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首页> 外文期刊>Research in Microbiology >A multifactorial design for studying factors influencing growth and tyramine production of the lactic acid bacteria Lactobacillus brevis CECT 4669 and Enterococcus faecium BIFI-58.
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A multifactorial design for studying factors influencing growth and tyramine production of the lactic acid bacteria Lactobacillus brevis CECT 4669 and Enterococcus faecium BIFI-58.

机译:一种多因素设计,用于研究影响乳酸菌短乳杆菌CECT 4669和粪肠球菌BIFI-58的生长和酪胺产生的因素。

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摘要

A central composite face design was used to study growth and tyramine production of two strains of lactic acid bacteria, Lactobacillus brevis CECT 4669 and Enterococcus faecium BIFI-58. The effects of five physicochemical factors (incubation temperature and time, environmental pH, added tyrosine concentration, and pyridoxal-5-phosphate (PLP) supplementation) on cell growth and tyramine production were analyzed under aerobic and anaerobic conditions. The parameters of the quadratic model for each response variable were estimated by multiple linear regression (MLR), and statistical analysis of the results led to the elucidation of mathematical models capable of predicting the behavior of the responses as a function of the main variables involved in the process. Incubation time was found to be the most important variable influencing growth in L. brevis, while pH showed the highest contribution in E. faecium. The production of tyramine was dependent on the added tyrosine concentration and incubation time. The proposed MLR model predicted the optimum conditions that gave maximum responses for L. brevis and E. faecium growth and tyramine production. In both strains, this model predicted that the anaerobic condition at acidic pH (4.4) in the presence of a high tyrosine concentration favors tyramine production.
机译:中央复合面部设计用于研究两种乳酸菌短乳杆菌CECT 4669和粪肠球菌BIFI-58的生长和酪胺产生。在有氧和无氧条件下,分析了五个物理化学因素(孵育温度和时间,环境pH,添加的酪氨酸浓度和5-磷酸吡ido醛(PLP)的补充)对细胞生长和酪胺产生的影响。通过多元线性回归(MLR)估算每个响应变量的二次模型的参数,并对结果进行统计分析,从而阐明了能够预测响应行为的数学模型,该数学模型是涉及到的主要变量的函数过程。发现孵化时间是影响短乳杆菌生长的最重要变量,而pH在粪肠球菌中贡献最大。酪胺的产生取决于添加的酪氨酸浓度和孵育时间。拟议的MLR模型预测了最佳条件,该条件可为短乳杆菌和粪肠球菌的生长以及酪胺的产生提供最大的响应。在两种菌株中,该模型都预测在高酪氨酸浓度下,酸性pH(4.4)下的厌氧条件有利于酪胺的产生。

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