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Kinetic model of thermophilic L-lactate fermentation by Bacillus coagulans combined with real-time PCR quantification.

机译:凝结芽孢杆菌结合实时PCR定量进行嗜热L-乳酸发酵的动力学模型。

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摘要

A simple L-lactate fermentation of organic wastes at pH 5.5 and 55 degrees C under nonsterile conditions using Bacillus coagulans can be suitable for L-lactate fermentation of garbage. A mathematical model that simulated the lactate fermentation characteristics of B. coagulans was developed by focusing on the inhibitory effects of substrate, lactate (product) and NaCl, and bacterial growth. Basic fermentation experiments were performed using simple substrates to derive fundamental parameters of growth rate and inhibition effects. The model was then applied to fermentations using simple substrates and artificial kitchen garbage in order to verify its applicability. Microbial concentration, a key state variable of the model was measured using both real-time polymerase chain reaction (PCR) and traditional methods. The results of these methods were compared for experimental cases in which only soluble substrates were used. B. coagulans concentrations were suitably measured using real-time PCR, even when traditional measurement methods for microbial concentrations cannot be used. The results indicate that the developed model and biomass measurement can be used to evaluate lactate fermentations using both simple and complex substrates. These proposed methods would be useful for developing a new bacterial function-based mathematical model for more complex acid fermentations.
机译:使用凝结芽胞杆菌在非无菌条件下在pH 5.5和55摄氏度下对有机废物进行L-乳酸发酵很适合L-乳酸发酵垃圾。通过关注底物,乳酸盐(产物)和NaCl的抑制作用以及细菌生长,开发了模拟凝结芽孢杆菌乳酸发酵特性的数学模型。使用简单的底物进行了基本的发酵实验,以得出生长速率和抑制作用的基本参数。然后将该模型应用于使用简单底物和人造厨房垃圾进行发酵的过程中,以验证其适用性。微生物浓度是模型的关键状态变量,使用实时聚合酶链反应(PCR)和传统方法进行了测量。对于仅使用可溶性底物的实验情况,比较了这些方法的结果。即使无法使用传统的微生物浓度测量方法,凝结芽孢杆菌的浓度也可以通过实时PCR适当地测量。结果表明,开发的模型和生物量测量可用于评估使用简单和复杂底物的乳酸发酵。这些建议的方法将有助于开发一个新的基于细菌功能的数学模型,用于更复杂的酸发酵。

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