Silvia Cristina Vergara Alvarez, María José Leiva Alaniz, María Victoria Mestre Furlani, F. Vazquez, Pamela Mancha Agresti, María Cristina Nally, Yolanda Paola Maturano
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引用次数: 7
摘要
原生酿酒酵母适应高压力和选择性环境,这使它们成为益生菌的潜在候选者。本研究旨在探讨96种酿酒原生酵母的益生菌潜力、生物安全性、对胃肠道疾病的抗性和粘附特性。在生物安全性方面,66株菌株溶血活性为阴性,脲酶活性为阴性,对3种或3种以上的抗真菌药物敏感。在胃肠道耐药试验后,选择15株在体外试验中表现出不同温度下生长、对低pH和胆盐存在的耐受性的分离株。一般来说,胃肠道模拟条件下的存活率较高,十二指肠的限制更大。黏附性能的结果表明,在24 h时具有高度可变的疏水性和较高的自聚集率。毕赤酵母菌株的生物膜产量最大。在96株酵母菌中,有15株非酵母菌表现出适合作为益生菌的特性。结果表明,国产酿酒菌株的益生菌性能优于酿酒酵母(Saccharomyces cerevisiae var. bourlardii CNCM I-745),表明这些菌株是有前景的益生菌候选菌株,其益生作用有待进一步研究。
Bioprospecting of the probiotic potential of yeasts isolated from a wine environment.
Autochthonous yeasts of oenological origin are adapted to highly stressful and selective environments, which makes them potential candidates for probiotics. The objective of the present study was to explore the probiotic potential of 96 native yeasts of oenological origin, their biosafety, resistance to gastrointestinal tract conditions and adhesion properties. Regarding biosafety, 66 isolates shown negative hemolytic activity, negative urease activity and susceptibility to 3 or more antifungals. After the gastrointestinal resistance test, 15 isolates were selected that showed growth at different temperatures, tolerance to low pH and the presence of bile salts in in vitro tests. In general, survival after simulated conditions of the gastrointestinal tract was high and more restrictive was the duodenal. The results of the adhesion properties showed highly variable hydrophobicity and a high percentage of autoaggregation at 24 h. The maximum production of biofilm was detected in the Pichia strains. Of a total of 96 yeast strains, 15 non-Saccharomyces yeasts presented suitable properties as probiotic candidates. The native winemaking strains performed better than the reference probiotic strain, Saccharomyces cerevisiae var. boulardii CNCM I-745, which reaffirms that these strains are promising probiotic candidates and further studies are necessary to confirm their probiosis.