Morfología de los estados embrionarios tardíos y cápsula ovígera de Sympterygia brevicaudata (Rajiformes: Arhynchobatidae) en el norte de Chile
DOI:
https://doi.org/10.22370/rbmo.2024.59.3.4929Palabras clave:
Northern spotted ray, egg capsule, embryonic development, yolk sac, body discResumen
The morphology of the egg capsule and embryonic stages of Sympterygia brevicaudata are described. A total of 144 egg capsules were collected stranded on the beach and by scuba diving at a depth between 3 and 10 m, from Arica and Taltal, northern Chile, with a frequency of two days per month from March 2011 to March 2012 and from April 2012 to March 2013. The morphology and structures with which the female fixes the egg capsule to stable substrates are described. The observations on the late embryonic development were made using 72 embryos extracted from the 144 ovigerous capsules, which were kept in captivity. A total of seven embryonic stages were determined and described. In the initial stages (I to III) an embryo with an elongated structure was observed, with long and developed gill filaments, a translucent body and a pale pink color due to high blood supply and a large yolk sac. In later stages (IV to VII) the change in the morphology of the body disc was described due to the development of the pectoral and pelvic fins, appearance of ocular and body pigmentation, dorsal fins, dermal denticles and dorsal spines. The decrease and disappearance of the gill filaments and the yolk sac was documented. In conclusion, the detailed study of the egg capsule morphology and embryonic stages of S. brevicaudata provides a comprehensive insight into the early development of this species in coastal waters off northern Chile. Observations on egg capsule attachment and morphological changes during embryonic development highlight the adaptation and evolutionary process of this species in its natural habitat. This work contributes significantly to the understanding of reproductive biology and early development in rays of the genus Sympterygia, underlining the importance of conserving their ecosystem for preservation, especially in vulnerable species such as S. brevicaudata.
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Barrera-Oro E & A Maranta. 1996. Régimen alimentario estacional de Sympterygia bonapartii, Müller y Henle 1841 (Rajidae), en Mar del Plata. Boletim do Laboratorio de Hidrobiología 9: 33-53.
Bearez P. 1996. Lista de los peces marinos del Ecuador continental. Revista de Biología Tropical 44(2): 731-741.
Bustamante C, C Vargas‐Caro & MB Bennett. 2014. Not all fish are equal: functional biodiversity of cartilaginous fishes (Elasmobranchii and Holocephali) in Chile. Journal of Fish Biology 85(5): 1617-1633.
Caldeira F. 2006. Morfologia e biometria do desenvolvimento embrionário da raia Sympterygia acuta Garman, 1877 (Elasmobranchii; Rajidae). Tesis de Postgrado en Oceanografía Biológica, Fundación Universidad Federal de Rio Grande, Rio Grande, 86 pp. <http://repositorio.furg.br/bitstream/handle/1/4194/Dissertacao%20Fernanda%20Caldeira.pdf?sequence=1>
Carrier JC, HL Pratt & JJ Castro. 2004. Reproductive biology of elasmobranchs. In: Carrier JC, JA Musick & MR Heithaus (eds). Biology of sharks and their relatives, pp. 269-286. CRC Press, Boca Raton.
Compagno LJV. 1999. Checklist of living elasmobranchs. In: Hamlett WC (ed). Sharks, skates and rays: The biology of elasmobranch fishes, pp. 471-498. The Johns Hopkins University Press, Baltimore.
Concha F, S Hernández & MC Oddone. 2009. Egg capsules of the raspthorn sandskate, Psammobatis scobina (Philippi, 1857) (Rajiformes, Rajidae). Revista de Biología Marina y Oceanografía 44(1): 253-256.
Concha F, N Morales & J Larraguibel. 2013. Egg capsules of the filetail fanskate Sympterygia lima (Poeppig 1835) (Rajiformes, Arhynchobatidae) from the southeastern Pacific Ocean, with observations on captive egg-laying. Ichthyological Research 60(3): 203-208.
Conrath CL. 2005. Reproductive biology. FAO Fisheries Technical Paper 474: 1-26.
Gilbert PW & FG Wood. 1957. Method of anesthetizing large sharks and rays safely and rapidly. Science 126: 212-213.
Hamlett W & TJ Koob. 1999. Female reproductive system. In: Hamlett WC (ed). Sharks, skates and rays: The biology of elasmobranch fishes, pp. 398-443. The Johns Hopkins University Press, Baltimore.
Hitz CR. 1964. Observations on egg cases of the big skate Raja binoculata (Girard) found in Oregon coastal waters. Journal of the Fisheries Research Board of Canada 2: 851-854.
Hoff GR. 2009. Embryo developmental events and the egg cases of the Aleutian skate Bathyraja aleutica (Gilbert) and the Alaska skate Bathyraja parmifera (Bean). Journal of Fish Biology 74: 483-501.
Ishiyama R. 1958. Studies on the rajid fishes (Rajidae) found in the waters around Japan. Journal of the Shimonoseki College of Fisheries 7(2/3): 191-394.
Jañez J & MCI Sueiro. 2007. Size at hatching and incubation period of Sympterygia bonapartii (Müller & Henle, 1841) (Chondrichthyes, Rajidae) bred in captivity at the Temaiken Aquarium. Journal of Fish Biology 70: 648-650.
Lamilla J & C Bustamante. 2005. Guía para el reconocimiento de tiburones, rayas y quimeras de Chile, 43 pp. Editorial Oceana, Santiago.
Lamilla J & S Sáez. 2003. Clave taxonómica para el reconocimiento de especies de rayas chilenas (Chondrichthyes, Batoidei). Investigaciones Marinas 31(2): 3-16.
Lamilla J, C Bustamante, R Roa, E Acuña, F Concha, R Melendez, S López, G Aedo, H Flores & C Vargas. 2010. Estimación del descarte de condrictios en pesquerías artesanales. Informe Final, Proyecto Fondo de Investigación Pesquera (FIP) 2008‐60: 1-259. <https://www.subpesca.cl/fipa/613/articles-89264_informe_final.pdf>
Larraguibel-Vallarino JL. 2014. Desarrollo embrionario tardío de la raya costera, Sympterygia lima (Rajiformes: Arynchobatidae) (Poeppig, 1835) basado en características morfológicas externas y en estructuras del esqueleto cartilaginoso. Tesis de Biología Marina, Facultad de Ciencias del Mar y de Recursos Naturales, Universidad de Valparaíso, Viña del Mar, 103 pp. <https://chondrolab.cl/wp-content/uploads/2018/08/Larraguibel-2014.-Desarrollo-embrionario-Sympterygia-lima-1.pdf>
Leonard JB, AP Summers & TJ Koob. 1999. Metabolic rate of embryonic little skate, Raja erinacea (Chondrichthyes: Batoidea): The cost of active pumping. Journal of Experimental Zoology 283: 13-18.
Luer CA & PW Gilbert. 1985. Mating behavior, egg deposition, incubation period, and hatching in the clearnose skate, Raja eglanteria. Environmental Biology of Fishes 13: 167-171.
Luer C, C Walsh, A Bodine & J Wyffels. 2007. Normal embryonic development in the clearnose skate, Raja eglanteria, with experimental observations on artificial insemination. Environmental Biology of Fishes 80: 239-255.
Mabragaña E, LO Lucifora & AM Massa. 2002. The reproductive ecology and abundance of Sympterygia bonapartii endemic to the south-west Atlantic. Journal of Fish Biology 60: 951-967.
Méndez-Abarca F. 2015. El acuario marino costero chileno, 132 pp. Fundación Reino Animal, Arica.
Méndez-Abarca F & R Pepe-Victoriano. 2020. Peces marinos del norte de Chile: guía para la identificación y mantención en cautiverio, 79 pp. Fundación Reino Animal & ONG por la Conservación de la Vida Salvaje, Arica.
Méndez-Abarca F, CF Méndez, RA Reyes, HA Vargas & GA Aragón. 2013. Fish species involved in mass washed up eggs in Chinchorro beach, Arica-Chile during the period of one year. Revista de Zoología, México 24:15-17.
Oddone MC & CM Vooren. 2008. Comparative morphology and identification of egg capsules of skates species of the genera Atlantoraja (Menni 1972), Rioraja (Whitley 1939) and Sympterygia (Muller and Henle 1837). Arquivos de Ciencias do Mar Fortaleza 41: 5-13.
Paesch L. 2000. Hábitos alimentarios de algunas especies de elasmobranquios en el frente oceánico del Río de La Plata. Frente Marítimo 18(A): 71-90.
Sánchez F & LB Prenski. 1996. Ecología trófica de peces demersales en el Golfo San Jorge. Revista de Investigación y Desarrollo Pesquero 10: 57-71.
Vazquez DM, V Gabbanelli, JM Díaz de Astarloa & E Mabragaña. 2016. Distribución y abundancia de cápsulas de huevo y aspectos del desarrollo embrionario de las rayas Bathyraja brachyurops y Bathyraja macloviana en la plataforma bonaerense. Revista de Investigación y Desarrollo Pesquero 29: 45-59.
Vazquez DM, CA Gabbanelli, LO Awruch, JM Lucifora, Díaz de Astarloa & E Magabraña. 2022. Embryonic development timeline in skates (Chondrichthyes: Rajiformes): Sympterygia acuta as the first case study in the family Arhynchobatidae. Zoology 155: 126057.
Wourms JP & IS Demski. 1993. The reproduction and development of sharks, skates, rays and ratfishes: introduction, history, overview, and future prospects. Environmental Biology of Fishes 38: 7-21.
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