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首页> 外文期刊>Biotechnology and bioprocess engineering >Optimization Of Medium For Theproduction Of A Novel Aquaculture probiotic, Micrococcus Mccb 104 Using central Composite Design
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Optimization Of Medium For Theproduction Of A Novel Aquaculture probiotic, Micrococcus Mccb 104 Using central Composite Design

机译:使用中央复合设计优化用于生产新型水产养殖益生菌微球菌Mccb 104的培养基

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摘要

A marine isolate of Micrococcus MCCB 104 has been identified as an aquaculture probiotic antagonistic to Vibrio. In the present study different carbon and nitrogen sources and growth factors in a mineral base medium were optimized for enhanced biomass production and antagonistic activity against the target pathogen, Vibrio harveyi, following response surface methodology (RSM). Accordingly the minimum and maximum limits of the selected variables were determined and a set of fifty experiments programmed employing central composite design (CCD) of RSM for the final optimization. The response surface plots of biomass showed similar pattern with that of antagonistic activity, which indicated a strong correlation between the biomass and antagonism. The optimum concentration of the carbon sources, nitrogen sources, and growth factors for both biomass and antagonistic activity were glucose (17.4 g/L), lactose (17 g/L), sodium chloride (16.9 g/L), ammonium chloride (3.3 g/L), and mineral salts solution (18.3 mL/L).
机译:海洋微球菌MCCB 104分离株已被鉴定为对弧菌有拮抗作用的水产养殖益生菌。在本研究中,按照响应面方法(RSM)优化了矿物基础培养基中的不同碳源和氮源以及生长因子,以提高生物量的产生和对目标病原体哈维弧菌的拮抗活性。因此,确定了所选变量的最小和最大限制,并使用RSM的中央复合设计(CCD)进行了50个实验的编程,以进行最终优化。生物量的响应面图显示出与拮抗活性相似的模式,表明生物量与拮抗作用之间具有很强的相关性。对于生物量和拮抗活性而言,碳源,氮源和生长因子的最佳浓度分别为葡萄糖(17.4 g / L),乳糖(17 g / L),氯化钠(16.9 g / L),氯化铵(3.3) g / L)和无机盐溶液(18.3 mL / L)。

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