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首页> 外文期刊>Aquaculture Research >Probiotic effect of Bacillus NL110 and Vibrio NE17 on the survival, growth performance and immune response of Macrobrachium rosenbergii (de Man)
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Probiotic effect of Bacillus NL110 and Vibrio NE17 on the survival, growth performance and immune response of Macrobrachium rosenbergii (de Man)

机译:NL110芽孢杆菌和NE17弧菌对罗氏沼虾(de Man)的存活,生长性能和免疫应答的益生作用

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摘要

Eight hundred and eighty-five strains of bacterial isolates from various samples associated with the natural habitat of Macrobrachium rosenbergii were screened for their probiotic potential. Two putative probionts namely Bacillus NL110 and Vibrio NE17 isolated from the larvae and egg samples, respectively, were selected for experimental studies and were introduced to the juveniles of M. rosenbergii (0.080pl0.001 g) through different modes such as through feed, water and both. The probiotic potential of the above bacteria in terms of improvements in water quality, growth, survival, specific growth rate (SGR), feed conversion ratio and immune parameters was evaluated. The treatment groups showed a significant improvement in SGR and weight gain (P<0.001). Survival among different treatment groups was better than that in the control group. There were also significant improvements in the water quality parameters such as the concentration of nitrate and ammonia in the treatment groups (P<0.05). Improvements in immune parameters such as the total haemocyte count (P<0.05), phenoloxidase activity and respiratory burst were also significant (P<0.001). It is concluded that screening of the natural microflora of cultured fish and shellfish for putative probionts might yield probiotic strains of bacteria that could be utilized for an environment-friendly and organic mode of aquaculture.
机译:筛选了与罗氏沼虾的自然栖息地相关的各种样品中的185个细菌分离株的益生菌潜力。从幼虫和卵样品中分别分离出两个推定的细菌,即NL110芽孢杆菌和NE17弧菌,进行实验研究,并通过饲料,水等不同方式将其引入罗氏沼虾(0.080pl0.001 g)的幼体中。和两者。评价了上述细菌在改善水质,生长,存活,比生长率(SGR),饲料转化率和免疫参数方面的益生菌潜力。治疗组显示SGR和体重增加显着改善(P <0.001)。不同治疗组的生存率均优于对照组。处理组的水质参数如硝酸盐和氨的浓度也有显着改善(P <0.05)。诸如总血细胞计数(P <0.05),酚氧化酶活性和呼吸爆发等免疫参数的改善也很显着(P <0.001)。结论是,对养殖鱼类和贝类的天然微生物区系进行筛选以寻找推定的益生菌可能会产生益生菌菌株,这些细菌可用于环境友好的有机养殖方式。

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