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Efficient media for high menaquinone-7 production: response surface methodology approach

机译:高产量甲萘醌7的高效培养基:响应面法

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The aim of this study was to assess the effect of nutrients on the production of menaquinone-7 and determine the optimum conditions to achieve a high concentration of this product. Bacillus subtilis matto was fermented at 40℃ for a period of six days. Design of experiments was used for screening the most effective nutrients, and central composite face design was employed for the optimization. The optimum media consisted of 5% (w/v) yeast extract; 18.9% (w/v) soy peptone; 5% (w/v) glycerol and 0.06% (w/v) K_2HPO_4. The pH, bacterial growth, concentrations of amino acids, glycerol and menaquinone-7 were measured at the optimum fermentation media each day. Total free amino acids contration increased 1.7-fold during the fermentation. Lysine and glutamic acid were the most abundant whereas arginine, asparagine and serine were the limiting amino acids at the end of fermentation period. The menaquinone-7 concentration approached 86% of the final value in the third day of fermentation, where the bacteria growth was at exponential phase. At this condition the concentration of glycerol as carbon source and asparagine, serine and arginine as the amino acid sources were dramatically diminished in the fermentation media. The optimum menaquinone-7 concentration was in good agreement with the predicted value by the model (96% validity). The maximum menaquinone-7 concentration of 62.32 ± 0.34 mg/L was achieved after six days of fermentation; this value is the highest concentration reported in the literature.
机译:这项研究的目的是评估营养物质对甲萘醌7产生的影响,并确定实现该产品高浓度的最佳条件。枯草芽孢杆菌在40℃发酵6天。实验设计用于筛选最有效的营养素,中央复合面设计用于优化。最佳培养基是5%(w / v)酵母提取物。 18.9%(w / v)大豆蛋白ept; 5%(w / v)甘油和0.06%(w / v)K_2HPO_4。每天在最佳发酵培养基中测量pH,细菌生长,氨基酸,甘油和甲萘醌-7的浓度。在发酵过程中,总的游离氨基酸对立增加了1.7倍。发酵结束时,赖氨酸和谷氨酸含量最高,而精氨酸,天冬酰胺和丝氨酸含量最高。在发酵的第三天,细菌的生长处于指数阶段,甲萘醌7的浓度接近最终值的86%。在这种条件下,发酵培养基中甘油作为碳源的浓度以及天冬酰胺,丝氨酸和精氨酸作为氨基酸的浓度显着降低。最佳甲萘醌7浓度与模型预测值吻合良好(96%有效性)。发酵六天后,甲基萘醌7的最大浓度达到62.32±0.34 mg / L。该值是文献中报道的最高浓度。

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