研究了瑞士乳杆菌Lactobacillus helveticus 6024经热激修饰后,与干酪成熟相关的生化性质变化及其对Cheddar干酪成熟的影响。结果表明:瑞士乳杆菌经70℃、10 s的热激处理后,在10%脱脂乳中经32℃、6 h培养后,其产酸能力仅为6.4%,而与干...研究了瑞士乳杆菌Lactobacillus helveticus 6024经热激修饰后,与干酪成熟相关的生化性质变化及其对Cheddar干酪成熟的影响。结果表明:瑞士乳杆菌经70℃、10 s的热激处理后,在10%脱脂乳中经32℃、6 h培养后,其产酸能力仅为6.4%,而与干酪成熟密切相关的平均氨肽酶活力,仍有约25%的保留。热激处理后的菌株加入到干酪中对其组分没有显著影响,但对干酪可溶氮水平有不同程度的影响。与未添加热激菌株的干酪对照组相比,总可溶氮含量增加不显著,而在成熟3个月时5%磷钨酸可溶氮占总氮比例增加2倍,组间差异显著。干酪质构、微观结构分析的结果也证明,热激修饰菌株对促进干酪成熟具有促进作用。展开更多
Proteolysis is one of the most important biochemical reactions during cheese ripening.Studies on the secondary structure of proteins during ripening would be helpful for characterizing protein changes for assessing ch...Proteolysis is one of the most important biochemical reactions during cheese ripening.Studies on the secondary structure of proteins during ripening would be helpful for characterizing protein changes for assessing cheese quality.Fourier transform infrared spectroscopy(FTIR),with self-deconvolution,second derivative analysis and band curve-fitting,was used to characterize the secondary structure of proteins in Cheddar cheese during ripening.The spectra of the amide I region showed great similarity,while the relative contents of the secondary structures underwent a series of changes.As ripening progressed,the α-helix content decreased and the β-sheet content increased.This structural shift was attributed to the strengthening of hydrogen bonds that resulted from hydrolysis of caseins.In summary,FTIR could provide the basis for rapid characterization of cheese that is undergoing ripening.展开更多
文摘研究了瑞士乳杆菌Lactobacillus helveticus 6024经热激修饰后,与干酪成熟相关的生化性质变化及其对Cheddar干酪成熟的影响。结果表明:瑞士乳杆菌经70℃、10 s的热激处理后,在10%脱脂乳中经32℃、6 h培养后,其产酸能力仅为6.4%,而与干酪成熟密切相关的平均氨肽酶活力,仍有约25%的保留。热激处理后的菌株加入到干酪中对其组分没有显著影响,但对干酪可溶氮水平有不同程度的影响。与未添加热激菌株的干酪对照组相比,总可溶氮含量增加不显著,而在成熟3个月时5%磷钨酸可溶氮占总氮比例增加2倍,组间差异显著。干酪质构、微观结构分析的结果也证明,热激修饰菌株对促进干酪成熟具有促进作用。
基金financially supported by Beijing Municipal Commission of Education Co-Constructed Programand Chinese Universities Scientific Fund(2009-4-25)
文摘Proteolysis is one of the most important biochemical reactions during cheese ripening.Studies on the secondary structure of proteins during ripening would be helpful for characterizing protein changes for assessing cheese quality.Fourier transform infrared spectroscopy(FTIR),with self-deconvolution,second derivative analysis and band curve-fitting,was used to characterize the secondary structure of proteins in Cheddar cheese during ripening.The spectra of the amide I region showed great similarity,while the relative contents of the secondary structures underwent a series of changes.As ripening progressed,the α-helix content decreased and the β-sheet content increased.This structural shift was attributed to the strengthening of hydrogen bonds that resulted from hydrolysis of caseins.In summary,FTIR could provide the basis for rapid characterization of cheese that is undergoing ripening.
文摘以新鲜牛乳为原料,通过单因素实验和正交实验,对红曲干酪的加工工艺进行了研究。研究结果表明,最优工艺参数为:发酵剂添加量为0.03 g/L,凝乳酶添加量为0.2 g/L,加盐量为2%,红曲添加量为0.15 g/L。在此工艺条件,干酪经42 d成熟后,其p H 4.6-可溶性氮(p H 4.6 acidsoluble nitrogen,p H 4.6-SN)含量为42.39%,12%三氯乙酸-可溶性氮(12%TCA-soluble nitrogen,12%TCA-SN)含量为33.76%。随着成熟时期的延长,干酪水分含量呈下降趋势,p H值呈现逐渐上升趋势。聚丙烯酰胺凝胶电泳表明,红曲干酪外层蛋白质降解程度要高于干酪内层,并且红曲干酪对酪蛋白降解要比蓝纹干酪更加温和。反向高效液相色谱分析显示,随着成熟时间的延长,红曲干酪中可溶性多肽的种类和含量逐渐增加,表明干酪在成熟过程中蛋白水解程度不断增大,并且最终多肽的种类和含量要比蓝纹干酪更丰富。干酪感官评价最终得分为89.12,所制干酪成熟状态良好,香味浓厚,味道突出,表现出较佳的感官品质。