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Optimization of amorphadiene production in engineered yeast by response surface methodology

机译:响应面法优化工程酵母中紫穗槐二烯的生产

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摘要

Isoprenoids are among the most diverse bioactive compounds synthesized by biological systems. The superiority of these compounds has expanded their utility from pharmaceutical to fragrances, including biofuel industries. In the present study, an engineered yeast strain Saccharomyces cerevisiae (YCF-AD1) was optimized for production of Amorpha>-4, 11>-diene, a precursor of anti-malarial drug using response surface methodology. The effect of four critical parameters such as KH2PO4, methionine, pH and temperature were evaluated both qualitatively and quantitatively and further optimized for enhanced amorphadiene production by using a central composite design and model validation. The “goodness of fit” of the regression equation and model fit (R2) of 0.9896 demonstrate this study to be an effective model. Further, this model will be used to validate theoretically and experimentally at the higher level of amorphadiene production with the combination of the optimized values of KH2PO4 (4.0), methionine (1.49), pH (5.4) and temperature (33 °C).
机译:类异戊二烯是生物系统合成的最多样化的生物活性化合物。这些化合物的优越性已将其效用从制药扩展到香料,包括生物燃料工业。在本研究中,工程酵母菌株酿酒酵母(YCF-AD1)被优化用于生产Amorpha >- 4、11 >-二烯(抗疟药的前体)使用响应面方法。定性和定量评估了四个关键参数(如KH2PO4,蛋氨酸,pH和温度)的影响,并通过中央复合设计和模型验证进一步优化了其以提高吗啡二烯的产量。回归方程的“拟合优度”和0.9896的模型拟合(R 2 )证明该研究是有效的模型。此外,该模型将结合KH2PO4(4.0),蛋氨酸(1.49),pH(5.4)和温度(33°C)的优化值在较高的Amorphadiene生产水平上进行理论和实验验证。

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