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响应面法优化粪肠球菌包被发酵培养基
引用本文:郭建军, 熊大维, 曾静, 魏国汶, 袁林. 响应面法优化粪肠球菌包被发酵培养基[J]. 食品工业科技, 2019, 40(21): 90-96. DOI: 10.13386/j.issn1002-0306.2019.21.015
作者姓名:郭建军  熊大维  曾静  魏国汶  袁林
作者单位:1.江西省科学院微生物研究所, 江西南昌 330096
基金项目:江西省自然科学基金(20181BBF68008)江西省科学院院重点项目(2018YZD204)。江西省重点研发计划(20171BBF60006)
摘    要:本研究旨在优化粪肠球菌包被发酵培养基,以获得高密度包被粪肠球菌。以包被培养活菌含量为检测指标,采用Plackett-Burman(PB)试验分析培养基中对粪肠球菌发酵影响最重要的主要因素,结合响应面法(RSM)对主要因素进行了优化,并研究了最优条件下包被培养的粪肠球菌冻干粉的稳定性。结果表明,最优包被发酵培养基配方为:葡萄糖4.93%、蛋白胨 1%、牛肉膏 0.8%、酵母粉 0.6%、柠檬酸铵 0.3%、K2HPO4·7H2O 0.2%、MgSO4·7H2O 0.06%、MnSO4·H2O 0.045%、NaAc·3H2O 0.6%、吐温80 0.1%、海藻酸钠 1.87%、纳米碳酸钙 3.65%。在此条件下,粪肠球菌包被活菌数达6.83×109 CFU/mL,与预测值误差仅4.12%。贮存稳定性试验表明,制备成的冻干粉在37 ℃条件下贮存90 d后仍保留80%以上的存活率,说明包被培养粪肠球菌冻干粉具有较高的稳定性。

关 键 词:粪肠球菌  包被发酵  响应面  高密度培养
收稿时间:2019-02-18

Optimization of Encapsulated Fermentation Medium for Enterococcus faecalis by Response Surface Method
GUO Jian-jun, XIONG Da-wei, ZENG Jing, WEI Guo-wen, YUAN Lin. Optimization of Encapsulated Fermentation Medium for Enterococcus faecalis by Response Surface Method[J]. Science and Technology of Food Industry, 2019, 40(21): 90-96. DOI: 10.13386/j.issn1002-0306.2019.21.015
Authors:GUO Jian-jun  XIONG Da-wei  ZENG Jing  WEI Guo-wen  YUAN Lin
Affiliation:1.Institute of Microbiology, Jiangxi Academy of Sciences, Nanchang 330096, China
Abstract:The aim of this study was to obtain high-density encapsulated Enterococcus faecalis by optimization of encapsulated fermentation medium.In this study,the viable encapsulated bacteria concentration was used as the evaluation index,Plackett-Burman(PB)test was used to analyze the main factors of encapsulated fermentation medium. Then,response surface method(RSM)was used to optimize the main factors. The stability of freeze-dried powder of Enterococcus faecalis cultured under the optimal conditions was studied. Results showed that,the optimal fermentation medium was designed as follows:Glucose 4.93%,peptone 1%,beef extract 0.8%,yeast 0.6%,ammonium citrate 0.3%,K2HPO4·7H2O 0.2%,MgSO4·7H2O 0.06%,MnSO4·H2O 0.045%,NaAc·3H2O 0.6%,Tween 80 0.1%,sodium alginate 1.87%,and nanometer calcium carbonate 3.65%.Under these conditions,the viable encapsulated Enterococcus faecalis reached 6.83×109 CFU/mL,with an error of only 4.12% compared with the predicted value. Storage stability test showed that the prepared freeze-dried powder still retained more than 80% survival rate after 90 d storage at 37 ℃,indicating that the freeze-dried powder of encapsulated cultured Enterococcus faecalis had high stability.
Keywords:Enterococcus faecalis  encapsulated fermentation  response surface  high cell density culture
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