详细信息
海洋源Bacillus cereus CAMT2377产葡萄糖氧化酶过程分析及优化 被引量:3
Analysis and optimization of process for glucose oxidase production by marine Bacillus cereus CAMT2377
文献类型:期刊文献
中文题名:海洋源Bacillus cereus CAMT2377产葡萄糖氧化酶过程分析及优化
英文题名:Analysis and optimization of process for glucose oxidase production by marine Bacillus cereus CAMT2377
作者:黄晓月[1];莫日坚[1];徐德峰[1];叶日英[1];孙力军[1];王雅玲[1]
机构:[1]广东海洋大学食品科技学院广东省水产品加工与安全重点实验室广东省海洋食品工程技术研究中心水产品深加工广东普通高等学校重点实验室,广东湛江524088
年份:2018
卷号:31
期号:11
起止页码:1268
中文期刊名:中国生物制品学杂志
外文期刊名:Chinese Journal of Biologicals
收录:CSTPCD、、CSCD_E2017_2018、Scopus、CSCD
基金:国家自然科学基金项目(31201309;31371777);广东省科技厅项目(2013B021100016;2014B020205006);广东省教育厅项目(2014-KTSCX078;2013050205;2013050203;2013050312);农业部东海与远洋渔业资源开发利用重点实验室开放课题(2014K03);广东海洋大学大学生创新课题(CXXL2014042)
语种:中文
中文关键词:海洋细菌;葡萄糖氧化酶;优化
外文关键词:Marine bacterium;Glucose oxidase;Optimization
中文摘要:目的提高海洋细菌Bacillus cereus CAMT2377产葡萄糖氧化酶活力。方法对碳源、氮源、无机盐等培养基组成及装液量、接种量、培养温度、发酵时间、转速等培养条件进行筛选,通过单因素分析和统计优化提升菌株产酶性能。结果 Bacillus cereus CAMT2377产葡萄糖氧化酶适宜培养基成分为1%麦芽糖、0. 5%鱼粉蛋白胨、0. 05%CaCl_2,在此培养基中接种8%体积比的种子液后,于31℃,20%装液量,200 r/min条件下培养60 h,产葡萄糖氧化酶活力可在10 U/mL以上;响应面优化产酶过程获得最适参数为温度35℃,时间82 h,转速247 r/min,优化条件下产酶活力提高至15 U/mL以上,较优化前提高了50%。结论通过单因素分析和响应面优化,提高了海洋细菌Bacillus cereus CAMT2377产葡萄糖氧化酶的活力。
外文摘要:Objective To enhance the glucose oxidase production by marine Bacillus cereus CAMT2377. Methods One-factor-one-time analysis and statistical optimization procedure were applied to investigate the enzyme production,by which the components of medium,such as carbon source,nitrogen source and inorganic salt,as well as culture condition including volume of culture medium,inoculation amount,culture temperature,fermentation time and rotation rate,were screened. Results The optimal medium for glucose oxidase production consisted of 1% maltose,0. 5% fish meal and 0.05% calcium chloride. The optimal volume of culture medium,inoculation amount,culture temperature,fermentation time and rotation rate were 20%,8%(volume ratio),31 ℃,60 h and 200 r/min respectively. Under the optimal condition,the activity of glucose oxidase was more than 10 U/mL. Furthermore,response surface method was applied to optimize the glucose oxidase production,by which the optimal temperature,time and rotation rate were 35 ℃,82 h and247 r/min respectively. The activity of glucose oxidase under the condition optimized by response surface method increased to more than 15 U/mL,which increased by 50% as compared with that before optimization. Conclusion The glucose oxidase production by Bacillus cereus CAMT2377 was enhanced by optimization of culture condition by onefactor-one-time analysis and response surface method.
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