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首页> 外文期刊>Biochemical Engineering Journal >Application of response-surface methodology to evaluate the optimum medium components for the enhanced production of lichenysin by Bacillus licheniformis R2
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Application of response-surface methodology to evaluate the optimum medium components for the enhanced production of lichenysin by Bacillus licheniformis R2

机译:响应面法在评估地衣芽孢杆菌R2增产地衣素的最佳培养基成分中的应用

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摘要

Biosurfactants have gained attention because they exhibit some advantages such as biodegradability, low toxicity, ecological acceptability and ability to be produced from renewable and cheaper substrates. They are widely used for environmental applications for bioremediation and also in biomedical field. However, the high cost of production is the limiting factor for widespread industrial applications. Thus, optimization of the growth medium for biosurfactant-lichenysin production by Bacillus licheniformis R2 was carried out using response-surface methodology. A preliminary screening phase based on a two-level fractional factorial design led to the identification of NH4NO3, glucose, Na2HPO4 and MnSO4·4H2O concentrations as the most significant variables affecting the fermentation process. The 2~4 full-factorial central composite design was then applied to further optimize the biosurfactant production. The optimal levels of the aforementioned variables were (g/l): NH4NO3,1.0; glucose, 34.0; KH2PO4, 6.0; Na2HPO4, 2.7; MgSO4·7H2O,0.1; CaCt2,1.2 x 10~(-3); FeSO4·7H2O,1.65 x 10~(-3); MnSO4·4H2O,1.5 x 10~(-3) and Na-EDTA, 2.2 x 10~(-3). With the optimization procedure, the relative lichenysin yield expressed as the critical micelle dilution (CMD) was fourfold higher than that obtained in the non-optimized reference medium.
机译:生物表面活性剂之所以受到人们的关注,是因为它们具有生物降解性,低毒性,生态可接受性和可再生且廉价的基材生产能力等优点。它们广泛用于生物修复的环境应用以及生物医学领域。但是,高生产成本是广泛工业应用的限制因素。因此,使用响应面法对地衣芽孢杆菌R2生产生物表面活性剂地衣素的生长培养基进行了优化。基于两级分数阶乘设计的初步筛选阶段导致确定NH4NO3,葡萄糖,Na2HPO4和MnSO4·4H2O浓度为影响发酵过程的最重要变量。然后采用2〜4全因子中心复合材料设计进一步优化生物表面活性剂的生产。前述变量的最佳水平为(g / l):NH 4 NO 3,1.0; NH 4 NO 3,1.0。葡萄糖34.0; KH2PO4,6.0; Na2HPO4,2.7; MgSO4·7H2O,0.1; CaCt2,1.2 x 10〜(-3); FeSO4·7H2O,1.65 x 10〜(-3); MnSO4·4H2O,1.5 x 10〜(-3)和Na-EDTA,2.2 x 10〜(-3)。通过优化程序,以临界胶束稀释度(CMD)表示的相对地衣素产量比未优化的参考培养基高出四倍。

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