Gupta Shruti, Lokesh Jep, Abdelhafiz Yousri, Siriyappagouder Prabhugouda, Pierre Ronan, Sørensen Mette, Fernandes Jorge M O, Kiron Viswanath
Faculty of Biosciences and Aquaculture, Nord University, Bodø, Norway.
CEVA (Centre d'Etude et de Valorisation des Algues), Pleubian, France.
Front Microbiol. 2019 Sep 13;10:2037. doi: 10.3389/fmicb.2019.02037. eCollection 2019.
Prebiotics are substrates intended to sculpt gut microbial communities as they are selectively utilized by the microorganisms to exert beneficial health effects on hosts. Macroalga-derived oligosaccharides are candidate prebiotics, and herein, we determined the effects of sp.-derived alginate oligosaccharide (AlgOS) on the distal intestinal microbiota of Atlantic salmon (). Using a high-throughput 16S rRNA gene amplicon sequencing technique, we investigated the microbiota harbored in the intestinal content and mucus of the fish offered feeds supplemented with 0.5 and 2.5% AlgOS. We found that the prebiotic shifts the intestinal microbiota profile; alpha diversity was significantly reduced with 2.5% AlgOS while with 0.5% AlgOS the alteration occurred without impacting the bacterial diversity. Beta diversity analysis indicated the significant differences between control and prebiotic-fed groups. The low supplementation level of AlgOS facilitated the dominance of Proteobacteria (including , , ), and Spirochaetes () in the content or mucus of the fish, and few of these bacteria (, ) have genes associated with butyrate production. The results indicate that the low inclusion of AlgOS can plausibly induce a prebiotic effect on the distal intestinal microbiota of Atlantic salmon. These findings can generate further interest in the potential of macroalgae-derived oligosaccharides for food and feed applications.
益生元是一类底物,当它们被微生物选择性利用时,旨在塑造肠道微生物群落,从而对宿主产生有益的健康影响。大型藻类衍生的低聚糖是益生元的候选物,在此,我们确定了特定物种衍生的藻酸盐低聚糖(AlgOS)对大西洋鲑鱼远端肠道微生物群的影响。使用高通量16S rRNA基因扩增子测序技术,我们研究了投喂添加0.5%和2.5% AlgOS饲料的鱼的肠道内容物和黏液中所包含的微生物群。我们发现,这种益生元改变了肠道微生物群的分布;2.5% AlgOS组的α多样性显著降低,而0.5% AlgOS组发生了改变,但未影响细菌多样性。β多样性分析表明,对照组和投喂益生元组之间存在显著差异。低水平添加AlgOS促进了变形菌门(包括 、 、 )和螺旋体门( )在鱼的肠道内容物或黏液中的优势地位,这些细菌中很少有( 、 )具有与丁酸盐产生相关的基因。结果表明,低剂量添加AlgOS可能会对大西洋鲑鱼的远端肠道微生物群产生益生元效应。这些发现可能会引发人们对大型藻类衍生的低聚糖在食品和饲料应用方面潜力的进一步关注。