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Effects of Yeast Oligosaccharide Diet Supplements on Growth and Disease Resistance in Juvenile Nile Tilapia, Oreochromis niloticus

机译:酵母低聚糖饮食补充剂对尼罗罗非鱼幼鱼生长和抗病性的影响

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摘要

Commercially available yeast and yeast subcomponents consisting mainly of beta -glucan or oligosaccharide feed additives were added to diets of juvenile (12-18g) Nile tilapia (Oreochromis niloticus) at rates recommended by suppliers. Three experiments were conducted following a basic protocol with varied rates of supplementation, duration of feeding, and stocking densities. Experimental diets were fed twice daily to apparent satiation for a period of two or four weeks, at the end of which feed consumption and weight gain were measured. Following the experimental feeding period, serum components, including protein and immunoglobulin concentrations, as well as lysozyme and complement activities, were measured. A disease challenge was conducted with pathogenic isolates of Streptococcus iniae or Edwardsiella tarda. Weight gains were not significantly different in fish fed the supplemented diets when compared to the control diet. There were significant differences in fed intake within individual experiments; however, this effect was not consistent in all three experiments. Overall feed efficiency was not significantly affected by diet. There were no differences in serum components of fish sampled at two or four weeks. Fish fed the experimental diets did not have lower mortality or morbidity after disease challenge compared to fish fed the control diets. Specific antibody against S. iniae or E. tarda measured by ELISA did not reveal differences in the fish surviving the challenge. We conclude that the incorporation of these commercial yeast component products into the diet of juvenile Nile tilapia at these rates and for these feeding periods had no effect on growth, serum components, antibody responses, or survival following S. iniae or E. tarda infection.
机译:以供应商建议的比例,将商业上可买到的酵母和主要由β-葡聚糖或低聚糖饲料添加剂组成的酵母亚成分添加到少年(12-18 g)尼罗罗非鱼(Oreochromis niloticus)的日粮中。按照基本规程进行了三个实验,其中有不同的补充速率,喂食时间和放养密度。每天两次喂饲实验性饲料以使其饱食,持续两到四个星期,最后测量饲料消耗和体重增加。在实验喂养期之后,测量血清成分,包括蛋白质和免疫球蛋白的浓度,以及溶菌酶和补体的活性。用病原性链球菌或塔氏爱德华氏菌的病原菌进行了疾病挑战。与对照饮食相比,补充饮食的鱼的体重增加没有显着差异。在各个实验中,采食量存在显着差异。但是,在所有三个实验中,这种效果均不一致。饲料对总体饲料效率没有显着影响。在两到四个星期取样的鱼的血清成分没有差异。与喂食对照饮食的鱼相比,喂食实验饮食的鱼在疾病激发后没有降低的死亡率或发病率。通过ELISA测量的针对海豚链球菌或焦油肠球菌的特异性抗体未揭示出在攻击中幸存的鱼的差异。我们得出的结论是,将这些商业酵母成分产品以这些速率并在这些进食时期掺入到少年尼罗罗非鱼的饮食中,对虾,链球菌或tar。E.感染后的生长,血清成分,抗体反应或存活率没有影响。

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