Use of Apiculture Products in Aquaculture - Review
Keywords:
apiculture products, aquaculture, productive performanceAbstract
Apiculture products are natural substances secreted or produced by bees, which can be used in aquaculture through food, intramuscular administration or direct in water, in order to improve health due to the antioxidant, antifungal and antimicrobial effect that these products have and also improve growth and reproductive performance of the fish species of economic interest. In this review, we aim to highlight the main studies conducted so far on the use of bee products in aquaculture in order to be able to present an overview of this topic of interest.
References
Karsten M., Bogdanov S., Bee products and their potential use in modern medicine, Journal of ApiProduct and ApiMedical Science 2009, 1(3), 57-63
Habryka C., Kruczek, M., Drygaś, B., Bee products used in apitherapy, World Scientific News, 2016, 48, 254-258
Lima W., G., Brito, J. C. M, da Cruz W., S., N., Bee products as a source of promising therapeutic and chemoprophylaxis strategies, 2020,
https://doi.org/10.1002/ptr.6872;
Ferreira, D., Rocha, H. C, Kreutz, L. C., Loro, V. L., Marqueze, A., et al., Bee Products Prevent Agrichemical-Induced Oxidative Damage in Fish, PLoS ONE 2013, 8(10), e74499.
Addeo, N. F., Roncarati, A., Secci, G., et al., Potential use of a queen bee larvae meal (Apis mellifera lingustica Spin.) in animal nutrition: a nutritional and chemical-toxicological evaluation. Journal of Insects as Food and Feed, 2020, 7(2), 173-186
Pătruică, S., Grozea A., Dumitrescu G., et al., Research regarding the influence of royal jelly on sex reversal in zebra fishes (Danio rerio), AACL Biflux, 2010, 3
Onur V., Sibel S., Ercüment A., The effect of royal jelly dietary on growth performance and expression of genes related to growth and immunity of zebrafish, Danio reri, Aquaculture Reports, 2021, 20, 100652
Ferreira, D., Rocha, H. C., Kreutz, L. C. et al., Bee Products Prevent Agrichemical - Induced Oxidative Damage in Fish, 2013,
https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0074499;
Aksakal, E., Ekinci, D. Supuran, C. T., Dietary inclusion of royal jelly modulates gene expression and activity of oxidative stress enzymes in zebrafish, Journal of Enzyme Inhibition and Medicinal Chemistry, 2021, 36, 1, 885-894
Farag, M. R., Abdelnour, S. A., Patra, A. K. et al., Propolis: Properties and composition, health benefits and applications in fish nutrition, Fish and Shellfish Immunology, 2021, 115, 179–18
Ariyanto, D., Robisalmi, A., Larasati, A. K., Propolis, the alternative natural material for sex reversal in tilapia, Indonesian Aquaculture Journal, 2012, 7(2)
Gulhan, F., Duran A., Talas S., et al., Effects of propolis on microbiologic and biochemical parameters of rainbow trout (Oncorhynchus mykiss) after exposure to the pesticide, Iranian Journal of Fisheries Sciences, 2012, 11(3), 490-503
Kakoolaki, S., Talas, Z. S., Cakir, O. et al., Role of Propolis on Oxidative Stress in Fish Brai, Basic clinic neurosci, 2013, 4(2), 153-158
Velotto S., Vitale C., Varricchio E., et al., Effect of Propolis on the Fish Muscular Development and Histomorphometrical Characteristics, Acta Vet. Brno, 2010, 79, 543-550
Talas, Z. S., Gulhan, M. F., Erdogan, K., Orun, I., Antioxidant effects of propolis on carp Cyprinus carpio exposed to arsenic: biochemical and histopathologic findings, Dis aquat Org., 2014, 108, 241-249.
de la Cruz Cervantes J. A., Gonzales F. B., Sanchez – Martines J. G., et al., Propolis in aquaculture: A review of its potential, Reviews in Fisheries Science Aquaculture, 2018, 26, (3), 337-349
Yonar, M. E., Yonar, S. M., Pala, A., Silici, S., Sãglam, N., Trichlorfon – induced haematological and biochemical changes in Cyprinus carpio: ameliorative effect of propolis, Dis aquat Org, 2015, 114, 209-216.
Yonar, M. E., Yonar, S. M., Ural M. Ș., Protective role of propolis in chlorpyrifos - induced changes in the haematological parameters and the oxidative/antioxidative status of Cyprinus carpio, Food and Chemical Toxicology, 2012, 50(8), 2703-2708
Orun, I. Selamoglu, Z., Gulhan, M. F. et al., Role of propolis on biochemical and hematological parameters of Oncorhynchus mykiss exposed to cypermethrin, Journal of Survey in Fisheries Sciences, 2014, 1(1), 21-35
Yonar, M E., Yonar S.l, M., Çoban, M. Z., et al., Antioxidant effect of propolis against exposure to chromium in Cyprinus carpio, Environmental toxicology, 2011, 29(2), 155-164
Han, S. M., Lee, K. G., Park, K. K., et al., Antimicrobial Activity of Honey Bee Venom against Select Infectious Fish Pathogens, North American Journal of Aquaculture, 2013, 75, 3, 445-448
Di Chiacchio, I. M., Paiva I. M., de Abreu, D. J. M. et al., Bee pollen as a dietary supplement for fish: Effect on the reproductive performance of zebrafish and the immunological response of their offspring, Fish and Shellfish Immunology, 2021, 119, 300-307
Sánchez, E. G. T., Fuenmayor C. A., Mejía, S. M. V., Díaz-Moreno, C., Mahecha, H. S., Effect of bee pollen extract as a source of natural carotenoids on the growth performance and pigmentation of rainbow trout (Oncorhynchus mykiss), Aquaculture, 2020, 514, 734490
Asgari M., Kenari A. A., Esmaeili, M., Rombenso A., Effects of hydroalcoholic extract of honeybee pollen on growth performance, flesh quality, and immune and stress response response of rainbow trout (Oncorhynchus mykiss), Aquaculture nutrition, 2020, 26(5), 1505-1519
Ren, H., Huang, Y., Lin, L., Effects of dietary supplementation with peony pollen on growth, intestinal function, fillet quality and fatty acids profiles of common carp. Aquaculture nutrition, 2021, 27(3), 908-917
Ren, H. T, Huang, Y., Gao, X. C., Gao, S. Y., Effects of dietary supplementation with peony pollen on growth, immune-related gene expression, and antioxidant status of Cyprinus carpio, The Israeli Journal of Aquaculture - Bamidgeh, 2022, 74
Rosaria, A., de Medeiros, A. C. L., Secci, G., Mancini, S., Manuguerra, S., Bovera, F., Santulli, A., Parisi, G., Messina, C. M., Piccol, G., Effects of Dietary Supplementation with Honeybee Pollen and Its Supercritical Fluid Extract on Immune Response and Fillet’s Quality of Farmed Gilthead Seabream (Sparus aurata) Animals, 2022, 12(6), 675
Bura, M., Pătruică, S., Bura V. A., Tehnologie apicolă, editura Solness, Timișoara 2005, pp. 325-332
Salosso, Y., Chemical composition and antibacterial activity of honey collected from East Nusa Tenggara, Indonesia on pathogenic bacteria in aquaculture, IOP Conf. Series: Earth and Environmental Science, 2019, 370, 012030
Salosso, Y., The potential of forest honey (Apis spp.) from timor island as antibacterial against pathogenic bacteria in fish culture, Indonesian Aquaculture Journal, 2019, 14(2), 63-68.
