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用低营养成分创新混合物喂养的金头鲷的生长性能

Growth Performance of Gilthead Sea Bream () Fed Low Fish Meal Diets With an Innovative Mixture of Low Trophic Ingredients.

作者信息

Tampou Anna, Kousoulaki Katerina, Vasilaki Antigoni, Vlahos Nikolaos, Nikouli Eleni, Panteli Nikolas, Feidantsis Konstantinos, Kormas Konstantinos, Andreopoulou Styliani, Karapanagiotidis Ioannis T, Berillis Panagiotis, Nengas Ioannis, Antonopoulou Efthimia, Mente Eleni

机构信息

Department of Ichthyology and Aquatic Environment, School of Agricultural Sciences, University of Thessaly GR-38446, Volos, Greece.

Department of Nutrition and Feed Technology, Nofima AS, Kjerreidviken 16, Fyllingsdalen N-5141, Norway.

出版信息

Aquac Nutr. 2025 Jul 26;2025:7504207. doi: 10.1155/anu/7504207. eCollection 2025.

Abstract

This study examined the growth performance, cellular signaling, and gut microbiome of gilthead sea bream () fed four diets using low-trophic-level ingredients for 65 days. Control (C) diet contained fish meal (FM) as the main protein source and fish oil (FO) as a lipid source. In the 0%FMFO diet all FM and FO present in the C diet was replaced with a combination of microalgae, insect meal (IM), and tunicate meal (TM). IM and TM diets were formulated to contain 20% of the novel protein ingredients, replacing 68.09% and 45.91% of FM in diet C, respectively. Compared to diet C, feed utilization and growth performance of . fed 0%FMFO diet was not different ( > 0.05) and TM diet had a significantly lower (  < 0.05) specific growth rate (SGR), higher (  < 0.05) feed conversion ratio (FCR) and decreased fillet lipid content ( < 0.05). In liver and foregut of fish fed TM diet the activity of lactate dehydrogenase (L-LDH) significant increased ( < 0.05), indicating higher glycolytic potential, whereas the decrease in Hsp70, Hsp90, AMPK, and p38 MAPK may indicate reduced stress response. Fish midgut microbiome included beneficial taxa for the host. The results suggested that the mixture of algae, insect, and TM could replace all FM and FO in gilthead sea bream diets without affecting the fish growth performance.

摘要

本研究对金头鲷投喂四种使用低营养级成分的饲料65天,检测其生长性能、细胞信号传导和肠道微生物群。对照(C)组饲料以鱼粉(FM)作为主要蛋白质来源,鱼油(FO)作为脂质来源。在0%FMFO饲料中,C组饲料中所有的FM和FO均被微藻、昆虫粉(IM)和海鞘粉(TM)的组合替代。IM组和TM组饲料配方中含有20%的新型蛋白质成分,分别替代了C组饲料中68.09%和45.91%的FM。与C组饲料相比,投喂0%FMFO饲料的金头鲷的饲料利用率和生长性能无差异(P>0.05),而TM组饲料的特定生长率(SGR)显著较低(P<0.05),饲料转化率(FCR)较高(P<0.05),鱼片脂质含量降低(P<0.05)。在投喂TM组饲料的鱼的肝脏和前肠中,乳酸脱氢酶(L-LDH)的活性显著增加(P<0.05),表明糖酵解潜力较高,而热休克蛋白70(Hsp70)、热休克蛋白90(Hsp90)、腺苷酸活化蛋白激酶(AMPK)和p38丝裂原活化蛋白激酶(p38 MAPK)的降低可能表明应激反应减弱。鱼的中肠微生物群包括对宿主有益的分类群。结果表明,藻类、昆虫和TM的混合物可以替代金头鲷饲料中的所有FM和FO,而不影响鱼的生长性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8000/12317821/2268f12e22b0/ANU2025-7504207.001.jpg

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