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昆虫替代鱼粉对大西洋鲑(Salmo salar)头肾白细胞体外细菌和病毒诱导基因反应的影响。

Effect of dietary replacement of fish meal with insect meal on in vitro bacterial and viral induced gene response in Atlantic salmon (Salmo salar) head kidney leukocytes.

机构信息

Institute of Marine Research, P.O. Box 1870 Nordnes, 5817, Bergen, Norway.

Institute of Marine Research, P.O. Box 1870 Nordnes, 5817, Bergen, Norway; Department of Agriculture, Food, Environment and Forestry, University of Florence, Via delle Cascine 5, 50144, Firenze, Italy.

出版信息

Fish Shellfish Immunol. 2019 Aug;91:223-232. doi: 10.1016/j.fsi.2019.05.042. Epub 2019 May 21.

Abstract

With the fast growth of today's aquaculture industry, the demand for aquafeeds is expanding dramatically. Insects, which are part of the natural diet of salmonids, could represent a sustainable ingredient for aquaculture feed. The aim of the current study was to test how a partial or total replacement of dietary fishmeal with insect meal affect gene responses involved in inflammation, the eicosanoid pathway and stress response in Atlantic salmon (Salmo salar L.) in isolated head kidney leukocytes after exposure to bacterial or viral mimic. Insect meal (IM) was produced from black soldier fly (BSF, Hermetia illucens) larvae. Seawater Atlantic salmon were fed three different diets for 8 weeks; a control diet (IM, protein from fishmeal and plant based ingredients (25:75) and lipid from fish oil and vegetable oil (33:66); and two insect-meal containing diets, IM and IM, where 66 and 100% of the fishmeal protein was replaced with IM, respectively. Leukocytes were isolated from the head kidney of fish (n = 6) from each of the three dietary groups. Isolated leukocytes were seeded into culture wells and added either a bacterial mimic (lipopolysaccharide, LPS) or a viral mimic (polyinosinic acid: polycytidylic acid, poly I: C) to induce an inflammatory response. Controls (Ctl) without LPS and poly I: C were included. The transcription of interleukins IL-1β, IL-8, IL-10 and TNF-α were elevated in LPS treated leukocytes isolated from salmon fed the three dietary groups (IM, IM and IM). The inflammatory-related gene expression in head kidney cells were, however, not affected by the pre-fed substitution of fish meal with IM in the diet of salmon. Gene transcriptions of PTGDS and PTGES were neither affected by LPS, poly I: C or the experimental diets fed prior to cell isolation, while salmon fed with IM showed a lower expression of LOX5. The gene expression of TLR22 and C/EBP-β were down-regulated by the LPS treatment in the cells isolated from salmon fed insect-based diets (IM and IM) compared to fish fed the IM. Similarly, the leukocytes challenged with LPS and isolated from fish fed with IM and IM down-regulated the expression of Mn-SOD, GPx1, HSP27 and HSP70 compared to salmon fed IM. In general, these results suggested that replacement of fishmeal with IM in the diets of Atlantic salmon had no effect on the transcription of pro-inflammatory genes in the head kidney cells. There was, however, an effect of dietary IM on the transcription of antioxidant and stress related genes in the leukocytes.

摘要

随着当今水产养殖业的快速发展,对水产饲料的需求大幅增长。昆虫作为鲑鱼天然饮食的一部分,可能是水产养殖饲料的可持续成分。本研究的目的是测试用昆虫粉部分或全部替代饲料中的鱼粉,对大西洋鲑(Salmo salar L.)头肾白细胞中参与炎症、类二十烷酸途径和应激反应的基因反应的影响,这些基因反应是在暴露于细菌或病毒模拟物后产生的。昆虫粉(IM)是由黑水虻(Hermetia illucens)幼虫制成的。大西洋鲑在海水中分别用三种不同的饲料喂养 8 周;一种对照饲料(IM,由鱼粉和植物成分(25:75)组成的蛋白质和鱼油和植物油(33:66)组成的脂质;两种昆虫粉饲料,IM 和 IM,其中分别用 IM 替代 66%和 100%的鱼粉蛋白。从三种饲料组的每一组的头肾中分离出白细胞(n=6)。将分离的白细胞接种到培养孔中,并加入细菌模拟物(脂多糖,LPS)或病毒模拟物(多聚肌苷酸:多聚胞苷酸,poly I:C)以诱导炎症反应。包括没有 LPS 和 poly I:C 的对照(Ctl)。从用三种饲料喂养的鲑鱼中分离出的 LPS 处理的白细胞中,白细胞介素 IL-1β、IL-8、IL-10 和 TNF-α的转录水平升高(IM、IM 和 IM)。然而,在鱼饲料中用 IM 替代鱼粉之前,头肾细胞的炎症相关基因表达不受影响。PTGDS 和 PTGES 的基因转录既不受 LPS、poly I:C 或细胞分离前喂饲的实验饲料的影响,而用 IM 喂养的鲑鱼则表现出较低的 LOX5 表达。与用 IM 喂养的鲑鱼相比,用 LPS 处理从用基于昆虫的饲料(IM 和 IM)喂养的鲑鱼中分离出的细胞中,TLR22 和 C/EBP-β的基因表达被下调。同样,用 LPS 刺激并从用 IM 和 IM 喂养的鲑鱼中分离出的白细胞下调了 Mn-SOD、GPx1、HSP27 和 HSP70 的表达。总的来说,这些结果表明,在大西洋鲑的饲料中用 IM 替代鱼粉对头肾细胞中促炎基因的转录没有影响。然而,饲料 IM 对白细胞中抗氧化和应激相关基因的转录有影响。

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