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从生山羊奶中分离的产细菌素乳酸球菌和肠球菌菌株的技术特性及生物胺产生情况

Technological Properties and Biogenic Amines Production by Bacteriocinogenic Lactococci and Enterococci Strains Isolated from Raw Goat's Milk.

作者信息

Perin Luana Martins, Belviso Simona, Bello Barbara Dal, Nero Luís Augusto, Cocolin Luca

机构信息

Departamento de Veterinária, Universidade Federal de Viçosa, Campus Universitário, Centro, 36570-900 Viçosa, Minas Gerais, Brazil.

Department of Agricultural, Forest and Food Sciences Microbiology and Food Technology Area, University of Turin, Grugliasco, Italy.

出版信息

J Food Prot. 2017 Jan;80(1):151-157. doi: 10.4315/0362-028X.JFP-16-267.

Abstract

Technological properties and biogenic amine production were analyzed in 56 bacteriocinogenic lactococci and enterococci strains isolated from raw goat's milk. Fifteen lactococci strains were able to reduce milk pH to 5.3 or lower after 6 h, while enterococci strains were initially slow in producing acids. Lactococcus lactis subsp. lactis GLc06 and three strains of Enterococcus faecalis (GEn20, GEn22, and GEn23) presented high proteolytic activity. L. lactis subsp. lactis GLc06 and E. faecalis GEn22 also showed a high percentage of autolysis after only 4 h, reaching 71.11 and 97.67%, respectively, after 24 h. No strain was able to secrete exopolysaccharides, and L. lactis subsp. lactis GLc22 and 25 of the Enterococcus strains were able to produce diacetyl. L. lactis subsp. lactis GLc05 and 23 of the Enterococcus strains presented a high tolerance to NaCl at 10% (wt/vol). Regarding biogenic amine production, 12 strains (5 lactococci and 7 enterococci) were capable of forming tyramine and 4 strains (1 lactococcus and 3 enterococci) were capable of forming 2-phenylethylamine, but in very low amounts. GLc06 presented great acidifying, proteolytic, and autolytic activities, and GLc05 was capable of growing at high NaCl concentrations (10%, wt/vol), possessing medium autolytic and proteolytic activities. Some enterococci strains produced diacetyl and high autolytic and extracellular proteolytic activities and also presented resistance to high NaCl concentrations. The interesting technological properties presented by some bacteriocinogenic strains can justify their use by the dairy industry, with the aim of ensuring both safety due to bacteriocin production and technological transformations in fermented products.

摘要

对从生山羊奶中分离出的56株产细菌素的乳酸乳球菌和肠球菌菌株的技术特性和生物胺产生情况进行了分析。15株乳酸乳球菌菌株在6小时后能够将牛奶pH值降至5.3或更低,而肠球菌菌株最初产酸较慢。乳酸乳球菌乳酸亚种GLc06和三株粪肠球菌(GEn20、GEn22和GEn23)表现出高蛋白水解活性。乳酸乳球菌乳酸亚种GLc06和粪肠球菌GEn22在仅4小时后也表现出较高的自溶率,24小时后分别达到71.11%和97.67%。没有菌株能够分泌胞外多糖,乳酸乳球菌乳酸亚种GLc22和25株肠球菌菌株能够产生双乙酰。乳酸乳球菌乳酸亚种GLc05和23株肠球菌菌株对10%(重量/体积)的NaCl具有高耐受性。关于生物胺的产生,12株菌株(5株乳酸乳球菌和7株肠球菌)能够形成酪胺,4株菌株(1株乳酸乳球菌和3株肠球菌)能够形成2-苯乙胺,但产量非常低。GLc06表现出很强的酸化、蛋白水解和自溶活性,GLc05能够在高NaCl浓度(10%,重量/体积)下生长,具有中等的自溶和蛋白水解活性。一些肠球菌菌株产生双乙酰,具有高自溶和胞外蛋白水解活性,并且对高NaCl浓度也具有抗性。一些产细菌素菌株所呈现的有趣技术特性可以证明乳制品行业使用它们是合理的,目的是确保由于细菌素产生带来的安全性以及发酵产品中的技术转化。

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