Ahire J J, Kashikar M S, Madempudi R S
Centre for Research and Development, Unique Biotech Ltd, Plot No. 2, Phase-II, Alexandria Knowledge Park, Hyderabad, Telangana India.
3 Biotech. 2021 Mar;11(3):116. doi: 10.1007/s13205-021-02668-0. Epub 2021 Feb 6.
In this study, the spores and vegetative cells of were independently evaluated for probiotic properties such as acid, gastric juice, bile, and intestinal fluid tolerance, adhesion to solvents/mucin and zeta potential. In addition, in silico identification of genome features contributing to probiotic properties were investigated. The results showed that spores were highly stable at gastric acidity and capable to germinate and multiply under intestinal conditions as compared to vegetative cells. The higher hydrophobicity of spores, compared to vegetative cells, is advantageous for colonization and persistence in the intestine. Furthermore, the presence of ATP synthase, amino acid decarboxylase, bile acid symporter, mucin/collagen/fibronectin-binding proteins, heat/cold shock proteins, and universal stress proteins suggests that the strain is able to survive stress. In conclusion, the results demonstrate that UBBC07 spores show significantly higher survival and adhesion in in vitro gastrointestinal conditions as compared to vegetative cells. Besides, this study provides a comparative analysis of the in vitro probiotic properties of spores and vegetative cells of UBBC07.
在本研究中,对[具体菌株名称]的孢子和营养细胞分别进行了益生菌特性评估,如耐酸、耐胃液、耐胆汁和耐肠液能力、对溶剂/黏蛋白的黏附性以及zeta电位。此外,还对有助于益生菌特性的基因组特征进行了计算机鉴定。结果表明,与营养细胞相比,孢子在胃酸环境中高度稳定,且能够在肠道条件下萌发和繁殖。与营养细胞相比,孢子具有更高的疏水性,这有利于在肠道中定殖和持续存在。此外,[具体菌株名称]中存在ATP合酶、氨基酸脱羧酶、胆汁酸转运体、黏蛋白/胶原蛋白/纤连蛋白结合蛋白、热/冷休克蛋白和通用应激蛋白,表明该菌株能够在应激条件下存活。总之,结果表明,与营养细胞相比,UBBC07孢子在体外胃肠道条件下表现出显著更高的存活率和黏附性。此外,本研究对UBBC07孢子和营养细胞的体外益生菌特性进行了比较分析。