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中国精品科技期刊2020

应用响应面法优化叶黄素降解发酵培养基

杨雪鹏, 赵越, 胡仙妹, 马科, 毛多斌

杨雪鹏, 赵越, 胡仙妹, 马科, 毛多斌. 应用响应面法优化叶黄素降解发酵培养基[J]. 食品工业科技, 2015, (11): 167-171. DOI: 10.13386/j.issn1002-0306.2015.11.025
引用本文: 杨雪鹏, 赵越, 胡仙妹, 马科, 毛多斌. 应用响应面法优化叶黄素降解发酵培养基[J]. 食品工业科技, 2015, (11): 167-171. DOI: 10.13386/j.issn1002-0306.2015.11.025
YANG Xue-peng, ZHAO Yue, HU Xian-mei, MA Ke, MAO Duo-bin. Optimization of fermentation medium for lutein degradation applying response surface methodology[J]. Science and Technology of Food Industry, 2015, (11): 167-171. DOI: 10.13386/j.issn1002-0306.2015.11.025
Citation: YANG Xue-peng, ZHAO Yue, HU Xian-mei, MA Ke, MAO Duo-bin. Optimization of fermentation medium for lutein degradation applying response surface methodology[J]. Science and Technology of Food Industry, 2015, (11): 167-171. DOI: 10.13386/j.issn1002-0306.2015.11.025

应用响应面法优化叶黄素降解发酵培养基

基金项目: 

国家自然科学基金(21276084); 烟草工业生物技术重点实验室课题;

详细信息
    作者简介:

    杨雪鹏 (1973-) , 男, 博士, 副教授, 研究方向:烟草工程与酶工程。;

  • 中图分类号: TQ920.6

Optimization of fermentation medium for lutein degradation applying response surface methodology

  • 摘要: 利用响应面分析法对Pantoea dispersa(Y08)菌降解叶黄素产香的培养基进行了优化。采用Box-Behnken实验设计,选定KH2PO4、蔗糖和混合氮源(酵母膏∶天门冬酰胺=2∶1)3个关键因子为响应因子,以叶黄素降解率为响应值建立多元二次回归方程,在分析各个因素的显著性和交互作用后,确定了Pantoea dispersa菌降解叶黄素的最优培养基为:蔗糖0.97%,混合氮源(酵母膏∶天门冬酰胺=2∶1)1.38%,KH2PO40.15%,叶黄素降解率为80.03%,与理论预测值基本吻合,比优化前提高140.67%。 
    Abstract: Optimization of fermentation medium using for lutein degradation to form important aroma compounds with Pantoea dispersa Y08 strain was performed employing the response surface analysis ( RSA) method.Based on single factor experiment, three critical factors ( the content of sucrose, mixed nitrogen sources and KH2PO4) were selected as response factors.The quadric regression equation was established according to the lutein degradation yield.As a result, the optimum fermentation medium was composed of sucrose 0.97%, mixed nitrogen sources ( yeast extract∶asparagine = 2∶1) 1.38% and KH2PO40.15%.Under the situation, the highest yield of degradation of lutein was predicted to be 80.03%. After optimization, the lutein degradation yield was increased by 140.67%. The experimental values were in according with the predicted values.
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  • 收稿日期:  2014-07-10

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