2 times wider than ampulla, slightly attached to dorsal inner surface of haemocoel (Fig. 31F: lh). Nervous system. Nervous system of A. inca very similar to A. nigra (Fig. 32), except for the following: Cerebral ganglia fused forming single mass, slightly wider than pedal ganglion. Nerves leaving pedal ganglia (Fig. 32D): pd5, slender, bifurcating into 2 branches: pd5a, arrangement very similar to A. nigra; pd5b, inserting into lateral anterior body; pd5c not observed. Cerebropleural connectives slightly asymmetric, right connective slightly longer than left one. Pleural ganglia almost same size. Pleurovisceral connectives ~1 1/2 times longer than nerve ring length. Geographic distribution. Sechura, Piura (5° S) to Laguna Grande, Ica (14° S), Peru. Habitat and ecology. Sandy beaches, tidal pools, rocky shores with algae; intertidal to subtidal. Mass mortality events seem to be more common than in A. nigra. Apparently more abundant than A. nigra. Remarks. D’Orbigny (1837) described A. inca as a moderately elongated, tall animal; color purple, covered with white rounded spots; with parapodia well developed joined low down posteriorly, and anal siphon elongated and wide (Fig. 1B). Eales (1957, 1960) examined the type material of A. inca adding to the original description a penial sheath unarmed; penis broad, short, pointed at the tip; and opaline gland partly compound with a group of openings arranged in a circle. The specimens examined here are consistent with the original description of A. inca and the observations of Eales (1957, 1960), except for the shape of the penis which is generally elongated rather than broad and short as stated by Eales (1957, 1960). Although A. inca has been the most reported species of the subgenus Varria in Peru (Eales 1960, Paredes et al. 1988, Paredes et al. 1999a, Ramírez et al. 2015), during the nineteenth century two other species were also described for the Peruvian coast: Aplysia lessonii Rang 1828 and Aplysia chierchiana Mazzarelli & Zuccardi, 1889; however, currently only A. inca is considered a valid species (MolluscaBase 2021). Aplysia lessonii was described from Paita, northern Peru, as rounded, tall animals, grayish pink with very fine red markings, parapodia joined posteriorly and wide anal siphon (Rang 1828, fig. 1A). Mazzarelli & Zuccardi (1890) reported A. lessonii for Honolulu, Hawaii as animals with a large mantle foramen, feature not mentioned by Rang (1828). Kay (1964) reported five species of Aplysia for the Hawaiian Islands, but there was no mention of A. lessonii. Since none of the species described by Kay (1964) nor those reported later for Hawaii (Golestani et al. 2019: A. elongata) are consistent with the original description of A. lessonii, and we did not find a subsequent record of this species for the northern Pacific, the record of A. lessonii for the Hawaiian Islands should be considered probably erroneous. D’Orbigny (1837) distinguished A. inca and A. lessonii using the external coloration and morphological traits such as parapodia, mantle and cephalic tentacles; however, as Rang (1828) described A. lessonii on the basis of preserved specimens, the differences noted by d’Orbigny (1837) between the two species are questionable. Eales (1960) could not examine the type material of A. lessonii deposited at MNHN, Paris (1 syntype dissected, see Valdés & Héros 1998); but she concluded that by similitudes in body shape, foot, parapodia, mantle and shell, it could be a junior synonym of A. keraudreni Rang (1828) from the southwest Pacific. Aplysia keraudreni is a rather large dark brown animal, covered with white spots and a fine black reticulum (Eales 1960, Willan & Morton 1984); originally described from the Society Islands in the Polynesia, but also reported from New Zealand (Eales 1960, Willan 1979, Willan & Morton 1984, Morley & Hayward 2015) and Australia (Nimbs 2017a). Since the external coloration of A. keraudreni is not consistent with the description of A. lessonii (Rang 1828) nor with that reported in another species from the Eastern Pacific (Pilsbry 1895, Eales 1960, Beeman 1968, Bebbington 1977, Behrens & Hermosillo 2005, Camacho-García et al. 2005, Valdés 2019), A. keraudreni is very likely restricted to the southwest Pacific. Therefore, the records of A. keraudreni for Peru (Eales 1960, Bebbington 1977, Paredes et al. 1999 b, Ramírez et al. 2003, Nakamura 2006, Uribe et al. 2013a) should be considered erroneous. Until the examination of the material type of A. lessonii can corroborate the similitudes between both species, we decide to retain the name of A. inca for the typical species of the subgenus Varria in Peru. Mazzarelli & Zuccardi (1889) introduced the name of A. chierchiana for a dark animal, with black rounded spots and small white dots, wide parapodia, mantle foramen reduced to a small papilla, and opaline gland compound and multiporous; suggesting the mantle papilla as the diagnosis feature of this species (Fig. 1E). Although Mazzarelli & Zuccardi (1890) considered A. chierchiana very distinct from A. inca, with both having the same type locality, Eales (1960) did not compare them and rejected the name A. chierchiana, without specifying whether due to lack of type material, or by an inadequate description. In this work, we found that the most characteristic feature of A. chierchiana are the black rounded spots that cover the body of the living animals, not described in A. inca (d’Orbigny 1837, Eales 1960). Specimens that can be identified as A. chierchiana were found in Sechura, Samanco and San Lorenzo Island; where A. inca specimens have also been observed, with both species similar in body shape, foot, anal siphon, mantle papilla, shell, radula, jaws, and penis. Although A. chierchiana is included here as a probable synonym of A. inca, these specimens are not included in the anatomical redescription of A. inca until their taxonomic status is clarified using molecular data. Uribe et al. (2013a, b) recorded A. juliana for Máncora, Isla Santa (Samanco), Ancón and Paracas. However, these animals have parapodia joined low down posteriorly and release purple ink, characteristics not reported in A. juliana but quite common among the species of the subgenus Varria (Eales 1960), suggesting that these records are likely A. inca. Although Máncora might be the northernmost record of A. inca, it is not included here until it can be corroborated with the revision of additional material from northern Peru. Aplysia inca has been previously recorded for Pisco (Paredes et al. 1988), Ancón and Barranca (Paredes et al. 1999a), and Lobos de Tierra (Ramírez et al. 2015), although the last record needs to be verified and is not included in the distribution of the species.
Published as part of Mendivil, Alejandro & Cardoso, Franz, 2022, Anatomical redescription of Aplysia (Aplysia) nigra and Aplysia (Varria) inca (Mollusca: Heterobranchia) with comments on Aplysia from Peru, pp. 201-239 in Zootaxa 5222 (3) on pages 219-232, DOI: 10.11646/zootaxa.5222.3.1, http://zenodo.org/record/7461498
{"references":["d'Orbigny, A. (1837) Voyage dans l'Amerique meridionale (le Bresil, la republique orientale de l'Uruguay, la republique Argentine, la Patagonie, la republique du Chile, la republique de Bolivia, la republique du Perou), execute pendant les annes 1826, 1827, 1828, 1829, 1830, 1831, 1832, et 1833. Tome 5. Partie 3. Mollusques. P. Bertrand, Paris, 758 pp.","Alamo, V. & Valdivieso, V. (1997) Lista Sistematica de Moluscos Marinos del Peru (Segunda Edicion, revisada y actualizada). Publicacion Especial. Instituto del Mar del Peru, Callao, 183 pp.","Uribe, R. A, Nakamura, K., Indacochea, A., Pacheco, A. S., Hooker, Y. & Schr ˆ dl, M. (2013 a) A review on the diversity and distribution of opisthobranch gastropods from Peru, with addition of three new records. Spixiana, 36 (1), 43 - 60.","Mazzarelli, G. F. & Zuccardi, R. (1889) Su di alcune Aplysidae dell'Oceano Pacifico, appartenenti alla colllezione Chierchia. Bollettino della Societa di naturalisti in Napoli, 3, 47 - 54.","Mazzarelli, G. F. & Zuccardi, R. (1890) Sulle Aplysiidae raccolte dal tenente di Vascello Gaetano Chierchia nel Viaggio della Vettor-Pisani (1882 - 1885). Memorie della Societa Italiana delle Scienze, 8 (2), 1 - 21.","Nakamura, K. (2006) New Records of Opisthobranch Mollusks from the Guayaquil Marine Ecoregion: Northern Peru. The Festivus, 38 (7), 75 - 83.","Pilsbry, H. A. (1895) Manual of Conchology. Vol. 16. Philinidae, Gastropteridae, Aglajidae, Aplysiidae, Oxynoeidae, Runcinidae, Umbraculidae, Pleurobranchidae. Academy of Natural Sciences, Philadelphia, Pennsylvania, 262 pp., 74 pls.","Eales, N. B. (1960) Revision of the world species of Aplysia (Gastropoda, Opisthobranchia). Bulletin of the British Museum Zoology, 5 (10), 267 - 404. https: // doi. org / 10.5962 / bhl. part. 11725","Paredes C., Huaman, P., Cardoso, F., Vivar, R. & Vera, V. (1999 b) Estado actual del conocimiento de los Moluscos Acuaticos en el Peru. Revista Peruana de Biologia, 6 (1), 5 - 47. https: // doi. org / 10.15381 / rpb. v 6 i 1.8298","Ramirez, R., Paredes, C. & Arenas, J. (2003) Moluscos del Peru. Revista de Biologia Tropical, 51 (Supplement 3), 225 - 284.","Valdes, A. & Heros, V. (1998) The types of Recent and certain fossil opisthobranch molluscs in the Museum national d'Histoire naturelle, Paris. Zoosystema, 20 (4), 695 - 742.","Eales, N. B. (1957) Revision of the species of Aplysia of the Museum National d'Histoire Naturelle (Malacologie), Paris. Bulletin du Museum National d'Histoire Naturelle, 2 (29), 246 - 255.","Paredes C., Tarazona, J., Canahuire, E., Romero, L. & Cornejo, O. (1988) Invertebrados Macro-Bentonicos del Area de Pisco, Peru. In: Salzwedel, H. & Landa, A. (Eds.), Recursos y dinamica del ecosistema del afloramiento peruano. Boletin Instituto del Mar del Peru, Callao, Peru, Volumen Extraordinario, pp. 121 - 132.","Paredes C., Cardoso, F. & Tarazona, J. (1999 a) Invertebrados del intermareal rocoso del departamento de Lima, Peru: Una lista comentada de especies. Revista Peruana de Biologia, 6 (2), 143 - 151. https: // doi. org / 10.15381 / rpb. v 6 i 2.8309","Ramirez, P., De La Cruz, J., Castro, J. & Barriga, E. (2015) Biodiversidad Marina en la Isla Lobos de Tierra, Peru. Informe Instituto del Mar del Peru, 42 (1), 7 - 34.","Rang, S. (1828) Histoire naturelle des Aplysiens. Firmin Didot, Paris, 83 pp., 24 pls.","Kay, E. A. (1964) The Aplysiidae of the Hawaiian Islands. Proceedings of the Malacological Society of London, 36 (3), 173 - 190. https: // doi. org / 10.1093 / oxfordjournals. mollus. a 064946","Golestani, H., Crocetta, F., Padula, V., Camacho-Garcia, Y., Langeneck, J., Poursanidis, D., Pola, M., Yokes, M. B., Cervera, J. L., Jung, D., Gosliner, T. M., Araya, J. F., Hooker, Y., Schr ˆ dl, M. & Valdes, A. (2019) The little Aplysia coming of age: from one species to a complex of species complexes in Aplysia parvula (Mollusca: Gastropoda: Heterobranchia). Zoological Journal of the Linnean Society, 187 (2), 279 - 330. https: // doi. org / 10.1093 / zoolinnean / zlz 028","Willan, R. C. & Morton, J. (1984) Cape Rodney to Okakari Point Marine Reserve. Marine Molluscs. Part 2. Opisthobranchia. Leigh Marine Laboratory, Leigh, 106 pp.","Willan, R. C. (1979) The Ecology of Two New Zealand Opisthobranch Molluscs. PhD thesis, University of Auckland, Auckland, 278 pp.","Morley, M. S. & Hayward, B. W. (2015) Intertidal records of ' sea slugs' (nudibranchs and allied opisthobranch gastropods) from northern North Island, New Zealand. Records of the Auckland Museum, 50, 51 - 93.","Nimbs, M. J., Willan, R. C. & Smith, S. D. A. (2017 a) A Historical Summary of the Distribution and Diet of Australian Sea Hares (Gastropoda: Heterobranchia: Aplysiidae). Zoological Studies, 56 (35), 1 - 14. https: // doi. org / 10.6620 / ZS. 2017.56 - 35","Beeman, R. D. (1968) The order Anaspidea. The Veliger, 3 (Supplement), Part. 2, 87 - 102. https: // doi. org / 10.1136 / bmj. 3.5616.101","Bebbington, A. (1977) Aplysiid species from Eastern Australia with notes on the Pacific Ocean Aplysiomorpha (Gastropoda, Opisthobranchia). Transactions of the Zoological Society of London, 34 (1), 87 - 147. https: // doi. org / 10.1111 / j. 1096 - 3642.1977. tb 00373. x","Behrens, D. W. & Hermosillo, A. (2005) Eastern Pacific Nudibranchs. A guide to the Opisthobranchs from Alaska to Central America. Sea Challengers, Monterey, California, 137 pp.","Camacho-Garcia, Y., Gosliner, T. M. & Valdes, A. (2005) Guia de Campo de las Babosas Marinas del Pacifico Este Tropical. California Academy of Sciences, San Francisco, California, 129 pp.","Valdes, A. (2019) Northeast Pacific benthic shelled sea slugs. Zoosymposia, 13, 242 - 304. https: // doi. org / 10.11646 / zoosymposia. 13.1.21","Rudman, W. B. (2003) Comment on Aplysia juliana from New Zealand by Paul Furneaux. Sea Slug Forum, Australian Museum, Sydney. Available from: http: // www. seaslugforum. net / find / 10355 (accessed 15 April 2022)"]}
Databáze: OpenAIRE