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膳食补充微藻可通过调节免疫状态和肠道微生物群来提高斑马鱼的生长性能。

Dietary supplementation with microalgae enhances the zebrafish growth performance by modulating immune status and gut microbiota.

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, People's Republic of China.

Department of Applied Biology, East China University of Science and Technology, Shanghai, 200237, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2022 Jan;106(2):773-788. doi: 10.1007/s00253-021-11751-8. Epub 2022 Jan 6.

Abstract

Microalgae are known to be abundant in various habitats around the globe, and are rich in high value-added products such as fatty acids, polysaccharides, proteins, and pigments. Microalgae can be exploited as the basic and primitive food source of aquatic animals. We investigated the effects of dietary supplementation with Schizochytrium sp., Spirulina platensis, Chloroella sorokiniana, Chromochloris zofingiensis, and Dunaliella salina on the growth performance, immune status, and intestinal health of zebrafish (Danio rerio). The results showed that these five microalgae diets could improve the feed conversion rate (FCR), especially the D. salina (FCR = 1.02%) and Schizochytrium sp. (FCR = 1.20%) additive groups. Moreover, the microalgae diets decreased the gene expression level of the pro-inflammatory cytokines IL6, IL8, and IL1β at a normal physiological state of the intestine, especially the Schizochytrium sp., S. platensis, and D. salina dietary groups. The expression of neutrophil marker b7r was increased in the C. sorokiniana diet group; after, the zebrafish were challenged with Vibrio anguillarum, improving the ability to resist this disease. We also found that microalgae diets could regulate the gut microbiota of fish as well as increase the relative abundance of probiotics. To further explain, Cetobacterium was significantly enriched in the S. platensis additive group and Stenotrophomonas was higher in the Schizochytrium sp. additive group than in the other groups. Conversely, harmful bacteria Mycoplasma reduced in all tested microalgae diet groups. Our study indicated that these microalgae could serve as a food source supplement and benefit the health of fish. KEY POINTS: • Microalgae diets enhanced the growth performance of zebrafish. • Microalgae diets attenuated the intestinal inflammatory responses of zebrafish. • Microalgae diets modulated the gut microbiota composition to improve fish health.

摘要

微藻在全球各种生境中都很丰富,富含高附加值产品,如脂肪酸、多糖、蛋白质和色素。微藻可以作为水生动物的基本原始食物来源。我们研究了饲料中添加裂殖壶菌、螺旋藻、绿球藻、Chlorochloris zofingiensis 和盐藻对斑马鱼(Danio rerio)生长性能、免疫状态和肠道健康的影响。结果表明,这五种微藻饲料可以提高饲料转化率(FCR),特别是盐藻(FCR=1.02%)和裂殖壶菌(FCR=1.20%)添加组。此外,微藻饲料在肠道正常生理状态下降低了促炎细胞因子 IL6、IL8 和 IL1β的基因表达水平,特别是裂殖壶菌、螺旋藻和盐藻饲料组。绿球藻饲料组中性粒细胞标记物 b7r 的表达增加;之后,斑马鱼受到鳗弧菌的挑战,提高了抵抗这种疾病的能力。我们还发现,微藻饲料可以调节鱼类的肠道微生物群,增加益生菌的相对丰度。更具体地说,在添加螺旋藻的组中,Cetobacterium 明显富集,在添加裂殖壶菌的组中,Stenotrophomonas 的丰度高于其他组。相反,所有测试的微藻饲料组中的有害细菌支原体减少。我们的研究表明,这些微藻可以作为一种食物来源补充,有益于鱼类的健康。 关键点: • 微藻饲料增强了斑马鱼的生长性能。 • 微藻饲料减轻了斑马鱼的肠道炎症反应。 • 微藻饲料调节了肠道微生物群落组成,以改善鱼类健康。

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