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首页> 外文期刊>Journal of applied microbiology >Optimization of carbon and nitrogen sources and growth factors for the production of an aquaculture probiotic (Pseudomonas MCCB 103) using response surface methodology
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Optimization of carbon and nitrogen sources and growth factors for the production of an aquaculture probiotic (Pseudomonas MCCB 103) using response surface methodology

机译:使用响应面法优化生产水产益生菌(假单胞菌MCCB 103)的碳源和氮源和生长因子

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Aim: To develop a new medium for enhanced production of biomass of an aquaculture probiotic Pseudomonas MCCB 103 and its antagonistic phenazine compound, pyocyanin. Methods and Results: Carbon and nitrogen sources and growth factors, such as amino acids and vitamins, were screened initially in a mineral medium for the biomass and antagonistic compound of Pseudomonas MCCB 103. The selected ingredients were further optimized using a full-factorial central composite design of the response surface methodology. The medium optimized as per the model for biomass contained mannitol (20 g l(-1)), glycerol (20 g l(-1)), sodium chloride (5 g l(-1)), urea (3.3 g l(-1)) and mineral salts solution (20 ml l(-1)), and the one optimized for the antagonistic compound contained mannitol (2 g l(-1)), glycerol (20 g l(-1)), sodium chloride (5.1 g l(-1)), urea (3.6 g l(-1)) and mineral salts solution (20 ml l(-1)). Subsequently, the model was validated experimentally with a biomass increase by 19% and fivefold increase of the antagonistic compound. Conclusion: Significant increase in the biomass and antagonistic compound production could be obtained in the new media. Significance and Impact of the Study: Media formulation and optimization are the primary steps involved in bioprocess technology, an attempt not made so far in the production of aquaculture probiotics.
机译:目的:开发一种新的培养基,以提高水产益生菌假单胞菌MCCB 103及其拮抗吩嗪化合物pyocyanin的生物质产量。方法和结果:首先在矿物培养基中筛选了碳,氮源和氨基酸,维生素等生长因子,以筛选假单胞菌MCCB 103的生物量和拮抗化合物。使用全成分中心复合材料进一步优化了所选成分。响应面方法的设计。根据生物质模型优化的培养基包含甘露醇(20 gl(-1)),甘油(20 gl(-1)),氯化钠(5 gl(-1)),尿素(3.3 gl(-1))和矿物盐溶液(20 ml l(-1)),一种针对拮抗化合物进行了优化的溶液包括甘露醇(2 gl(-1)),甘油(20 gl(-1)),氯化钠(5.1 gl(- 1)),尿素(3.6 gl(-1))和无机盐溶液(20 ml l(-1))。随后,通过生物量增加19%和拮抗化合物增加5倍来对模型进行实验验证。结论:在新的培养基中可以显着增加生物量和拮抗化合物的产量。该研究的意义和影响:培养基的配制和优化是生物加工技术涉及的主要步骤,这是迄今为止在水产养殖益生菌生产中尚未进行的尝试。

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