Enhancing Growth and Intestinal Health in Triploid Rainbow Trout Fed a Low-Fish-Meal Diet through Supplementation with Clostridium butyricum

Fishes Pub Date : 2024-05-14 DOI:10.3390/fishes9050178
Chang’an Wang, Fangyuan Li, Di Wang, Shaoxia Lu, Shicheng Han, Wei Gu, Haibo Jiang, Zhuang Li, Hongbai Liu
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Abstract

This study evaluates the effects of dietary Clostridium butyricum on growth performance and intestinal health in triploid rainbow trout (Oncorhynchus mykiss). Administered in a 12-week trial, five isonitrogenous and isolipidic feeds contained different C. butyricum levels [G1 (0), G2 (1.6 × 106 CFU/g), G3 (1.2 × 107 CFU/g), G4 (1.1 × 108 CFU/g), and G5 (1.3 × 109 CFU/g)]. Significant enhancements in growth performance, including improved feed conversion ratios and specific growth rates in the G4 group, were indicative of enhanced nutrient utilization, corroborated by optimal digestive enzyme activity levels. Antioxidant capabilities were also enhanced in the G4 group, indicated by increased serum superoxide dismutase and catalase activities, along with a significant decrease in malondialdehyde levels. Gut microbiota analysis indicated a probiotic concentration-dependent modulation of microbial communities, with a marked enrichment in beneficial bacterial phyla like Firmicutes in the G4 group. This microbial shift correlated with significant downregulations in immune-related gene expressions, including interleukins (IL-1β, IL-8), NF-κB, MyD88, and TNF-α, highlighting an activated immune response. Correspondingly, serum lysozyme and immunoglobulin M contents were significantly elevated in the G4 group. Challenge tests with Aeromonas salmonicida exhibited the higher disease resistance of fish fed the G4 diet. In conclusion, the study shows the potential of dietary C. butyricum, especially at 1.1 × 108 CFU/g, in enhancing the growth, health, and disease resistance of triploid rainbow trout through modulating gut microflora and stimulating immune responses.
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通过补充丁酸梭菌促进以低鱼粉为食的三倍体虹鳟的生长和肠道健康
本研究评估了丁酸梭菌对三倍体虹鳟(Oncorhynchus mykiss)生长性能和肠道健康的影响。在为期 12 周的试验中,五种等氮和离脂饲料含有不同水平的丁酸梭菌[G1(0)、G2(1.6 × 106 CFU/g)、G3(1.2 × 107 CFU/g)、G4(1.1 × 108 CFU/g)和 G5(1.3 × 109 CFU/g)]。G4 组的生长性能显著提高,包括饲料转化率和特定生长率提高,这表明养分利用率提高,消化酶活性达到最佳水平也证实了这一点。G4 组的抗氧化能力也有所提高,这表现在血清超氧化物歧化酶和过氧化氢酶活性提高,丙二醛水平显著降低。肠道微生物群分析表明,益生菌浓度对微生物群落有调节作用,在 G4 组中,有益菌群(如固氮菌群)明显富集。这种微生物的变化与免疫相关基因表达的显著下调有关,包括白细胞介素(IL-1β、IL-8)、NF-κB、MyD88 和 TNF-α,凸显了免疫反应的激活。相应地,G4 组的血清溶菌酶和免疫球蛋白 M 含量明显升高。沙门氏菌(Aeromonas salmonicida)挑战试验表明,饲喂 G4 日粮的鱼类抗病能力更强。总之,该研究表明,膳食丁酸杆菌(尤其是 1.1 × 108 CFU/g)可通过调节肠道微生物菌群和刺激免疫反应,提高三倍体虹鳟的生长、健康和抗病能力。
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