Department of Agronomy Food Natural Resources Animal and Environment (DAFNAE), University of Padova, viale dell'Università 16, 35020, Legnaro, PD, Italy.
Faculty of Science and Technology, Free University of Bolzano, 39100, Bolzano, Italy.
Curr Microbiol. 2020 Oct;77(10):2867-2875. doi: 10.1007/s00284-020-02089-x. Epub 2020 Jul 4.
The whole genome sequence of Lactobacillus paracasei DTA72, isolated from healthy infant feces, is reported, along with the Carbohydrates-Active enZymes (CAZymes) analysis and an in silico safety assessment. Strain DTA72 had previously demonstrated some interesting potential probiotic features, such as a good resistance to gastrointestinal conditions and an anti-Listeria activity. The 3.1 Mb sequenced genome consists of 3116 protein-coding sequences distributed on 340 SEED subsystems. In the present study, we analyzed the fermentation capability of strain DTA72 on six different carbohydrate sources, namely, glucose, fructose, lactose, galactose, xylose, and inulin by using phenotypical and genomic approaches. Interestingly, L. paracasei DTA72 evidenced the best growth performances on inulin with a much shorter lag phase and higher number of cells at the stationary phase in comparison with all the sugars tested. The CAZyme analysis using the predicted amino acid sequences detected 80 enzymes, distributed into the five CAZymes classes. Moreover, the in silico analysis revealed the absence of blood hemolytic genes, transmissible antibiotic resistances, and plasmids in DTA72. The results described in this study, together with those previously reported and particularly the strong capability to utilize inulin as energy source, make DTA72 a very interesting potential probiotic strain to be considered for the production of synbiotic foods. The complete genome data have been deposited in GenBank under the accession number WUJH00000000.
本研究报道了从健康婴儿粪便中分离出的副干酪乳杆菌 DTA72 的全基因组序列,并对其碳水化合物活性酶(CAZymes)进行了分析和计算机安全评估。该菌株 DTA72 先前表现出一些有趣的潜在益生菌特性,如对胃肠道条件的良好抗性和抗李斯特菌活性。测序得到的 3.1 Mb 基因组由 3116 个蛋白编码序列组成,分布在 340 个 SEED 子系统上。在本研究中,我们通过表型和基因组方法分析了 DTA72 菌株对六种不同碳水化合物源(葡萄糖、果糖、乳糖、半乳糖、木糖和菊粉)的发酵能力。有趣的是,与所有测试的糖相比,副干酪乳杆菌 DTA72 在菊粉上表现出最佳的生长性能,其迟滞期更短,静止期的细胞数量更多。使用预测的氨基酸序列进行 CAZyme 分析检测到 80 种酶,分布在 5 个 CAZymes 类中。此外,计算机分析显示 DTA72 中不存在血液溶血基因、可传播的抗生素抗性和质粒。本研究描述的结果与之前报道的结果相结合,特别是其利用菊粉作为能源的强大能力,使 DTA72 成为一种非常有前途的益生菌菌株,可用于生产共生食品。完整的基因组数据已在 GenBank 中以 WUJH00000000 号 accession 号进行了提交。