The response of gut and fecal bacterial communities of the European sea bass (Dicentrachus labrax) fed a low fish-plant meal and yeast protein supplementation diet

A. Meziti, E. Nikouli, Leonidas Papaharisis, K. Kormas, Elena Mente
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Abstract

As aquaculture is nowadays the major fish-food production sector, continuous research is undergoing for aquafeeds that could replace conventional fishmeal in order to enhance its environmental and economic sustainability. Fish gut microorganisms might be involved in nutrient assimilation and thus they are crucial for their hosts’ well-being. In this study the bacterial diversity was investigated by16S rRNA gene metabarcoding in order to investigate changes in midgut (M) and feces (F) microbiota of sea bass Dicentrachus labrax fed with conventional (C) and innovative-low fish meal diet (I), aiming at discovering microbiota that could be associated with the enhancement of host's health and productivity. Our results indicated that Proteobacteria (Pseudomonadota) prevailed in all samples followed by Firmicutes (Bacillota) or Bacteroidota (mostly in feces), while fecal communities were richer. Taxonomic distributions at the operational taxonomic unit level in midgut samples revealed differentially abundant fermentative species that prevailed in individuals fed with the innovative diet. Especially Staphylococcus was more abundant in MI samples implying enhancement from ingredients present only in the innovative diet and implying that this feed shapes rather favorable microbiota, which could support the digestion and good growth performance in aquaculture.
欧洲鲈鱼(Dicentrachus labrax)肠道和粪便细菌群落对低鱼粉和酵母蛋白补充饲料的反应
由于水产养殖是当今主要的鱼类食品生产部门,人们正在不断研究可替代传统鱼粉的水产饲料,以提高其环境和经济可持续性。鱼类肠道微生物可能参与营养物质的同化,因此对宿主的健康至关重要。本研究通过 16S rRNA 基因代谢编码对细菌多样性进行了调查,以研究用传统饲料(C)和创新型低鱼粉饲料(I)喂养海鲈(Dicentrachus labrax)的中肠(M)和粪便(F)微生物区系的变化,旨在发现可能与提高宿主健康和生产率有关的微生物区系。我们的研究结果表明,所有样本中均以变形菌(假单胞菌)为主,其次是固着菌(芽孢杆菌)或类杆菌(主要在粪便中),而粪便群落更为丰富。中肠样本中操作分类单元水平的分类分布显示,在喂食创新饲料的个体中,发酵菌种的数量不同。尤其是葡萄球菌在中肠样本中含量更多,这意味着创新日粮中的成分会提高饲料的营养价值,同时也意味着这种饲料能形成相当有利的微生物群,从而支持水产养殖中的消化和良好的生长性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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