Menanteau-Ledouble Simon, Skov Jakob, Lukassen Mie Bech, Rolle-Kampczyk Ulrike, Haange Sven-Bastiaan, Dalsgaard Inger, von Bergen Martin, Nielsen Jeppe Lund
Department of Chemistry and Bioscience, Aalborg University, Fredrik Bajers Vej 7H, 9220, Aalborg East, Denmark.
Department of Veterinary and Animal Sciences, University of Copenhagen, Grønnegårdsvej 15, 1870, Frederiksberg C, Denmark.
Anim Microbiome. 2022 Nov 20;4(1):58. doi: 10.1186/s42523-022-00209-5.
Prebiotics are known to have a positive impact on fish health and growth rate, and β-glucans are among the most used prebiotics on the market. In this study, rainbow trout (Oncorhynchus mykiss) were treated with a β-1,3;1,6-glucan dietary supplement (at a dose of 0 g, 1 g, 10 g, and 50 g β-glucan per kg of feed). After 6 weeks, the effect of the β-glucan was evaluated by determining the changes in the microbiota and the blood serum metabolites in the fish. The impact of β-glucan on the immune system was evaluated through a challenge experiment with the bacterial fish pathogen Yersinia ruckeri.
The microbiota showed a significant change in terms of composition following β-glucan treatment, notably an increase in the relative abundance of members of the genus Aurantimicrobium, associated with a decreased abundance of the genera Carnobacterium and Deefgea. Furthermore, analysis of more than 200 metabolites revealed that the relative levels of 53 metabolites, in particular compounds related to phosphatidylcholines, were up- or downregulated in response to the dietary supplementation, this included the amino acid alanine that was significantly upregulated in the fish that had received the highest dose of β-glucan. Meanwhile, no strong effect could be detected on the resistance of the fish to the bacterial infection.
The present study illustrates the ability of β-glucans to modify the gut microbiota of fish, resulting in alteration of the metabolome and affecting fish health through the lipidome of rainbow trout.
已知益生元对鱼类健康和生长速率有积极影响,β-葡聚糖是市场上使用最广泛的益生元之一。在本研究中,虹鳟鱼(Oncorhynchus mykiss)被投喂β-1,3;1,6-葡聚糖膳食补充剂(剂量为每千克饲料含0克、1克、10克和50克β-葡聚糖)。6周后,通过测定鱼体内微生物群和血清代谢物的变化来评估β-葡聚糖的效果。通过用鱼类细菌性病原菌鲁氏耶尔森菌进行攻毒实验来评估β-葡聚糖对免疫系统的影响。
β-葡聚糖处理后,微生物群的组成发生了显著变化,特别是橙色微菌属成员的相对丰度增加,同时肉杆菌属和迪氏菌属的丰度降低。此外,对200多种代谢物的分析表明,53种代谢物的相对水平,特别是与磷脂酰胆碱相关的化合物,因膳食补充而被上调或下调,这包括在接受最高剂量β-葡聚糖的鱼中显著上调的氨基酸丙氨酸。同时,未检测到对鱼抵抗细菌感染能力的显著影响。
本研究表明β-葡聚糖能够改变鱼类肠道微生物群,从而导致代谢组的改变,并通过虹鳟鱼的脂质组影响鱼类健康。