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响应面设计法优化花生分离蛋白酶解条件的研究 被引量:1

Optimization of enzymatic hydrolysis of peanut protein isolate by response surface methodology
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摘要 以花生粕为原料,利用响应面设计对其花生分离蛋白的酶解条件进行了优化。通过对花生分离蛋白水解的最佳用酶进行了筛选,确定以碱性蛋白酶Alcalase水解效果最好。在单因素实验基础上,以水解度为指标,设计了响应面分析方案,通过数学推导及实验分析,得出Alcalase可控酶解花生分离蛋白的动力学模型及相关参数:Alcalase水解花生分离蛋白的最优工艺参数为反应温度53.11℃、酶浓度为135.94μL/g、pH为8.05、预测蛋白水解度为24.15%,实际结果与拟合方程预测结果(24.57%)基本吻合。 Peanut dregs were as raw materials and then enzymatic hydrolysis of peanut protein isolates( PPI) was optimized by response surface methodology( RSM) .Alcalase was screened as a suitable protease for hydrolysis of PPI.The effect of temperature,enzyme amount and pH on the PPI hydrolysis were investigated and the RSM was further applied on the basis of the single factor experiment.The mathematic model was built between the degree of hydrolysis( DH) and three factors,and then the interactions among every two factors were analyzed. The optimal conditions for obtaining the highest DH were determined to be 53.11℃ of hydrolysis temperature,135.94 μL /g of enzyme concentration and 8.05 of pH. The hydrolysis degree of PPI was 24.15% under the optimized hydrolysis conditions.This actual result was basically consistent with the predictive value( 24.57% ) of the fitting equation.
出处 《食品工业科技》 CAS CSCD 北大核心 2013年第3期155-158,163,共5页 Science and Technology of Food Industry
基金 国家863计划项目(2006AA10Z326) 国家自然科学基金(21065003)
关键词 花生分离蛋白 酶解 响应面 peanut protein isolate enzymatic hydrolysis response surface methodology
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  • 1张吉民.我国花生产业现状与入世后发展对策[J].山东农业科学,2002,34(5):53-54. 被引量:27
  • 2Wu H W,Wang Q,Ma T Z. Comparative studies on the functional properties of various protein concentrate preparations of peanut protein[J].Food Research International,2009.343-348.
  • 3李汴生,彭志英,宁正祥.植物油料取油的酶预处理工艺[J].中国粮油学报,1997,12(6):24-30. 被引量:23
  • 4焦健,王金水,李涛.花生蛋白改性研究的进展[J].农产品加工(下),2010(1):40-42. 被引量:15
  • 5Sekul A A,Vinnett C H,Ory R L. Some functional properties of peanut proteins partially hydrolyzed with papain[J].Journal of Agricultural and Food Chemistry,1978.855-858.
  • 6Yin S W,Tang C H,Wen Q B. Functional properties and in vitro trypsin digestibility of red kidney bean(Phaseolus vulgaris L.) protein isolate:Effect of high pressure treatment[J].Food Chemistry,2008.938-945.
  • 7Adler-Nissen J. Enzymatic hydrolysis of food proteins[M].London:Elsevier Applied Science Publishers,1986.12-14.
  • 8宁正祥.食品成分分析手册[M]北京:中国轻工业出版社,1998.
  • 9韩雅珊.食品化学实验指导[M]北京:中国农业大学出版社,1996.
  • 10Márquez M C,Vázquez M A. Modeling of enzymatic protein hydrolysis[J].Process Biochemistry,1999.111-117.

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