Aclimatación en cautiverio del sargo Archosargus probatocephalus (Perciformes: Sparidae)

Autores/as

  • María de la Luz Merino Contreras Instituto Tecnológico de Boca del Río, TECNOLOGICO NACIONAL DE MÉXICO

DOI:

https://doi.org/10.19136/era.a5n15.1730

Resumen

RESUMEN

El sargo (Archosargus probatocephalus) es considerada especie prioritaria para el desarrollo de la maricultura en el sureste mexicano. El objetivo del estudio fue reproducir en cautiverio dos lotes de sargos, uno en cautiverio por 12 meses y otro de reproductores silvestres. El lote en cautiverio se formó por 36 organismos, en un sistema de recirculación de agua con salinidad de 10 psu, a los que se les determinó el incremento en longitud y peso cada mes, además se promovió la madurez sexual incrementando de forma gradual la salinidad del sistema, hasta 35 psu, para luego inducir el desove con una inyección intramuscular de 500 UI kg-1 de hormona gonadotropina coriónica y sérica. Por otra parte, se colectaron 15 reproductores silvestres de la laguna de Alvarado Veracruz, induciéndolos al desove de la misma forma. El incremento promedio en longitud de los organismos acondicionados al cautiverio fue de 0.064 ± 0.02 cm d-1 con peso promedio de 1.97 ± 0.4 g d-1, madurando sexualmente en el mes de enero. Ambos lotes desovaron, los huevos obtenidos tuvieron un diámetro promedio de 817.3 ± 20.9 µm, volumen del saco vitelino promedio de 243 ± 11 nL, diámetro promedio de la gota de aceite de 203.5 ± 16.5 µm y longitud notocordal promedio de los eleuteroembriones de 1.65 ± 0.25 mm. Es posible lograr la maduración en cautiverio del sargo, así como, obtener larvas de calidad a partir de la inducción de reproductores en cautiverio y silvestres en la época reproductiva.

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Biografía del autor/a

María de la Luz Merino Contreras, Instituto Tecnológico de Boca del Río, TECNOLOGICO NACIONAL DE MÉXICO

DEPARTAMENTO DE CIENCIAS DEL MAR.

JEFA DEL LABOARTORIO DE SANIDAD ACUICOLA

Citas

APROMAR (2017) Informe: La Acuacultura en España, 93 p. www.apromar.es/sites/default/files/2017/informe/APROMAR_Informe_ACUICULTURA_2017 Fecha de consulta: 6 de diciembre 2017.

Álvarez Lajonchére L, Hernández O (1991) Producción de juveniles de peces estuarinos para un centro de América Latina y el Caribe: Diseño, Operación y Tecnología. Word Aquaculture Society, Baton Rouge USA, 424 p.

Beckman DW, Stanley AL, Render JH, Wilson CA (1991) Age and growth-rate estimation of sheepshead, Archosargus probatocephalus in Louisiana waters using otoliths. Fishery Bulletin 89: 1-8.

Bester y Robins (2005) Biological profiles: sheepshead. Ichthyology: Education-Biological Profiles. Florida museum of natural history, University of Florida www.flmnh.ufl.edu/fish/Gallery/Descript/Sheepshead/Sheepshead.html. Fecha de consulta 15 de junio 2017.

Bobe J, Labbé C (2010). Egg and sperm quality in fish. General and Comparative Endocrinology 165: 535-548.

Castranova, DA, King W, Woods LC III (2005) The effects of stress on androgen production, spermiation response and sperm quality in high and low cortisol responsive domesticated male striped bass. Aquaculture, 246: 413-422.

Colombo L, Francescon A, Barbaro A, Belvedere P, Melotti P (1989) Induction of spawning in the Gilthead sea bream, Sparus aurata L., by elevation of the water temperature and salinity and by HCG LH-RH analogue treatments. Rivista Italiana di Acquacoltura 24: 187-196.

Faulk CK, Holt, GJ (2008). Biochemical composition and quality of captive spawned cobia Rachycentron canadum eggs. Aquaculture 279: 70-76.

Fernandez-Palacios H, Izquierdo M, Robaina L, Valencia A, Salhi M, Montero D (1997) The effect of dietary protein and lipid from squid and fish meals on egg quality of broostock for gilthead seabream (Sparus aurata). Aquaculture 148: 233-246.

Figueira WF, Coleman FC (2010) Comparing landing of United States Recreational Fishery Sectors: Bolletin of Marine Science 86(3): 499-514.

GSMFC (Gulf States Marine Fisheries Commission (2006) The Sheepshead Fisheries, Pub No. 143 of The Gulf of Mexico, United States. A Fisheries profile, by The Sheepshead Technical Task Force. (ed.) Vanderkooy SJ, P.O. Box 726 Ocean Spring, Mississippi, EUA, 143 p.

Goos HJ, Costen D (2002) Stress adaptation, cortisol and pubertal development in the male common carp, Cyprinus carpio. Molecular and Cellular Endocrinology 197:105-116.

Gordin H, Zohar Y (1978) Induced spawning Sparus aurata (L.) by means hormonal treatments. Annales de biologie animale, Biochemie Biophysique 18: 985-990.

Hunt von Herbing I (2001) Development of feeding structures in larval fish with different life histories: winter flounder and Atlantic cod. Journal of Fish Biology 59: 767-782.

Kennedy J, Geffen AJ, Nash RDM (2007) Maternal influences on egg and larval characteristics of plaice (Pleuronectes platessa L.). Journal of Sea Research 58: 65-77.

Kjorsvik E, Hoehne-Reitan K, Reitan KI (2003) Egg and larval quality criteria as predictive measures for juvenile production in turbot (Scophthalmus maximus L.) Aquaculture 227: 9-20.

Lahnsteiner F, Patarnello P (2005) The shape of the lipid vesicle is a potential marker for egg quality determination in the gilthead seabream, Sparus aurata, and in the sharpsnout seabream, Diplodus puntazzo. Aquaculture, 246: 423-435.

Lahti K, Lower N (2000) Effects of size asymmety on agression and food acquisition in Arctic charr. Journal of fish Biology, 56: 915-922.

Laine P, Rajasilta M (1999) The hatching success of Baltic herring eggs and its relation to female condition. Journal of Experimental Marine Biology and Ecology 237: 61-73.

McDonough CJ, Wenner CA, Roumillat WA (2011) Age, Growth, and Reproduction of Sheepsheads in South Carolina, Marine and Coastal Fisheries, 3: 366-382.

Okuzawa K, Takebe T, Hirai N, Ikuta K (2015) Status of resource enhancement and sustainable aquaculture practices in Japan. In: Romana-Eguia MRR, Parado-Estepa FD, Salayo ND, Lebata-Ramos MJH (Eds.) Resource enhancement and sustainable aquaculture practices in southeast Asia: Challenges in responsible production of aquatic species. Aquaculture Dept., Southeast Asian Fisheries Development Center. Tigbauan Iloilo, Philippines. pp: 41-52.

Pattillo ME, Czapla TE, Nelson DM, Monaco ME (1997) Distribution and abundance of fishes and invertebrates in Gulf of Mexico estuaries. Vomume II Species life history summaries. ELMR Rep. No. 11. NOAA/NOS Strategic Enviromental Assessments Division, Silver Spring MD, 377 p.

Planas M, Cunha I (1999) Larvae culture of marine fish: problems and perspectives. Aquaculture 177: 171-190.

Prieto M, Castaño F, Sierra J, Logato P, Botero J (2006) Alimento vivo en la larvicultura de peces marinos: copépodos y mesocosmos. Revista MVZ Córdoba, 11 (Su1): 30-36.

Quintero HE, Durland E, Davis DA, Dunham R (2009) Effect of lipid supplementation on reproductive performance of female channel catfish, Ictalurus punctatus, induced and strip-spawned for hybridization. Aquaculture Nutrition 17 (2): 117–129.

Render JH, Wilson CA (1992) Reproductive biology of sheepshead in the northern Gulf of Mexico. Transactions of the American Fisheries Society 121: 757-764.

Rideout RM, Rose GA, Burton MPM (2005) Skipped spawning in female iteroparous fishes. Fish and Fisheries 6: 50-72.

RIINIPA (2012) Red Nacional de Información e Investigación en pesca y acuacultura, Región III Golfo de México Norte, Inapesca.gob.mx. Fecha de consulta 14 agosto 2016.

Schreck CB, Contreras-Sánchez W, Fitzpatrick MS (2001) Effects of stress on fish reproduction gamete quality and progeny. Aquaculture 197: 3-24.

Seiffert B (2001) Effect of dietary (n-3) highly unsaturated fatty acids on growth and survival of fat snook (Centropomus parallelus, Pisces: Centropomidae) larvae during fish feeding Braz Journal Med Bio Res. 34: 645-651.

Thorsen A, Trippel EA, Lambert Y (2003) Experimental methods to monitor the production and quality of eggs of captive marine fish. Journal of Northwest Atlantic Fishery Science 33: 55-70.

Trippel EA (1998) Egg size and viability and seasonal offspring production of young Atlantic cod. Transactions of the American Fisheries Society 127: 339-359.

Tucker JW Jr. (1986) Sheepshead, the versatile porgy.Tropical Fish Hobbyist 34: 64-68.

Tucker JW Jr. (1998) Marine fish culture. Kluwer Academic Publishers, Massachusetts, USA. 750 p.

Tucker, J.W., Jr. (2004). Sheepshead, a potential American sea bream for farming. World Aquaculture Magazine, 35(3): 48-68.

Tucker JW Jr, Alshuth SR (1997) Development of laboratory-reared sheepshead, Archosargus probatocephalus (Pisces: Sparidae). Fishery Bulletin 95: 394-401.

Tucker JW Jr, Barbera PA (1987) Laboratory of spawning of shepshaed. The Progresive Fish-Culturist 49: 229-230.

Utne-Palm AC (1997) The effect of turbidity and illumination on the reaction distance and research time on the marine planktivore Gobiusculus flavescens to its planktonic prey. Journal Fish Biology 50: 926- 938.

Wagner E, Arndt R, Hilton B (2002). Physiological stress responses, egg survival and sperm motility for rainbow trout broodstock anesthetized with clove oil, tricaine methanosulfonate or carbon dioxide. Aquaculture 211: 353-366.

Wang N, Hayward RS, Noltie DB (2000). Effects of social interaction on growth of juvenile hybrid sunfish held at two densities. North American Journal of Aquaculture 62: 161-167.

Watanabe T (1988) Fish nutrition and mariculture. Department of Aquatic Biosciences. Tokyo University of Fisheries, Japan p.233.

Watanabe T (1995) Importance of the study of broodstock nutrition four further development of aquaculture. In: Nutrition and feeding in fish. Ed. Cowey CB, Marki AM, Bell JB. Academic Press, London, pp: 395-414.

Watanabe T, Vassello-Agius R (2003) Broodstock nutrition research on marine finfish in Japan. Aquaculture 227: 35-61.

Wenner C (2004) Status and trends in the fishery and population of sheepshead in South Carolina waters. Technical Report to the South Carolina Department of Natural Resources. Marine Resources Division Publications, Carolina, USA. 64 p.

Zabala-Leal I, Dumas S, López-Villegas EO, Peña E, Contreras-Olguín M, Flores-Montijo L, De la Cruz-Aguero J (2013) Structural development of Pacific red snapper Lutjanus peru from hatching to the onset of first feeding. Aquaculture Research, 45: 519-527.

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Publicado

2018-09-03

Cómo citar

Merino Contreras, M. de la L. (2018). Aclimatación en cautiverio del sargo Archosargus probatocephalus (Perciformes: Sparidae). Ecosistemas Y Recursos Agropecuarios, 5(15), 511–521. https://doi.org/10.19136/era.a5n15.1730

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ARTÍCULOS CIENTÍFICOS