Ploidy influences on metabolic substrate deposition of rainbow trout
Resumo
Triploid fish are usually sterile. Thus, the energy and nutrients intended for sexual maturation may be available to enhance flesh quality and physical growth. The present study aimed to investigate differences in the metabolic substrates, lipids and proteins, between storage tissues from diploid and triploid female rainbow trout. Monthly, metabolic substrates were quantified in liver, muscle, and ovaries, which were collected during the first reproductive cycle. In general, it was possible to identify a seasonal and similar deposition of metabolites in different tissues of 2n and 3n females, mainly at early stages of gonadal maturation. However, from the stages 5-6, the ovaries showed great differences between ploidies, with higher concentration of lipids and protein in 2n females. This result reflects the incorporation of vitellogenin in oocytes, which is a process that does not occur in 3n females. It was possible to observe seasonal hepato-somatic index changes in 2n females, with higher values observed in the post-ovulatory stage, and the triploid animals showed lower values compared to 2n, with no seasonal difference. Viscero-somatic index can reflect the mobilization of substrates, with higher values found for 2n females in stage 5-6, which is the period of active mobilization of tissue substrates.
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Referências
Alabert, B. J., & Jalabert, B. (2005). Particularities of reproduction and oogenesis in teleost fish compared to mammals. Reproduction Nutrition Development, 45(3), 261-279. doi: 10.1051/rnd,2005019
Association of Official Analytical Chemists [AOAC]. Official Methods of Analysis (18th ed.). Washington, DC: AOAC International.
Benfey, T. J., Dye, H. M., Solar, I. I., & Donaldson, E. M. (1989). The growth and reproductive endocrinology of adult triploid Pacific salmonids. Fish Physiology and Biochemistry, 6(2), 113-120. doi: 10.1007/BF01875483
Bromage, N., & Cumaranatunga, R. (1988). Egg production in the rainbow trout Recent Advances in Aquaculture (pp. 63-138). Dordrecht, NT: Springer.
Davidson, A. P., & Stabenfeldt, G. H. (2014). Controle do desenvolvimento gonadal e dos gametas. In B. G. Klein (Ed.), Tratado de Fisiologia Veterinária (Cunningham) (pp. 408-415). Rio de Janeiro, RJ: Elsevier.
Folch, J., Lees, M., & Sloane-Stanley, G. H. (1957). A simple method for the isolation and purification of total lipids from animal tissues. Journal of Biological Chemical, 226(1), 497-509.
Frings, C. S., Fendley, T. W., Dunn, R. T., & Queen, C. A. (1972). Improved determination of total serum lipids by the sulfo-phospho-vanillin reaction. Clinical Chemistry, 18(7), 673-674.
Lowry, O.H., Rosebrough, N.J., Farr, A.L., Randall, R.J. (1951). Protein measurement with the Folin phenol reagent. The Journal of Biological Chemistry, 193(1), 266-275.
Lubzens, E., Young, G., Bobe, J., & Cerdà, J. (2010). Oogenesis in teleosts: how fish eggs are formed. General and comparative endocrinology, 165(3), 367-389. doi: 10.1016/j.ygcen.2009.05.022
Manor, M. L., Cleveland, B. M., Weber, G. M., & Kenney, P. B. (2015). Effects of sexual maturation and feeding level on fatty acid metabolism gene expression in muscle, liver, and visceral adipose tissue of diploid and triploid rainbow trout, Oncorhynchus mykiss. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology, 179(1), 17-26. doi: 10.1016/j.cbpb.2014.09.003
Maxime, V. (2008). The physiology of triploid fish: current knowledge and comparisons with diploid fish. Fish and Fisheries, 9(1), 67-78. doi: 10.1111/j.1467-2979.2007.00269.x
Milligan, C. L., & Girard, S. S. (1993). Lactate metabolism in rainbow trout. Journal of Experimental Biology, 180(1), 175-193.
Nassour, I., & Léger, C. L. (1989). Deposition and mobilisation of body fat during sexual maturation in female trout (Salmo gairdneri Richardson). Aquatic Living Resources, 2(3), 153-159. doi: 10.1051/alr,1989018
Ozorio, R. O. A., Escorcio, C., Bessa, R. J. B., Ramos, B., & Gonçalves, J. F. M. (2012). Comparative effects of dietary l‐carnitine supplementation on diploid and triploid rainbow trout (Oncorhynchus mykiss). Aquaculture Nutrition, 18(2), 189-201. doi: 10.1111/j.1365-2095.2011.00888.x
Penman, D. J. (2004). Aquaculture and fisheries biotechnology: Genetic approaches. Journal of Fish Diseases, 27(11), 677-677. doi: 10.1111/j.1365-2761.2004.00584.x
Ribeiro, C. S., Gomes, A. D., Vieira, V. A. R. O., Tabata, Y. A., Takahashi, N. S., & Moreira, R. G. (2012). The effect of ploidy on the fatty acid profile during the reproductive cycle of female rainbow trout (Oncorhynchus mykiss). Aquaculture International, 20(6), 1117-1137. doi: 1137.10.1007/s10499-011-9468-2
Sayer, M. D. J., Gibson, R. N., & Atkinson, R. J. A. (1995). Growth, diet and condition of goldsinny on the west coast of Scotland. Journal of Fish Biology, 46(2), 317-340. doi:10.1111/j.1095-8649.1995.tb05972.x
Schafhauser-Smith, D., & Benfey, T. J. (2001). The reproductive physiology of three age classes of adult female diploid and triploid brook trout (Salvelinus fontinalis). Fish Physiology and Biochemistry, 25(4), 319-333. doi: 10.1023/A,1023285008072
Tabata, Y. A., Rigolino, M. G., & Tsukamoto, R. Y. (1999). Production of all female triploid rainbow trout, Oncorhynchus mykiss (Pisces, Salmonidae). III. Growth up to first sexual maturation. Boletim do Instituto de Pesca Sao Paulo, 25, 67-76.
Takashima, F. (1971). Endocrinological studies on lipid metabolism in rainbow trout. I. Differences in lipid content of plasma, liver and visceral adipose tissue between sexually immature and mature females. Nippon Suisan Gakkaishi, 37(4), 307-311. doi: 10.2331/suisan.37.307
Taranger, G. L., Carrillo, M., Schulz, R. W., Fontaine, P., Zanuy, S., Felip, A., ... Norberg, B. (2010). Control of puberty in farmed fish. General and Comparative Endocrinology, 165(3), 483-515. doi: 10.1016/j.ygcen.2009.05.004
Taylor, J. F., Sambraus, F., Mota-Velasco, J., Guy, D. R., Hamilton, A., Hunter, D., ... Migaud, H. (2013). Ploidy and family effects on Atlantic salmon (Salmo salar) growth, deformity and harvest quality during a full commercial production cycle. Aquaculture, 410, 41-50. doi: 10.1016/j.aquaculture.2013.06.004
Tiwary, B. K., Kirubagaran, R., & Ray, A. K. (2004). The biology of triploid fish. Reviews in Fish Biology and Fisheries, 14(4), 391-402. doi: 10.1007/s11160-004-8361-8
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