Optimization of fermentation conditions for Glutamic acid production by mixed starter cultures in solid state fermentation
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摘要: 考察秦巴山区低温型香菇的硒耐受力,优化其在富硒条件下的培养基配方,拟为富硒香菇的相关产品开发提供参考依据。以秦巴山区规模化栽培的低温型香菇9608#菌株为试材,根据菌丝平均生长速度筛选其耐受Na2Se O3的最佳浓度;以菌丝体生物量为主要指标,通过Plackett-Burman实验、最陡爬坡实验、Box-Behnken响应面实验及验证实验,研究香菇9608#菌株最优的富硒液体培养基。结果表明,香菇9608#菌株耐受Na2Se O3的最佳浓度为20.00 mg/L,其最佳富硒液体培养基为:马铃薯288.78 g/L、麦麸64.56 g/L、麦芽糖15.00 g/L、酵母膏10.00 g/L、KH2PO40.80 g/L、Mg SO4·7H2O 2.00 g/L、Na2Se O320.00 mg/L。以此培养基对实验结果进行验证,菌丝生物量可达66.34 g/L,实测值与拟合值相比,相对误差约为2.05%,说明本研究方法可行、结论可靠。Abstract: The fermentation conditions for Glutamic acid production by a mixed starter culture composed of Aspergillus oryzae and Monascus purpureus in solid state fermentation were optimized. The effects of fermentation time, fermentation temperature, medium initial p H and moisture content on Glutamic acid were studied by single factor and orthogonal array design methods.Results suggested that the optimal fermentation conditions were the fermentation temperature 32 ℃, the fermentation time 5 d, the initial p H of fermentation medium 6 and the moisture content in medium 30%. Under these conditions, the yields of Glutamic acid and total amino acids were 194.2 g/kg and 768.5 g/kg, respectively, which were increased by 15.7% and 5.5%respectively compared to that before optimization.
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Keywords:
- Aspergillus oryzae; /
- Monascus purpureus; /
- pig ossein; /
- Glutamic acid;
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[1] 彭闯.我国的生猪养殖区域发展分析[J].当代畜牧, 2016 (2) :35-36. [2] 张昕, 赖莹, 李晓东.前处理技术对微粉碎猪骨泥粒度影响的研究[J].食品工业科技, 2009 (11) :168-171. [3] 刘小红, 李诚, 付刚, 等.猪股骨头胶原蛋白降血压肽的分离纯化[J].食品科学, 2014, 35 (6) :50-53. [4] 张崟, 王新惠, 王卫, 等.高压和酶解辅助制备超微骨粉的工艺研究[J].现代食品科技, 2014 (10) :172-175. [5] 张崟, 卓勇贤, 张佳敏, 等.猪骨利用的研究进展[J].农产品加工, 2010 (11) :83-86. [6] Zhang Yin, Wang Wei, Wang Xinhui, et al.Bone soup:protein nutrition and enzymatic hydrolysis process optimized by response surface method[J].Journal of Food&Nutrition Research, 2014, 53 (1) :1-12.
[7] 徐越, 郞应龙.一株猪骨素降解菌的鉴定及其挥发性代谢产物研究[J].中国酿造, 2011, 232 (7) :124-127. [8] 王雪峰, 鞠兴荣, 王立峰, 等.混菌固态发酵生产菜籽肽培养基条件优化研究[J].食品科技, 2012, 37 (10) :147-152. [9] 张宇, 邬应龙, 黄祎萌.单菌和双菌固态发酵猪骨素的研究[J].食品工业科技, 2013, 34 (22) :179-182. [9] 王新惠, 刘达玉.米根霉产糖化酶发酵条件的研究[J].中国酿造, 2009 (9) :85-87. [11] 韦涛, 周启静, 陆兆新, 等.纳豆芽孢杆菌固态发酵小米糠产抗氧化肽条件的优化[J].食品科学, 2016 (12) :45-49. [12] 马俊阳, 诸葛斌, 方慧英, 等.米曲霉蛋白酶的分离纯化及酶学性质研究[J].微生物学通报, 2014, 41 (1) :83-89. [13] 刘波, 邬应龙, 张霞, 等.红曲霉固态发酵产木聚糖酶培养基的响应面优化[J].食品工业科技, 2014 (1) :254-258. [14] 潘进权, 伍惠敏, 陈雨钿.毛霉发酵法制备豆渣可溶性膳食纤维的研究[J].食品科学, 2012, 33 (15) :210-213. [15] 刘芳宁, 张卫兵, 梁琪, 等.米曲霉GN-1固态发酵产乳糖酶培养基的优化[J].食品工业科技, 2013 (8) :232-235. [16] 王新惠, 张超, 朱文优, 等.复合菌固态发酵猪骨素产谷氨酸培养基优化[J].食品工业科技, 2016, 37 (12) :203-205.
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