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首页> 外文期刊>Fish & Shellfish Immunology >Effects of dietary multi-strain probiotics supplementation in a low fishmeal diet on growth performance, nutrient utilization, proximate composition, immune parameters, and gut microbiota of juvenile olive flounder (Paralichthys olivaceus)
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Effects of dietary multi-strain probiotics supplementation in a low fishmeal diet on growth performance, nutrient utilization, proximate composition, immune parameters, and gut microbiota of juvenile olive flounder (Paralichthys olivaceus)

机译:膳食多株益生菌补充在低鱼粉饮食中的生长性能,营养利用,近似组成,免疫参数和肠道微生物菌(Paralichthys Olivaceus)

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摘要

A 12-week feeding trial was conducted to evaluate the effects of multi-strain probiotics (MSP) in a low fish meal (FM) diet on overall performance, gut microbiota, selected non-specific immune responses and antioxidant enzyme activities of olive flounder (Paralichthys olivaceus) juveniles. A total of 225 healthy olive flounders (initial mean body weight, 13.5 +/- 0.01 g) were randomly separated into 3 groups of 75 fish, each group having three replicates of 25 fish; first group was fed with a FM-based control diet (Con), 2nd group was fed with a low-FM diet containing a blend of plant and animal protein meals replacing 30% of the FM protein (FM30), and 3rd group was fed with the FM30 diet supplemented with 10(8)-10 (9) CFU kg(-1) of the MSP (Pro). With the exception of lipid retention, which was significantly lower in fish fed the FM30 diet compared to the other two treatments, no other statistically significant differences were recorded with respect to any of the other growth and nutrient utilization parameters. Myeloperoxidase and lysozyme activities of fish fed the Pro diet were much higher and significantly different than those of fish fed the FM30 diet. Glutathione peroxidase activity was significantly higher in Pro- than in Con-fed fish, which, in turn, was significantly higher than FM30-fed fish. Expression of immune-related genes including IL-1 beta, IL-6, and TNF-alpha was markedly upregulated in livers of the fish fed Pro diet compared to those fed the Con and FM30 diets. Furthermore, supplementation of MSP in FM30 diet enriched the Lactobacil/os abundance in the fish gut as well as predictive gene functions in relation to lipid and carbohydrate metabolisms. These data suggested that the MSP could reduce the potential adverse effects of the lowFM diet and might be used as a healthy immunostimulant for olive flounder.
机译:进行了12周的饲养试验,以评估多重菌株益生菌(MSP)在低鱼粉(FM)饮食中对整体性能,肠道微生物,选定的非特异性免疫应答和抗氧化酶的抗氧化酶活性的影响Paralichthys Olivaceus)少年。总共225个健康的橄榄蝇(初始平均体重,13.5 +/- 0.01g)随机分成3组75条鱼,每组三个重复25条鱼;第一个组用基于FM的对照饮食(CON)喂养,用含有植物和动物蛋白膳食的混合物的低FM饮食加入2ND组,替代30%的FM蛋白(FM30),第3组被喂养使用MSP(PRO)的10(8)-10(9)CFU kg(-1)的FM30饮食。除了脂质保留外,与其他两种治疗相比,在FM30饮食中喂食FM30饮食的脂质保留情况明显较低,对于任何其他生长和营养利用参数,没有其他统计学上显着的差异。喂食膳食喂食的鱼的髓氧化酶和溶菌酶活性远高于FM30饮食的鱼类。 Pro-谷胱甘肽过氧化物酶活性显着高于Con-Fed鱼,又依次高于FM30喂食。与喂食CON和FM30饮食的那些相比,在喂食喂食的肝脏肝脏中显着上调免疫相关基因的表达明显上调。此外,在FM30饮食中补充MSP富集了鱼肠中的乳酸杆菌/ OS丰度以及与脂质和碳水化合物代谢相关的预测基因功能。这些数据表明,MSP可以降低低温饮食的潜在不利影响,并且可以用作橄榄鼠的健康免疫刺激剂。

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