Department of Life and Environmental Sciences, Polytechnic University of Marche, Via Brecce Bianche, 60131, Ancona, Italy.
World J Microbiol Biotechnol. 2024 Mar 28;40(5):147. doi: 10.1007/s11274-024-03941-z.
Probiotic microorganisms are used to improve the health and wellness of people and the research on this topic is of current relevance and interest. Fifty-five yeasts, coming from honeybee's ecosystem and belonging to Candida, Debaryomyces, Hanseniaspora, Lachancea, Metschnikowia, Meyerozyma, Starmerella and Zygosacchromyces genera and related different species, were evaluated for the probiotic traits. The resistance to gastrointestinal conditions, auto-aggregation, cell surface hydrophobicity or biofilm formation abilities as well as antimicrobial activity against common human pathogenic bacteria were evaluated. The safety analysis of strains was also carried out to exclude any possible negative effect on the consumer's health. The influence of proteinase treatment of living yeasts and their adhesion to Caco-2 cells were also evaluated. The greatest selection occurred in the first step of survival at the acidic pH and in the presence of bile salts, where more than 50% of the strains were unable to survive. Equally discriminating was the protease test which allowed the survival of only 27 strains belonging to the species Hanseniaspora guilliermondii, Hanseniaspora uvarum, Metschnikowia pulcherrima, Metschnikowia ziziphicola, Meyerozyma caribbica, Meyerozyma guilliermondii, Pichia kluyveri, Pichia kudriavzevii and Pichia terricola. An integrated analysis of the results obtained allowed the detection of seven yeast strains with probiotic aptitudes, all belonging to the Meyerozyma genus, of which three belonging to M. guillermondii and four belonging to M. caribbica species.
益生菌微生物被用于改善人和动物的健康和福利,关于这个主题的研究具有现实意义和兴趣。从蜜蜂生态系统中分离到的 55 株酵母,属于 Candida、Debaryomyces、Hanseniaspora、Lachancea、Metschnikowia、Meyerozyma、Starmerella 和 Zygosaccharomyces 属和相关的不同种,对其益生菌特性进行了评估。评估了它们对胃肠道条件的抵抗力、自聚集能力、细胞表面疏水性或生物膜形成能力以及对常见人病原菌的抗菌活性。还对菌株进行了安全性分析,以排除对消费者健康的任何潜在负面影响。还评估了蛋白酶处理活菌及其对 Caco-2 细胞的黏附能力的影响。在酸性 pH 和胆汁盐存在下的生存能力的第一个步骤中,筛选出的菌株最多,超过 50%的菌株无法存活。蛋白酶试验同样具有区分性,只有属于 Hanseniaspora guilliermondii、Hanseniaspora uvarum、Metschnikowia pulcherrima、Metschnikowia ziziphicola、Meyerozyma caribbica、Meyerozyma guilliermondii、Pichia kluyveri、Pichia kudriavzevii 和 Pichia terricola 等 27 个种的菌株能够存活。对获得的结果进行综合分析,发现了 7 株具有益生菌潜力的酵母菌株,它们都属于 Meyerozyma 属,其中 3 株属于 M. guillermondii,4 株属于 M. caribbica 种。