Department of Microbiology, Faculty of Sciences, CEI·MAR-International Campus of Excellence in Marine Science, University of Malaga, Málaga, Spain.
Department of Biology, Faculty of Marine and Environmental Sciences, CEI·MAR-International Campus of Excellence in Marine Science, University of Cádiz, Cádiz, Spain.
Sci Rep. 2021 Sep 21;11(1):18779. doi: 10.1038/s41598-021-98087-5.
The use of lysed microalgae in the diet of carnivorous fish can increase the bioavailability of proteins and bioactive compounds, such as unsaturated fatty acids or vitamins in the digestive tract. These are essential molecules for the proper physiological development of fish in aquaculture. However, some antinutritional components and other undesirable molecules can be released from an excess of microalgae supplied, compromising the integrity of the intestine. The inclusion of small amounts of hydrolized microalgae in the fish diet can be a good strategy to avoid negative effects, improving the availability of beneficial compounds. Nannochloropsis gaditana is an interesting microalgae as it contains nutraceuticals. Previous studies reported beneficial effects after its inclusion in the diet of Sparus aurata, a widely cultured species in Europe and in all Mediterranean countries. However, administration of raw microalgae can produce intestinal inflammation, increased intestinal permeability, bacterial translocation and disturbance of digestion and absorption processes. The aim of this study was to evaluate changes in the intestinal microbiota and barrier stability of S. aurata fed with low inclusion (5%) hydrolysed N. gaditana. Intestinal microbiota was analyzed using Illumina MiSeq technology and libraries were constructed using variable regions V3-V4 of 16S rDNA molecules. Analysis were based in the identification, quantification and comparison of sequences. The predictive intestinal microbial functionality was analyzed with PICRUSt software. The results determined that the intestinal microbiota bacterial composition and the predictive intestinal microbiota functionality did not change statistically after the inclusion of N. gaditana on the diet. The study of gene expression showed that genes involved in intestinal permeability and integrity were not altered in fish treated with the experimental diet. The potential functionality and bacterial taxonomic composition of the intestinal microbiota, and the expression of integrity and permeability genes in the intestine of the carnivorous fish S. aurata were not affected by the inclusion of hydrolysed 5% N. gaditana microalgae.
用裂解微藻作为肉食性鱼类的饲料可以提高蛋白质和生物活性化合物(如不饱和脂肪酸或维生素)在消化道中的生物利用度。这些对水产养殖中鱼类的正常生理发育至关重要。然而,过量供应微藻可能会释放出一些抗营养成分和其他不良分子,从而损害肠道的完整性。在鱼类饲料中添加少量水解微藻可以是一种避免负面影响的好策略,可以提高有益化合物的可用性。钝顶螺旋藻是一种有趣的微藻,因为它含有营养保健品。先前的研究报道,在其添加到欧洲和所有地中海国家广泛养殖的真鲷(Sparus aurata)的饮食中后,具有有益效果。然而,未经处理的微藻的给药可能会导致肠道炎症、增加肠道通透性、细菌易位以及消化和吸收过程的紊乱。本研究旨在评估低含量(5%)水解钝顶螺旋藻喂养的真鲷肠道微生物群和屏障稳定性的变化。使用 Illumina MiSeq 技术分析肠道微生物群,并使用 16S rDNA 分子的可变区 V3-V4 构建文库。分析基于鉴定、定量和比较序列。使用 PICRUSt 软件分析预测的肠道微生物功能。结果表明,在饮食中添加钝顶螺旋藻后,肠道微生物群的细菌组成和预测的肠道微生物功能没有统计学上的变化。基因表达研究表明,用实验饲料处理的鱼类肠道通透性和完整性相关基因没有改变。肉食性鱼类真鲷的肠道微生物群的潜在功能和细菌分类组成以及肠道完整性和通透性基因的表达不受水解 5%钝顶螺旋藻微藻添加的影响。