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首页> 外文期刊>Journal of Biotechnology >Metabolic modeling of the substrate competition among multiple VFAs for PHA production by mixed microbial cultures
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Metabolic modeling of the substrate competition among multiple VFAs for PHA production by mixed microbial cultures

机译:混合微生物培养的多VFA中底物竞争的代谢建模

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摘要

Mixed microbial cultures (MMCs) are an effective method for polyhydroxyalkanoates (PHA) production. There are several models established to describe the metabolism of this process. Substrate competition was commonly found in the uptake of multiple volatile fatty acids (VFAs), thus this behavior should be considered in process modeling. In this study, a metabolic model is developed to describe for the first time the substrate competition among four commonly used VFAs (acetate, propionate, butyrate and valerate) in PHA production by MMCs. An inhibition parameter was introduced to describe the inhibition of butyrate and valerate on the uptake of acetate and propionate. The modeled results showed good agreement with experimental data within 95% confidence interval. This model enhanced the understanding of the metabolism of substrate uptake in PHA production, providing a successful approach to predict PHA composition and optimize the process efficiency when four competing VFAs are supplied.
机译:混合的微生物培养物(MMC)是多羟基烷烃(PHA)生产的有效方法。 建立了几种模型来描述该过程的新陈代谢。 族竞争常见于多种挥发性脂肪酸(VFA)的摄取中发现,因此应该在过程建模中考虑这种行为。 在该研究中,开发了一种代谢模型,以便在MMCS中第一次描述四种常用的VFA(醋酸盐,丙酸盐,丁酸盐和戊酸盐和戊酸盐)之间的衬底竞争。 引入抑制参数以描述丁酸酯对乙酸乙酯吸收的抑制作用和丙酸盐。 建模结果表明,与95%置信区间内的实验数据吻合良好。 该模型增强了对PHA生产中底物摄取的新陈代谢的理解,提供了一种成功的方法来预测PHA组成,并在提供四个竞争VFA时优化工艺效率。

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