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首页> 外文期刊>Polish Journal of Microbiology >The Joint Effect of pH Gradient and Glucose Feeding on the Growth Kinetics of Lactococcus lactis CECT 539 in Glucose-Limited Fed-Batch Cultures
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The Joint Effect of pH Gradient and Glucose Feeding on the Growth Kinetics of Lactococcus lactis CECT 539 in Glucose-Limited Fed-Batch Cultures

机译:pH梯度和葡萄糖喂养对糖尿病乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸乳酸CECT 539的生长动力学的关节作用

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摘要

Two glucose-limited realkalized fed-batch cultures of Lactococcus lactis CECT 539 were carried out in a diluted whey medium (DW) using two different feeding media. The cultures were fed a mixture of a 400 g/l concentrated lactose and a concentrated mussel processing waste (CMPW, 101.72 g glucose/l) medium (fermentation I) or a CMPW medium supplemented with glucose and KH2PO4 up to concentrations of 400 g glucose/l and 3.21 g total phosphorus/l, respectively (fermentation II). For an accurate description and a better understanding of the kinetics of both cultures, the growth and product formation by L. lactis CECT 539 were both modelled, for the first time, as a function of the amounts of glucose (G) added and the pH gradient (VpH) generated in every realkalization and feeding cycle, by using an empirical polynomial model. With this modeling procedure, the kinetics of biomass, viable cell counts, nisin, lactic acid, acetic acid and butane-2,3-diol production in both cultures were successfully described (R-2 values > 0.970) and interpreted for the first time. In addition, the optimum VpH and G values for each product were accurately calculated in the two realkalized fed-batch cultures. This approach appears to be useful for designing feeding strategies to enhance the productions of biomass, bacteriocin, and metabolites by the nisin-producing strain in wastes from the food industry.
机译:使用两种不同的饲养介质,在稀释的乳清介质(DW)中进行乳酸乳乳乳乳乳乳杆菌CECT 539的两种葡萄糖有限的氟化物批量培养物。将培养物加入400g / l浓缩乳糖的混合物和浓缩的贻贝加工废物(CMPW,101.72g葡萄糖/ L)培养基(发酵I)或补充有葡萄糖的CMPW培养基,浓度为400g葡萄糖的浓度/ L和3.21g总磷/ L(发酵II)。对于准确的描述和更好地理解两种培养物的动力学,Lacis Cect 539的增长和产物形成为第一次为添加的葡萄糖(G)和pH值的函数。通过使用经验多项式模型在每个现实化和馈送循环中产生的梯度(VPH)。通过该造型程序,成功描述了两种培养物中生物质,活细胞计数,Nisin,乳酸,乙酸和丁烷-2,3-二醇的动力学(R-2值> 0.970)并首次解释。此外,在两个现实的FED分批培养物中精确地计算每种产物的最佳VPH值和G值。这种方法似乎有助于设计饲养策略,以增强生物量,菌株和食品工业中废物中的菌株生产的生物量,菌株和代谢物的产量。

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