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Optimization of Culture Conditions for Mass Production of the Probiotics Pseudomonas MCCB 102 and 103 Antagonistic to Pathogenic Vibrios in Aquaculture

机译:大量生产水产养殖中致病性弧菌拮抗益生菌假单胞菌MCCB 102和103的培养条件的优化

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Rapid growth of shrimp farming industry is affected by the recurrence of diverse diseases, among which vibriosis is predominant. Eco-friendly disease management strategy by the application of antagonistic probiotics is widely accepted. In the present study, culture conditions of antagonistic probiotics, Pseudomonas MCCB 102 and 103, were optimized to enhance their biomass production and antagonistic activity against the shrimp pathogen V. harveyi MCCB 111. Primarily, one-dimensional screening was carried out to fix the optimum range of sodium chloride concentration, pH and temperature. The second step optimization was done using a full-factorial central composite design of response surface methodology. As per the model, 12.9 g/L sodium chloride and pH 6.5 for Pseudomonas MCCB 102, and 5 g/L sodium chloride and pH 7 for Pseudomonas MCCB 103 were found to be ideal to maximize antagonistic activity. However, optimum temperature was the same (25 degrees C) for both isolates. Finally, the models were experimentally validated for enhanced biomass production and antagonistic activity. The optima for biomass and antagonistic activity were more or less the same, suggesting the possible influence of biomass on antagonistic activity.
机译:虾类养殖业的快速发展受到多种疾病的复发的影响,其中以弧菌病为主。通过应用拮抗性益生菌的生态友好型疾病管理策略已被广泛接受。在本研究中,对拮抗益生菌假单胞菌MCCB 102和103的培养条件进行了优化,以提高其对虾病原体哈维氏菌MCCB 111的生物量生产和拮抗活性。首先,进行一维筛选以确定最适条件。氯化钠浓度,pH和温度范围。第二步优化是使用响应面方法的全要素中心复合设计完成的。根据模型,发现假单胞菌MCCB 102为12.9 g / L氯化钠和pH 6.5,假单胞菌MCCB 103为5 g / L氯化钠和pH 7是最大化拮抗活性的理想选择。但是,两种分离物的最佳温度均相同(25摄氏度)。最后,通过实验验证了该模型可提高生物量的产生和拮抗活性。生物量和拮抗活性的最佳值大致相同,表明生物量可能对拮抗活性产生影响。

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