富含γ氨基丁酸豆芽乳发酵工艺优化
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国家自然科学基金项目(31671831)


Optimization of Process Conditions of γ-Amino Butyric Acid-enriched Fermented Milk with Sprouted Soybeans
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    摘要:

    为提高发酵豆芽乳中的γ氨基丁酸含量,以植物乳杆菌S-35为发酵剂,以发酵过程中γ氨基丁酸质量浓度为试验指标,在单因素试验基础上,利用中心组合试验设计和响应面分析法研究了植物乳杆菌S-35接种量、发酵温度、发酵时间对发酵豆乳中γ氨基丁酸质量浓度的影响,并建立了乳酸菌发酵模型。响应面优化试验结果表明豆芽乳发酵的最佳工艺条件为:接种量为3.5%、发酵温度为34.5℃、发酵时间为27h。在此条件下γ氨基丁酸质量浓度为1.61g/L,植物乳杆菌S-35活菌数可达1.60×109CFU/mL。在4℃下进行7d的储藏试验,结果表明发酵豆芽乳在保质期内凝乳状态、发酵参数保持在可接受的范围内。

    Abstract:

    The concentration of bioactive components was the key factor to functionality of fermented food. The object was to develop and characterize a sprouted soybeans- based fermented milk by using γ-amino butyric acid (GABA)-producing Lactobacillus plantarum S-35. Inoculation volume, fermentation time and fermentation temperature were studied as single factors affecting the yields of GABA in the fermented milk. The central composite design was used to optimize the fermentation technology. The results were analyzed with the software Design-Expert 8.0.6. Results indicated that the fermentation system model had an extremely significant effect on predicting the results of the test. Results of the response surface optimization test showed that the optimal fermentation condition was as follows: inoculation volume was 3.5%, fermentation time was 27h, and fermentation temperature was 34.5℃. The verification tests demonstrated that the actual yields of GABA was 1.61g/L, and the maximum number of viable probiotics count was 1.60×109CFU/mL. When it was stored at 4℃ after 7d, the product had good quality with sensory evaluation, viable cell numbers and pH value. The research results proposed specific processes and fermentation conditions for GABA enrichment in sprouted soybeans, which can provide a new, natural, and functional food resource.

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张金兰,代田田,王丹婷,李平兰.富含γ氨基丁酸豆芽乳发酵工艺优化[J].农业机械学报,2018,49(3):373-380. ZHANG Jinlan, DAI Tiantian, WANG Danting, LI Pinglan. Optimization of Process Conditions of γ-Amino Butyric Acid-enriched Fermented Milk with Sprouted Soybeans[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(3):373-380.

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  • 收稿日期:2017-08-21
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  • 在线发布日期: 2018-03-10
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