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Kinetics of rapamycin production by Streptomyces hygroscopicus MTCC 4003

机译:吸水链霉菌MTCC 4003产生雷帕霉素的动力学

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摘要

Research work was carried out to describe the kinetics of cell growth, substrate consumption and product formation in batch fermentation of rapamycin using shake flask as well as laboratory-scale fermentor. Fructose was used as the sole carbon source in the fermentation media. Optimization of fermentation parameters and reliable mathematical models were used for the maximum production of rapamycin from Streptomyces hygroscopicus MTCC 4003. The experimental data for microbial production of rapamycin fitted well with the proposed mathematical models. Kinetic parameters were evaluated using best fit unstructured models, viz. Andrew’s model, Monod model, Yano model, Aiba model. Andrew’s model showed a comparatively better R2 value (0.9849) among all tested models. The values of maximum specific growth rate (μmax), saturation constant (KS), inhibition constant (Ki), and growth yield coefficient (YX/S) were found to be 0.008 (h−1), 2.835 (g/L), 0.0738 (g/L), and 0.1708 (g g−1), respectively. The optimum production of rapamycin was obtained at 300 rpm agitation and 1 vvm aeration rate in the fermentor. The final production of rapamycin in shake flask was 539 mg/L. Rapamycin titer found in bioreactor was 1,316 mg/L which is 52 % higher than the latest maximum value reported in the literature.
机译:进行了研究工作,以描述使用摇瓶以及实验室规模的发酵罐在雷帕霉素批量发酵中细胞生长,底物消耗和产物形成的动力学。果糖被用作发酵培养基中的唯一碳源。优化了发酵参数,并建立了可靠的数学模型,以使吸水链霉菌MTCC 4003的雷帕霉素产量达到最高。微生物生产雷帕霉素的实验数据与所提出的数学模型非常吻合。使用最佳拟合非结构化模型来评估动力学参数。 Andrew模型,Monod模型,Yano模型,Aiba模型。在所有测试的模型中,安德鲁的模型均显示出相对更好的R 2 值(0.9849)。发现最大比生长率(μmax),饱和常数(KS),抑制常数(Ki)和生长产量系数(YX / S)的值为0.008(h -1 ),分别为2.835(g / L),0.0738(g / L)和0.1708(g 。在发酵罐中以300 rpm的搅拌和1 vvm的充气速率获得雷帕霉素的最佳产量。摇瓶中雷帕霉素的最终产量为539 mg / L。生物反应器中发现的雷帕霉素滴度为1,316 mg / L,比文献报道的最新最大值高52%。

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