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首页> 外文期刊>Environmental Pollution >High carbohydrate diet partially protects Nile tilapia (Oreochromis niloticus) from oxytetracycline-induced side effects
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High carbohydrate diet partially protects Nile tilapia (Oreochromis niloticus) from oxytetracycline-induced side effects

机译:高碳水化合物饮食可以部分保护尼罗罗非鱼(土生尼罗罗非鱼)免受土霉素引起的副作用

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Antibiotics used in global aquaculture production cause various side effects, which impair fish health. However, the use of dietary composition such as carbohydrate, which is one of the dominant components in fish diets to attenuate the side effects induced by antibiotics, remains unclear. We determined the ability of high carbohydrate diet to protect Nile tilapia (Oreochromis niloticus) from oxytetracycline-induced side effects. Triplicate groups of thirty O. niloticus (9.50 +/- 0.08 g) were fed on medium carbohydrate (MC; 335 g/kg) and high carbohydrate (HC; 455 g/kg) diets without and with 2.00 g/kg diet of oxytetracycline (80 mg/kg body weight/day) hereafter, MCO and HCO for 35 days. Thereafter, we assessed growth performance, hepatic nutrients composition and metabolism, microbiota abundance, immunity, oxidative and cellular stress, hepatotoxicity, lipid peroxidation and apoptosis. To understand the possible mechanism of carbohydrate protection on oxytetracycline, we assessed the binding effects and efficiencies of mixtures of medium and high starch with oxytetracycline as well as the MCO and HCO diets. The O. niloticus fed on the MCO and HCO diets had lower growth rate, nutrients utilization and survival rate than those fed on the MC and HC diets, respectively. Dietary HCO increased hepatosomatic index and hepatic protein content of O. niloticus than MCO diet. The O niloticus fed on the HCO diet had lower mRNA expression of genes related to protein, glycogen and lipid metabolism compared to those fed on the MCO diet. Feeding O. niloticus on the HCO diet increased innate immunity and reduced pathogenic bacteria, pro-inflammation, hepatotoxicity, cellular stress and apoptosis than the MCO diet. The high starch with oxytetracycline and HCO diet had higher-oxytetracycline binding effects and efficiencies than the medium starch with oxytetracyline and MCO diet, respectively. Our study demonstrates that, high carbohydrate partially protects O. niloticus from oxytetracycline-induced side effects by binding the antibiotic. Incorporating high carbohydrate in diet formulation for omnivorous fish species alleviates some of the side effects caused by antibiotics. (C) 2019 Elsevier Ltd. All rights reserved.
机译:全球水产养殖生产中使用的抗生素会引起各种副作用,从而损害鱼类健康。然而,仍不清楚使用饮食组合物例如碳水化合物作为鱼类饮食中的主要成分之一,以减轻由抗生素引起的副作用。我们确定了高碳水化合物饮食能够保护尼罗罗非鱼(土生尼罗罗非鱼)免受土霉素引起的副作用的能力。一式三份的三十只尼罗罗非鱼(9.50 +/- 0.08 g)分别饲喂中性碳水化合物(MC; 335 g / kg)和高碳水化合物(HC; 455 g / kg)日粮,不添加和添加2.00 g / kg土霉素(80毫克/公斤体重/天)之后,将MCO和HCO放置35天。此后,我们评估了生长性能,肝营养成分和代谢,微生物群丰度,免疫力,氧化和细胞应激,肝毒性,脂质过氧化和细胞凋亡。为了了解碳水化合物对土霉素的保护作用的可能机制,我们评估了中,高淀粉混合物与土霉素以及MCO和HCO日粮的结合效果和效率。饲喂MCO和HCO日粮的罗非鱼的生长速率,养分利用率和存活率均低于饲喂MC和HC日粮的罗非鱼。日粮HCO比MCO日粮增加了罗非鱼的肝体指数和肝蛋白含量。与喂食MCO的动物相比,喂食HCO的Oililoticus的蛋白质,糖原和脂质代谢相关基因的mRNA表达较低。与MCO饮食相比,以HCO饮食喂养O. niloticus可提高先天免疫力并减少病原细菌,促炎,肝毒性,细胞应激和细胞凋亡。高含量土霉素和HCO饮食的淀粉分别具有比土霉素和MCO饮食高的结合效果。我们的研究表明,高碳水化合物可通过结合抗生素部分保护尼罗罗非鱼免受土霉素诱导的副作用。在杂食性鱼类的饮食配方中添加高碳水化合物可减轻抗生素引起的某些副作用。 (C)2019 Elsevier Ltd.保留所有权利。

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