以植物蛋白为主的低鱼粉饲料中添加精氨酸对日本沼虾生长、摄食、抗氧化、免疫和肠道结构的影响
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S 963.73+1

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湖州市自然科学基金 (2019YZ04);国家自然科学基金 (31972800)


Effects of arginine supplementation in plant-protein-based low-fishmeal feed on growth, feeding, antioxidant, immune and intestinal structure of Macrobrachium nipponense
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    摘要:

    目的 探讨以植物蛋白为主的低鱼粉饲料中补充精氨酸(Arg)对日本沼虾生长、摄食、抗氧化、免疫和肠道结构的影响。方法 实验在低鱼粉、高植物蛋白饲料中分别补充0% (实测值为0.80%)、0.60% (1.33%)、1.20% (1.85%)、1.80% (2.24%)和2.40% (2.65%)的精氨酸,形成5组等氮等能的饲料,养殖周期为8周。结果 随着精氨酸水平的升高,日本沼虾增重率呈先上升后下降趋势,且在1.85% Arg组达到最高,饲料系数呈相反趋势,1.85% Arg组显著低于0.80%与2.65% Arg组;各组摄食率与存活率无显著差异;1.85% Arg组谷胱甘肽过氧化物酶 (GSH-Px)活性和谷胱甘肽 (GSH)含量达到最高且显著高于0.80% Arg组,同时1.85% Arg组超氧化物歧化酶 (SOD)活性也达到最高,但该组丙二醛 (MDA)含量显著低于其余各组;1.85% Arg组谷草转氨酶 (AST)活性显著低于0.80%与1.33% Arg组,同时1.33%与1.85% Arg组谷丙转氨酶 (ALT)活性显著低于0.80%、2.24%与2.65% Arg组;1.33% Arg组雷帕霉素靶蛋白 基因(tor)和神经肽基因 (npy)相对表达量最高,且显著高于其余组,1.85% Arg组核糖体蛋白S6激酶基因 (s6k)表达量最高且显著高于2.24%与2.65% Arg组,瘦素基因(leptin)相对表达量先下降后上升,且0.80% Arg组相对表达量最高;1.85%与2.24% Arg组肠道微绒毛完整且排列整齐。结论 在以植物蛋白为主的日本沼虾低鱼粉饲料中,精氨酸水平为1.85%时,可以提高其生长性能、抗氧化能力及肝胰腺中蛋白质合成和食欲相关基因的表达,改善日本沼虾肠道结构。基于增重率进行二次曲线回归模型分析,在以植物蛋白为主的日本沼虾低鱼粉饲料中精氨酸的适宜水平为1.83%。

    Abstract:

    Arginine (Arg) plays a vital role in regulating of body growth, antioxidant defense, and protein synthesis. The study aimed to evaluate the effects of plant-protein-based low-fishmeal feed supplemented with arginine on feeding, antioxidant capacity, immunity and intestinal morphology in Macrobrachium nipponense. Five isonitrogenous and isoenergetic dietary groups were formulated to contain varying levels of dietary arginine (0%, 0.60%, 1.20%, 1.80% and 2.40%, respectively) under low fish meal content and high plant protein inclusion. The measured arginine concentrations in diets were 0.80% (0.80% Arg), 1.33% (1.33% Arg), 1.85% (1.85% Arg), 2.24% (2.24% Arg) and 2.65% (2.65% Arg), respectively. The feeding trial lasted for 8 weeks. The results showed that the weight gain initially increased with higher dietary arginine levels before declining. The peak values were observed in the group receiving 1.85% Arg, which significantly surpassed those recorded for the groups receiving diets with 0.80%, 1.33%, or 2.65% Arg (P<0.05). Conversely, the feed conversion ratio (FCR) exhibited an inverse trend, reaching its lowest point in the group fed with a diet containing 1.85% Arg, this value was significantly lower than that of the groups receiving diets with either 0.80% or 2.65% Arg (P<0.05). No significant differences were found regarding survival rate (SR) or feeding rate (FR) among all experimental groups (P<0.05). With the increase in arginine levels, the activity of glutathione peroxidase (GSH-Px) and the content of glutathione (GSH) in the 1.85% Arg group were higher than those observed in the 0.80% Arg group (P<0.05). Additionally, the activity of superoxide dismutase (SOD) in the 1.85% Arg group was also more significant than that found in the 0.80%, 1.33%, and 2.65% Arg groups (P<0.05). The malondialdehyde (MDA) content in the 1.85% Arg group was notably lower than that of all other groups, reaching statistical significance (P<0.05). Furthermore, aspartate aminotransferase (AST) activity was lowest in the 1.85% Arg group and significantly lower compared to both of the 0.80% and 1.33% Arg groups (P<0.05). The alanine aminotransferase (ALT) activity recorded for both of the 1.33% and 1.85% Arg groups was also at its lowest level, significantly less than that in the 0.80%, 2.24% and 2.65% groups (P<0.05). The target of rapamycin (tor) and neuropeptide Y (npy) mRNA expression level in hepatopancreas was upregulated in 1.33% Arg group and higher than that in the other four groups (P<0.05). The ribosomal protein 6kinase (s6k) mRNA expression level in the 1.85% Arg group was the highest and significantly higher than that in 2.24% Arg and 2.65% Arg groups (P<0.05). The leptin mRNA expression level decreased first and then increased, and its expression level was the highest in the 0.80% Arg group. The intestinal microvilli in the 1.85% and 2.24% Arg groups appeared intact, closely arranged, numerous, and slender. It was shown that Arg at a level of 1.85% in plant-protein-based low-fishmeal feed can enhance intestinal morphology, growth performance, antioxidant capacity, and the mRNA levels of genes related to tor signalling pathway and appetite regulation in M. nipponense. Based on second-order regression analysis of weight gain vs. dietary Arg level, the ideal dietary Arg level for M. nipponense was 1.83%.

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王俊保,郑金仙,周东生,李珊珊,孔有琴,戚常乐,刘艳,徐奇友,丁志丽.以植物蛋白为主的低鱼粉饲料中添加精氨酸对日本沼虾生长、摄食、抗氧化、免疫和肠道结构的影响[J].水产学报,2025,49(4):049614

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  • 收稿日期:2023-07-30
  • 最后修改日期:2023-10-19
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  • 在线发布日期: 2025-04-03
  • 出版日期: 2025-04-01
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