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首页> 外文期刊>Frontiers in Marine Science >Optimization of Growth and Bacteriocin Activity of the Food Bioprotective Carnobacterium divergens V41 in an Animal Origin Protein Free Medium
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Optimization of Growth and Bacteriocin Activity of the Food Bioprotective Carnobacterium divergens V41 in an Animal Origin Protein Free Medium

机译:在无动物源蛋白的培养基中,食品生物保护分枝杆菌V41的生长和细菌素活性的优化

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摘要

Optimization of Carnobacterium divergens V41 growth and bacteriocin activity in a culture medium deprived of animal protein, needs for food bioprotection, was performed by using a statistical approach. In a screening experiment, twelve factors (pH, temperature, carbohydrates, NaCl, yeast extract, soy peptone, sodium acetate, ammonium citrate, magnesium sulphate, manganese sulphate, ascorbic acid and thiamine) were tested for their influence on the maximal growth and bacteriocin activity using a two-level incomplete factorial design with 192 experiments performed in microtiter plate wells. Based on results, a basic medium was developed and three variables (pH, temperature and carbohydrates concentration) were selected for a scale-up study in bioreactor. A 23 complete factorial design was performed, allowing the estimation of linear effects of factors and all the first order interactions. The best conditions for the cell production were obtained with a temperature of 15°C and a carbohydrates concentration of 20 g/l whatever the pH (in the range 6.5-8), and the best conditions for bacteriocin activity were obtained at 15°C and pH 6.5 whatever the carbohydrates concentration (in the range 2-20 g/l). The predicted final count of C. divergens V41 and the bacteriocin activity under the optimized conditions (15°C, pH 6.5, 20 g/l carbohydrates) were 2.4 x 1010 CFU/ml and 819200 AU/ml respectively. C. divergens V41 cells cultivated in the optimized conditions were able to grow in cold-smoked salmon and totally inhibited the growth of Listeria monocytogenes (< 50 CFU g-1) during five weeks of vacuum storage at 4° and 8°C.
机译:利用统计方法优化了在缺乏动物蛋白的培养基中食肉分枝杆菌V41的生长和细菌素活性的优化,以满足食品生物保护的需要。在筛选实验中,测试了十二种因素(pH,温度,碳水化合物,NaCl,酵母提取物,大豆蛋白ept,乙酸钠,柠檬酸铵,硫酸镁,硫酸锰,抗坏血酸和硫胺素)对最大生长和细菌素的影响。使用两级不完全因子设计进行酶活,在微量滴定板孔中进行了192个实验。基于结果,开发了一种基本培养基,并选择了三个变量(pH,温度和碳水化合物浓度)用于生物反应器的放大研究。进行了23个完整的阶乘设计,从而可以估计因素和所有一阶相互作用的线性效应。无论温度如何(在6.5-8之间),在15°C的温度和20 g / l的碳水化合物浓度下均可获得最佳的细胞生产条件,而在15°C的温度下可获得最佳的细菌素活性条件不论碳水化合物的浓度(2-20 g / l),pH均为6.5。在优化条件下(15°C,pH 6.5,20 g / l碳水化合物),C。divergens V41的最终最终预测数和细菌素活性分别为2.4 x 1010 CFU / ml和819200 AU / ml。在最佳条件下培养的梭状芽胞杆菌V41细胞能够在冷熏鲑鱼中生长,并在4°C和8°C的真空储存五周内完全抑制单核细胞增多性李斯特菌的生长(<50 CFU g-1)。

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