517
Views
0
CrossRef citations to date
0
Altmetric
Report

Effect of krill meal on the reproductive performance of broodstock Nile tilapia, Oreochromis niloticus

, , , & ORCID Icon

References

  • Abu-Elala, N. M., T. El-Sayed Ali, N. M. Ragaa, S. E. Ali, R. M. Abd-Elsalam, N. A. Younis, D. A. Abdel-Moneam, A. H. Hamdien, M. Bonato, and M. A. O. Dawood 2021. Analysis of the productivity, immunity, and health performance of nile tilapia (oreochromis niloticus) broodstock-fed dietary fermented extracts sourced from Saccharomyces cerevisiae (hilyses): A field trial. Animals 11: 815. 3. doi:10.3390/ani11030815.
  • Al-Feky, S. S. A., A.-F. El-Sayed, and A. A. Ezzat. 2016. Dietary taurine improves reproductive performance of Nile tilapia (Oreochromis niloticus) broodstock. Aquaculture Nutrition 22:392–399. doi:10.1111/anu.12256.
  • AOAC. 2023. Official Methods of Analysis of AOAC International. Oxford University Press, New York.
  • Bhujel, R. C. 2013. On-farm feed management practices for nile tilapia (oreochromis niloticus) in Thailand. P. 159–89. In: On-farm feeding and feed management in aquaculture. FAO Fisheries and Aquaculture Technical Paper No. 583. Rome.
  • El-Sayed, A.-F. M., and M. Kawanna 2008. Effects of dietary protein and energy levels on spawning performance of nile tilapia (oreochromis niloticus) broodstock in a recycling system, Aquaculture 280:179–184. 1–4. doi:10.1016/j.aquaculture.2008.04.030.
  • El-Sayed, A. -C. R. Mansour, A. A. Ezzat. 2003. Effects of dietary protein level on spawning performance of nile tilapia (oreochromis niloticus) broodstock reared at different water salinities. Aquaculture 220:619–632. 1–4. doi:10.1016/S0044-8486(02)00221-1.
  • FAO. 2022. The state of world fisheries and aquaculture 2022. Towards Blue Transformation. Rome. https://www.fao.org/3/cc0461en/online/cc0461en.html.
  • Gaber, M. M. 2005. The effect of different levels of krill meal supplementation of soybean-based diets on feed intake, digestibility, and chemical composition of juvenile nile tilapia oreochromis niloticus, L. Journal of the World Aquaculture Society 36:346–353. 3. doi:10.1111/j.1749-7345.2005.tb00338.x.
  • Izquierdo, M., H. Fernandez-Palacios, and A. Tacon. 2001. Effect of broodstock nutrition on reproductive performance of fish. Aquaculture 197 (1–4):25–42. doi:10.1016/S0044-8486(01)00581-6.
  • Kaur, K., T. M. Kortner, T. Benitez-Santana, and L. Burri 2022. Effects of Antarctic krill products on feed intake, growth performance, fillet quality, and health in salmonids. Aquaculture Nutrition. 1–14. doi:10.1155/2022/3170854. (in press).
  • Liang, X., X. Luo, H. Lin, F. Han, J. G. Qin, L. Chen, C. Xu, and E. Li. 2022. Growth, health, and gut microbiota of female pacific white shrimp, litopenaeus vannamei broodstock fed different phospholipid sources. Antioxidants 11 (6):1143. doi:10.3390/antiox11061143.
  • Miao, W., and W. Wang 2020. Trends of aquaculture production and trade: Carp, tilapia, and shrimp. Asian Fisheries Science 33S:1–10. doi:10.33997/j.afs.2020.33.S1.001.
  • Nascimento, C. Z., F. Meurer, S. Romão, L. H. Cazarolli, S. Marcon, T. V. Chagas, and R. A. Bombardelli. 2023. Feed for nile tilapia broodstock and offspring supplemented with purified nucleotides boosts the juvenile’s health, growth, and the resistance face to transport and Aeromonas hydrophila challenges. Animal Feed Science and Technology 297:115568. doi:10.1016/j.anifeedsci.2023.115568.
  • Ng, W. K., and N. Romano. 2013. A review of the nutrition and feeding management of farmed tilapia throughout the culture cycle. Reviews in Aquaculture 5 (4):220–254. doi:10.1111/raq.12014.
  • Ng, W.-K., and Y. Wang. 2011. Inclusion of crude palm oil in the broodstock diets of female nile tilapia, oreochromis niloticus, resulted in enhanced reproductive performance compared to broodfish fed diets with added fish oil or linseed oil. Aquaculture 314 (1–4):122–31. doi:10.1016/j.aquaculture.2011.01.034.
  • Ribeiro, M. J. P., M. M. Evangelista, and E. Antônio 2017. Crude protein in diets for Nile tilapia broodfish. Boletim do Instituto de Pesca 43:35–46. doi:10.20950/1678-2305.2017.35.46.
  • Saleh, R., L. Burri, T. Benitez‐Santana, S. Turkmen, P. Castro, and M. Izquierdo. 2018. Dietary krill meal inclusion contributes to better growth performance of gilthead seabream juveniles. Aquaculture Research 49 (10):3289–3295. doi:10.1111/are.13792.
  • Suloma, A., and H. Y. Ogata. 2012. Lipid and fatty acid composition of commercially important tropical freshwater fish gonads: Guidelines for specific broodstock diet. Turkish Journal of Fisheries and Aquatic Sciences 12 (4):743–749. doi:10.4194/1303-2712-v12_4_02.
  • Tacon, A. G. 2020. Trends in global aquaculture and aquafeed production: 2000–2017. Reviews in Fisheries Science & Aquaculture 28:43–56. 1. doi:10.1080/23308249.2019.1649634.
  • Tharaka, K., T. Benitez‐Santana, B. E. Gunathilaka, M. G. Kim, C. Lee, J. Shin, and K. J. Lee. 2020. Evaluation of Antarctic krill (euphausia superba) meal supplementation in diets for olive flounder (paralichthys olivaceus). Aquaculture Research 51 (6):2291–2302. doi:10.1111/are.14573.
  • Torrecillas, S., D. Montero, M. Carvalho, T. Benitez-Santana, and M. Izquierdo. 2021. Replacement of fish meal by Antarctic krill meal in diets for European sea bass dicentrarchus labrax: Growth performance, feed utilization and liver lipid metabolism. Aquaculture 545:737166. doi:10.1016/j.aquaculture.2021.737166.
  • Tsadik, G. G., and A. N. Bart 2007. Effects of feeding, stocking density and water-flow rate on fecundity, spawning frequency and egg quality of nile tilapia, Oreochromis niloticus (L.). Aquaculture 272:380–388. 1–4. doi:10.1016/j.aquaculture.2007.08.040.
  • Watanabe, T., T. Fujimura, M.-J. Lee, K. Fukusho, S. Satoh, and T. Takeuchi. 1991. Nutritional studies in the seed production of fish-XXI. Effect of polar and nonpolar lipids from krill on quality of eggs of red seabream pagrus major. Nippon Suisan Gakkaishi 57 (4):695–698. doi:10.2331/suisan.57.695.