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长额拟糠虾水解物可提高欧洲海鲈幼鱼的生长性能,并在细胞研究中增加其骨骼肌肉的生长。

Calanus finmarchicus hydrolysate improves growth performance in feeding trial with European sea bass juveniles and increases skeletal muscle growth in cell studies.

机构信息

The Norwegian College of Fishery Science, UIT-The Arctic University of Norway, P.O. box 6050, 9037, Tromsø, Norway.

Calanus AS, P.O. box 808, 9258, Tromsø, Norway.

出版信息

Sci Rep. 2023 Jul 29;13(1):12295. doi: 10.1038/s41598-023-38970-5.

Abstract

The world will be dependent on the development of novel feed ingredients from renewable sources to ensure sustainable growth of the aquaculture industry. Zooplankton like Calanus finmarchicus are viable new raw material candidates, as they have optimal nutrient profiles for aquatic animals and may be sustainably harvested in large volumes. In this study, the aim was to investigate if a protein hydrolysate of C. finmarchicus was able to influence the growth performance of fish. The effect of dietary inclusion of hydrolysates was tested in a feeding trial with European sea bass (Dicentrarchus labrax) juveniles, benchmarking calanus hydrolysate (CH) against commercially available hydrolysates. The diet with CH inclusion yielded increased growth, with significantly higher body weight than hydrolysates of sardine and tuna fish at the end of the trial. The observed growth-promoting effects were further examined using an in vitro model with skeletal muscle cells from Atlantic salmon. Through bioactivity experiments with muscle cells grown in media containing CH, low-molecular fractions were found to have the greatest positive effect on proliferation, viability, and expression of muscle-specific genes. Characterization of the most potent fraction revealed an abundance of small peptides, along with amino acids and marine metabolites associated with increased muscle growth.

摘要

为确保水产养殖业的可持续增长,世界将依赖于从可再生资源中开发新型饲料成分。浮游动物如长额拟美鳚是可行的新型原料候选物,因为它们具有水生动物最佳的营养谱,并且可以大量可持续地收获。在这项研究中,目的是研究长额拟美鳚的蛋白质水解物是否能够影响鱼类的生长性能。通过用欧洲鲈鱼(Dicentrarchus labrax)幼鱼进行饲养试验,用鱼粉水解物(CH)与市售水解物进行对比,测试了水解物的膳食添加效果。在试验结束时,添加 CH 的饮食使生长增加,体重显著高于沙丁鱼和金枪鱼鱼的水解物。通过使用来自大西洋鲑鱼的骨骼肌细胞的体外模型进一步研究了观察到的促生长作用。通过用含有 CH 的培养基培养的肌肉细胞进行生物活性实验,发现低分子量部分对增殖、活力和肌肉特异性基因的表达具有最大的积极影响。对最有效部分的表征表明,含有与增加肌肉生长相关的小肽、氨基酸和海洋代谢物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f460/10387114/ab0ef2a7a096/41598_2023_38970_Fig1_HTML.jpg

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