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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Effects of different dietary levels of fish protein hydrolysates on growth, digestive enzymes, gut microbiota, and resistance to Vibrio anguillarum in European sea bass (Dicentrarchus labrax) larvae
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Effects of different dietary levels of fish protein hydrolysates on growth, digestive enzymes, gut microbiota, and resistance to Vibrio anguillarum in European sea bass (Dicentrarchus labrax) larvae

机译:日粮中不同水平的鱼蛋白水解物对欧洲鲈鱼(Dicentrarchus labrax)幼虫生长,消化酶,肠道菌群和鳗弧菌抗性的影响

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摘要

Two fish protein hydrolysates (FPH) were incorporated into four diets prepared for start-feeding sea bass larvae, at two different levels (10% and 19% of total ingredients): a commercial FPH, CPSP, in which the molecular mass of the main fraction of soluble peptides (51%) was between 500-2500 Da, and an experimental FPH obtained by acidic silage of sardine offal, SH, with a main portion of soluble peptides (54%) ranging from 200 to 500 Da. The diet with 10% of the commercial FPH gave the best results in terms of growth, survival and intestinal development, as evaluated by the early activity of digestive enzymes in the brush border membrane (alkaline phosphatase and aminopeptidase N). This was related to the low level of Vibrio spp. counted in the larvae of group C10. The high dose of FPH, especially in the experimental preparation rich in short peptides, seemed to favour the dominance of Vibrio sp. TYH3, which behaved opportunistically. The effect of the experimental FPH was ambiguous, since early larvae challenged with Vibrio anguillarum were more resistant to the pathogen, especially at high FPH dose (group S19). This might be due either to direct antagonism between V anguillarum and Vibrio sp. TYH3, or to the stimulation of the immune response in the larvae. These results indicate that different molecular weight fractions and concentrations of feed-soluble peptides may affect the growth performance and immunological status of sea bass larvae. Consequently, a low dose of commercial FPH seems advisable, both for larval development and for the bacterial environment, although further research is required to determine and characterize peptide fractions that may have a beneficial effect oil growth and immune response, and to determine their optimal inclusion levels in diets for sea bass larvae. (c) 2007 Elsevier Inc. All rights reserved.
机译:将两种鱼蛋白水解物(FPH)掺入四种开始饲喂鲈鱼幼虫的饮食中,两种饮食水平不同(占总成分的10%和19%):商业FPH,CPSP,其中主要分子质量可溶肽的一部分(51%)在500-2500Da之间,并且通过酸性沙丁鱼内脏青贮饲料SH获得的实验性FPH,可溶肽的主要部分(54%)为200-500Da。通过刷状缘膜中的消化酶(碱性磷酸酶和氨肽酶N)的早期活性评估,含有10%商业FPH的饮食在生长,存活和肠道发育方面提供了最佳结果。这与弧菌属菌种水平低有关。计数在C10组的幼虫中。高剂量的FPH,尤其是在富含短肽的实验制剂中,似乎有利于弧菌的优势。 TYH3,表现为机会主义。实验性FPH的作用是模棱两可的,因为用鳗弧菌攻击的早期幼虫对病原体的抵抗力更高,特别是在高FPH剂量下(S19组)。这可能是由于鳗弧菌和弧菌之间的直接拮抗作用。 TYH3,或刺激幼虫的免疫反应。这些结果表明,不同分子量分数和饲料可溶性肽浓度可能会影响鲈鱼幼虫的生长性能和免疫状态。因此,对于幼虫发育和细菌环境,建议使用低剂量的商业FPH,尽管需要进一步的研究来确定和表征可能对油脂生长和免疫反应产生有益作用的肽级分,并确定其最佳包涵体鲈鱼幼虫饮食中的水平。 (c)2007 Elsevier Inc.保留所有权利。

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