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欧洲海鲈()肠道微生物群对不含鱼产品的替代日粮的生长性能和适应性

Growth Performance and Adaptability of European Sea Bass () Gut Microbiota to Alternative Diets Free of Fish Products.

作者信息

Pérez-Pascual David, Estellé Jordi, Dutto Gilbert, Rodde Charles, Bernardet Jean-François, Marchand Yann, Duchaud Eric, Przybyla Cyrille, Ghigo Jean-Marc

机构信息

Unité de Génétique des Biofilms, Institut Pasteur, UMR CNRS2001, 75015 Paris, France.

AgroParisTech, GABI, Université Paris-Saclay, INRAE, 78350 Jouy-en-Josas, France.

出版信息

Microorganisms. 2020 Sep 3;8(9):1346. doi: 10.3390/microorganisms8091346.

Abstract

Innovative fish diets made of terrestrial plants supplemented with sustainable protein sources free of fish-derived proteins could contribute to reducing the environmental impact of the farmed fish industry. However, such alternative diets may influence fish gut microbial community, health, and, ultimately, growth performance. Here, we developed five fish feed formulas composed of terrestrial plant-based nutrients, in which fish-derived proteins were substituted with sustainable protein sources, including insect larvae, cyanobacteria, yeast, or recycled processed poultry protein. We then analyzed the growth performance of European sea bass ( L.) and the evolution of gut microbiota of fish fed the five formulations. We showed that replacement of 15% protein of a vegetal formulation by insect or yeast proteins led to a significantly higher fish growth performance and feed intake when compared with the full vegetal formulation, with feed conversion ratio similar to a commercial diet. 16S rRNA gene sequencing monitoring of the sea bass gut microbial community showed a predominance of , , and phyla. The partial replacement of protein source in fish diets was not associated with significant differences on gut microbial richness. Overall, our study highlights the adaptability of European sea bass gut microbiota composition to changes in fish diet and identifies promising alternative protein sources for sustainable aquafeeds with terrestrial vegetal complements.

摘要

由陆生植物制成并添加可持续蛋白质来源(不含鱼源蛋白)的创新型鱼类饲料,有助于降低养殖鱼类产业对环境的影响。然而,这种替代饲料可能会影响鱼类肠道微生物群落、健康状况,并最终影响生长性能。在此,我们开发了五种由陆生植物性营养成分组成的鱼类饲料配方,其中鱼源蛋白被可持续蛋白质来源替代,包括昆虫幼虫、蓝细菌、酵母或回收加工的禽肉蛋白。然后,我们分析了欧洲海鲈(L.)的生长性能以及投喂这五种配方饲料的鱼类肠道微生物群的演变。我们发现,与全植物配方相比,用昆虫或酵母蛋白替代植物配方中15%的蛋白质,可使鱼类生长性能和采食量显著提高,饲料转化率与商业饲料相似。对海鲈肠道微生物群落进行的16S rRNA基因测序监测显示, 、 、 和 门占主导地位。鱼类饲料中蛋白质来源的部分替代与肠道微生物丰富度的显著差异无关。总体而言,我们的研究突出了欧洲海鲈肠道微生物群组成对鱼类饮食变化的适应性,并确定了用于含陆生植物补充成分的可持续水产饲料的有前景的替代蛋白质来源。

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