Gonçalves A T, Gallardo-Escárate C
Laboratory of Biotechnology and Aquatic Genomics, Interdisciplinary Center for Aquaculture Research (INCAR), Universidad de Concepción, Concepción, Chile.
J Appl Microbiol. 2017 May;122(5):1333-1347. doi: 10.1111/jam.13437. Epub 2017 Apr 4.
This study used high-throughput sequencing to evaluate the intestinal microbiome dynamics in rainbow trout (Oncorhynchus mykiss) fed commercial diets supplemented with either pre- or probiotics (0·6% mannan-oligosaccharides and 0·5% Saccharomyces cerevisiae respectively) or the mixture of both.
A total of 57 fish whole intestinal mucosa and contents bacterial communities were characterized by high-throughput sequencing and analysis of the V3-V4 region of the 16S rRNA gene, as well as the relationship between plasma biochemical health indicators and microbiome diversity. This was performed at 7, 14 and 30 days after start feeding functional diets, and microbiome diversity increased when fish fed functional diets after 7 days and it was positively correlated with plasma cholesterol levels. Dominant phyla were, in descending order, Proteobacteria, Firmicutes, Actinobacteria, Acidobacteria, Bacteroidetes and Fusobacteria. However, functional diets reduced the abundance of Gammaproteobacteria to favour abundances of organisms from Firmicutes and Fusobacteria, two phyla with members that confer beneficial effects. A dynamic shift of the microbiome composition was observed with changes after 7 days of feeding and the modulation by functional diets tend to cluster the corresponding groups apart from CTRL group. The core microbiome showed an overall stability with functional diets, except genus such as Escherichia-Shigella that suffered severe reductions on their abundances when feeding any of the functional diets.
Functional diets based on pre- or probiotics dynamically modulate intestinal microbiota of juvenile trout engaging taxonomical abundance shifts that might impact fish physiological performance.
This study shows for the first time the microbiome modulation dynamics by functional diets based on mannan-oligosaccharides and S. cerevisiae and their synergy using culture independent high-throughput sequencing technology, revealing the complexity behind the dietary modulation with functional feeds in aquatic organisms.
本研究采用高通量测序技术,评估投喂添加益生元或益生菌(分别为0.6%的甘露寡糖和0.5%的酿酒酵母)或两者混合物的商业饲料的虹鳟(Oncorhynchus mykiss)肠道微生物群动态变化。
通过高通量测序以及对16S rRNA基因V3 - V4区域的分析,对总共57条鱼的全肠黏膜和内容物细菌群落进行了表征,并分析了血浆生化健康指标与微生物群多样性之间的关系。这一过程在开始投喂功能性饲料后的第7、14和30天进行,投喂功能性饲料7天后,鱼类的微生物群多样性增加,且与血浆胆固醇水平呈正相关。优势菌门按丰度降序排列依次为变形菌门、厚壁菌门、放线菌门、酸杆菌门、拟杆菌门和梭杆菌门。然而,功能性饲料降低了γ - 变形菌纲的丰度,有利于厚壁菌门和梭杆菌门生物的丰度,这两个菌门的成员具有有益作用。观察到微生物群组成的动态变化,投喂7天后出现变化,功能性饲料的调节作用使相应组与对照组聚类分开。核心微生物群在功能性饲料作用下总体保持稳定,但像埃希氏菌属 - 志贺氏菌属这样的菌属,在投喂任何一种功能性饲料时其丰度都会大幅降低。
基于益生元或益生菌的功能性饲料可动态调节幼龄虹鳟的肠道微生物群,导致分类学丰度变化,这可能会影响鱼类的生理性能。
本研究首次使用不依赖培养的高通量测序技术,展示了基于甘露寡糖和酿酒酵母的功能性饲料对微生物群的调节动态及其协同作用,揭示了水产动物功能性饲料饮食调节背后的复杂性。