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Effect of Solid-Fermented Brewer's Spent Grain on Growth, Metabolism, and Oxidative Status of European Seabass (Dicentrarchus labrax)

Title
Effect of Solid-Fermented Brewer's Spent Grain on Growth, Metabolism, and Oxidative Status of European Seabass (Dicentrarchus labrax)
Type
Article in International Scientific Journal
Year
2025
Authors
Estevao-Rodrigues, T
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Fernandes, H
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Moutinho, S
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Ferreira, M
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Castro, C
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Belo, I
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Salgado, JM
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Oliva-Teles, A
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Peres, H
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Journal
Title: FishesImported from Authenticus Search for Journal Publications
Vol. 10
Final page: 49
Publisher: MDPI
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Publicação em ISI Web of Knowledge ISI Web of Knowledge - 0 Citations
Publicação em Scopus Scopus - 0 Citations
Other information
Authenticus ID: P-018-4EA
Abstract (EN): Replacing traditional agricultural ingredients with biotechnologically improved agro-industry by-products in fish diets promotes sustainable aquaculture, reduces production costs and carbon footprint, and promotes a circular economy. Brewer's spent grain (BSG) is one such by-product. Solid-state fermentation (SSF) of BSG with Aspergillus ibericus enhances its nutritional value and digestibility for European seabass. The present study further evaluates the potential of dietary inclusion of BSG-SSF on growth performance, feed utilization, plasma metabolite profile, intermediary metabolism, and oxidative status of European seabass juveniles compared to the unfermented product. A practical diet (45% protein; 18% lipids) was tested against diets incorporating 10% or 20% of BSG or BSG-SSF, replacing plant-protein feedstuffs. Triplicate groups of European seabass juveniles (49 g initial weight) were fed for 10 weeks. Unfermented BSG (10% and 20%) reduced growth and feed efficiency. In comparison, the 20% BSG-SSF diet promoted growth and feed efficiency similar to the control group, while the 10% BSG-SSF diet surpassed the control diet. Whole-body protein content was unaffected, but lipid and energy content decreased with increasing BSG levels, regardless of fermentation. Plasma glucose and phospholipid levels and hepatic activities of glucokinase and malic enzymes decreased with increasing BSG, irrespective of fermentation. BSG-SSF incorporation increased plasma triglyceride levels and decreased hepatic transaminase activities but did not affect hepatic key enzyme activity of beta-oxidation or lipogenesis. It also reduced antioxidant enzyme activity and lipid peroxidation. In conclusion, BSG negatively impacted growth performance, while BSG-SSF supported inclusion levels up to 20% without performance loss. Further, the 10% BSG -SSF diet outperformed the control diet.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 15
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