饲料蛋白质水平对大口黑鲈仔鱼生长性能、肠道组织、抗氧化和免疫能力的影响

Effects of dietary protein level on growth performance, intestinal histology, antioxidant and immune capacity of largemouth bass (Micropterus Salmoides) larvae

  • 摘要:
    目的 探究饲料蛋白质水平对大口黑鲈仔鱼生长性能、肠道组织、抗氧化和免疫能力的影响。
    方法 设计了5种等脂饲料,其蛋白质含量分别为45% (CP45)、48% (CP48)、51% (CP51)、54% (CP54)和57% (CP57)。健康的大口黑鲈仔鱼随机分为5组,每组3个重复,每个重复7 500尾 (1.25 ± 0.00) mg,实验为期21 天。
    结果 随着饲料蛋白质含量的升高,大口黑鲈仔鱼的最终生物量和存活率先升高后降低,CP54组的最终生物量显著高于其余各组,并且CP51和CP57组显著高于CP45和CP48组,CP51、CP54和CP57组的存活率显著高于CP45和CP48组,但各组间最终体重、增重率和特定生长率无显著差异。以存活率和最终生物量为基础确定的大口黑鲈仔鱼饲料蛋白质最适水平为54.80%~55.25%。各组间肠道绒毛高度、绒毛宽度和肌层厚度无显著性差异。CP51、CP54和CP57组的丙二醛(MDA)含量显著低于CP45组,CP51和CP57组的MDA含量显著低于CP48组。各组间过氧化氢酶、总超氧化物歧化酶(T-SOD)、碱性磷酸酶和酸性磷酸酶活性无显著差异,但随着蛋白质含量的增加,T-SOD的活性具有升高趋势(P = 0.07)。以MDA水平和T-SOD活性为基础确定的大口黑鲈仔鱼饲料蛋白质最适水平为51.00%~55.16%。
    结论 在20~24 ℃条件下,大口黑鲈仔鱼在适宜饲料蛋白质水平下有更高的存活率、最终生物量和抗氧化能力,基于最佳的存活和最终生物量,大口黑鲈仔鱼适宜蛋白质水平为54.80%~55.25%。该研究结果为大口黑鲈仔鱼人工育苗阶段专用配合饲料的研发与精准配制提供科学理论依据,对提升苗种培育成活率、优化养殖生产效益有重要指导作用。

     

    Abstract: This study aimed to investigate the effects of dietary protein level on growth performance, intestinal histology, antioxidant and immune capacity of largemouth bass (Micropterus salmoides) larvae. Five isolipidic experimental diets were formulated with crude protein contents of 45% (CP45), 48% (CP48), 51% (CP51), 54% (CP54) and 57% (CP57), respectively. Healthy M. salmoides larvae with an initial body weight of (1.25±0.00) mg were randomly divided into 5 groups with 3 replicates per group and 7 500 larvae per replicate, and the feeding trial lasted for 21 days. The results showed that with increasing dietary protein content, the final biomass and survival rate of M. salmoides larvae increased first and then decreased (P < 0.05); the final biomass in the CP54 group was significantly higher than that in all other groups (P < 0.05), and the final biomass in the CP51 and CP57 groups was significantly higher than that in the CP45 and CP48 groups (P < 0.05); the survival rate in the CP51, CP54 and CP57 groups was significantly higher than that in the CP45 and CP48 groups (P < 0.05), while no significant differences were found in final body weight, weight gain rate and specific growth rate among all groups (P > 0.05). The optimal dietary protein level for M. salmoides larvae determined on the basis of survival rate and final biomass was 54.80%-55.25%. There were no significant differences in intestinal villus height, villus width and muscle layer thickness among all groups (P > 0.05). The malondialdehyde (MDA) content in the CP51, CP54 and CP57 groups was significantly lower than that in the CP45 group (P < 0.05), and the MDA content in the CP51 and CP57 groups was significantly lower than that in the CP48 group (P < 0.05). There were no significant differences in the activities of catalase, total superoxide dismutase (T-SOD), alkaline phosphatase and acid phosphatase among all treatments, whereas T-SOD activity exhibited an increasing trend with the elevation of dietary protein level (P = 0.07), and the optimal dietary protein level was determined to be 51.00%-55.16% according to MDA content and T-SOD activity. Under the water temperature of 20-24 ℃, larvae fed with optimal dietary protein levels presented higher survival rate, final biomass and antioxidant capacity, and the suitable dietary protein level for M. salmoides larvae was 54.80%-55.25% to achieve the best survival and final biomass. These results provide a scientific theoretical basis for the development and precise preparation of special compound feeds for M. salmoides larvae during artificial seedling cultivation, and exert an important guiding function in improving seedling survival rate and optimizing aquaculture production efficiency.

     

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