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Bacteriocin production by Lactobacillus pentosus B96 can be expressed as a function of temperature and NaCl concentration

机译:戊糖乳杆菌B96产生的细菌素可表示为温度和NaCl浓度的函数

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摘要

Lactobacillus pentosus B96 is a bacteriocin-producing strain that was isolated from fermenting olive brines. The aim of the present work was the optimization of bacteriocin production, using response surface methodology (RS). A two-level screening Plackett-Burman design was used to select influencing factors. Then, a central composite design, with three repetitions in the centre, for pH, NaCl concentration, and temperature was carried out. Finally, an RS, which included the region of maximum accumulated bioactivity, was built as a function of NaCl concentration and temperature. Bioactivity accumulation was always observed during the exponential growth-phase, although no apparent correlation between maximum accumulated bioactivity and biomass formation was found. L. pentosus B96 is known to grow better at about 30℃, neutral pH, and by the absence of NaCl; however, a suboptimal temperature (22℃) and a moderate NaCl stress (0.65 moll~(-1)) stimulated bacteriocin production. The research led to environmental conditions that maximized bacteriocin activity, which can be expressed as a polynomial function of temperature and NaCl concentration. The suboptimal growth conditions, which were found to produce the highest bacteriocin litres, resembled those prevailing during green table olive fermentation. This model can be used to improve "in situ" bacteriocin production thus contributing to the microbiological control of the process.
机译:戊糖乳杆菌B96是一种产生细菌素的菌株,从发酵的橄榄盐水中分离出来。本工作的目的是使用响应面方法(RS)优化细菌素的生产。采用两级筛选的Plackett-Burman设计来选择影响因素。然后,进行了中央复合设计,在中央进行了三个重复操作,以测量pH,NaCl浓度和温度。最终,建立了一个包含最大累积生物活性区域的RS,作为NaCl浓度和温度的函数。尽管没有发现最大累积生物活性与生物量形成之间的明显相关性,但始终在指数生长期观察到生物活性累积。已知戊糖乳杆菌B96在约30℃,中性pH和不存在NaCl的情况下生长更好。然而,次适温(22℃)和适度的氯化钠胁迫(0.65 moll〜(-1))刺激了细菌素的产生。研究导致环境条件使细菌素活性最大化,这可以表示为温度和NaCl浓度的多项式函数。发现产生细菌素最高的次优生长条件类似于生菜橄榄发酵过程中普遍存在的条件。该模型可用于改善“原位”细菌素生产,从而有助于该过程的微生物控制。

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