animals Article The Impact of Lake Ecosystems on Mineral Concentrations in Tissues of Nile Tilapia (Oreochromis niloticus L.) Tokuma Negisho Bayissa 1,2,* , Sangi Gobena 2, Donna Vanhauteghem 1, Gijs Du Laing 3, Mulugeta Wakjira Kabeta 2 and Geert Paul Jules Janssens 1,* 1 Department of Nutrition, Genetics, and Ethology, Faculty of Veterinary Medicine, Ghent University, Heidestraat 19, 9820 Merelbeke, Belgium;
[email protected] 2 Department of Biology, College of Natural Sciences, Jimma University, Jimma P.O. Box 378, Ethiopia;
[email protected] (S.G.);
[email protected] (M.W.K.) 3 Department of Green Chemistry and Technology, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Gent, Belgium;
[email protected] * Correspondence:
[email protected] (T.N.B.);
[email protected] (G.P.J.J.); Tel.: +32-7-249-4928 or +25-191-189-4695 (T.N.B.); +32-9-264-7820 (G.P.J.J.) Simple Summary: Fish are a source of minerals that is highly favored by consumers in most parts of the world. However, these minerals become toxic upon high-level intake and can accumulate toxic trace elements in different tissues. Nevertheless, mineral distribution in fish tissues is poorly evaluated. Analyzing tissue mineral distribution would help us to understand the physiological role of each tissue and the impact of the ecosystem on mineral and toxic trace element accumulation in the tissues. We evaluated the differences in mineral and toxic trace element concentrations of Nile tilapia Citation: Bayissa, T.N.; Gobena, S.; (Oreochromis niloticus) tissues from three aquatic ecosystems. Distinct differences were observed Vanhauteghem, D.; Du Laing, G.; between tissues in Nile tilapia; in addition, these concentrations were substantially affected by the Kabeta, M.W.; Janssens, G.P.J.