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首页> 外文期刊>International Journal of Food Microbiology >Enhancement of gamma-aminobutyric acid (GABA) production by Lactobacillus brevis CRL 2013 based on carbohydrate fermentation
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Enhancement of gamma-aminobutyric acid (GABA) production by Lactobacillus brevis CRL 2013 based on carbohydrate fermentation

机译:基于碳水化合物发酵的Lactobacillus Brevis CRL 2013,增强γ-氨基丁酸(GABA)生产

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摘要

Gamma aminobutyric acid (GABA) is a non-protein amino acid that is widely distributed in nature and its physiological importance goes beyond its role as an inhibitory neurotransmitter of the central nervous system in mammals. Since microbial fermentation is one of the most promising methods to obtain GABA, the production of this metabolite by several strains of lactic acid bacteria isolated from quinoa and amaranth sourdoughs was investigated. Lactobacillus brevis CRL 2013 produced the highest GABA levels, reaching 265 mM when optimal culture conditions were set up. The fermentative profile showed that CRL 2013 was able to catabolize carbohydrates through the phosphoketolase pathway yielding variable amounts of lactic acid, acetate and ethanol, which depended on the type of carbon source available and the presence of external electron acceptors such as fructose. Enhanced growth parameters and low GABA synthesis were associated to pentose fermentation. This impairment on GABA production machinery was partially overpassed by the addition of ethanol to the culture media. These results support the potential use of L. brevis CRL 2013 as a starter culture for the manufacture of GABA-enriched functional foods and provide further insights to the understanding of the GAD system regulation in lactic acid bacteria.
机译:γ氨基丁酸(GABA)是一种非蛋白质氨基酸,其自然界广泛分布,其生理重要性超出了其作为哺乳动物中枢神经系统的抑制性神经递质的作用。由于微生物发酵是获得GABA的最有希望的方法之一,因此研究了通过奎奴​​亚藜和苋菜酵母分离的几种乳酸菌产生这种代谢物的制备。 Lactobacillus Brevis CRL 2013生产最高的GABA水平,何时建立最佳培养条件时达到265毫米。发酵型细胞质显示CRL 2013能够通过磷酸溶酶途径分解碳水化合物,得到可变量的乳酸,乙酸盐和乙醇,这取决于可用的碳源类型和外部电子受体如果糖的存在。增强的生长参数和低GABA合成与戊糖发酵相关。通过向培养基中加入乙醇,对GABA生产机械的这种损伤部分地跨越。这些结果支持L. Brevis CRL 2013作为制备GABA富含功能食品的起动性培养,并对乳酸菌的GAD系统调节进行了进一步的见解。

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