BGI College, Zhengzhou University, Zhengzhou, 450052, China.
School of Life Sciences, Zhengzhou University, Zhengzhou, 450001, China.
J Microbiol. 2021 Jun;59(6):573-583. doi: 10.1007/s12275-021-0618-6. Epub 2021 May 15.
Pediococcus acidilactici is a reliable bacteriocin producer and a promising probiotic species with wide application in the food and health industry. However, the underlying genetic features of this species have not been analyzed. In this study, we performed a comprehensive comparative genomic analysis of 41 P. acidilactici strains from various ecological niches. The bacteriocin production of 41 strains were predicted and three kinds of bacteriocin encoding genes were identified in 11 P. acidilactici strains, namely pediocin PA-1, enterolysin A, and colicin-B. Moreover, whole-genome analysis showed a high genetic diversity within the population, mainly related to a large proportion of variable genomes, mobile elements, and hypothetical genes obtained through horizontal gene transfer. In addition, comparative genomics also facilitated the genetic explanation of the adaptation for host environment, which specify the protection mechanism against the invasion of foreign DNA (i.e. CRISPR/Cas locus), as well as carbohydrate fermentation. The 41 strains of P. acidilactici can metabolize a variety of carbon sources, which enhances the adaptability of this species and survival in different environments. This study evaluated the antibacterial ability, genome evolution, and ecological flexibility of P. acidilactici from the perspective of genetics and provides strong supporting evidence for its industrial development and application.
植物乳杆菌是一种可靠的细菌素产生菌,也是一种有前途的益生菌,在食品和健康行业中有广泛的应用。然而,该物种的潜在遗传特征尚未得到分析。在这项研究中,我们对来自不同生态位的 41 株植物乳杆菌进行了全面的比较基因组分析。预测了 41 株菌的细菌素产生能力,并在 11 株植物乳杆菌中鉴定出 3 种细菌素编码基因,即乳杆菌素 PA-1、肠菌素 A 和 colicin-B。此外,全基因组分析显示该种群内具有很高的遗传多样性,主要与大量可变基因组、移动元件和通过水平基因转移获得的假设基因有关。此外,比较基因组学还促进了对宿主环境适应的遗传解释,这说明了针对外来 DNA(即 CRISPR/Cas 基因座)入侵的保护机制,以及碳水化合物发酵。41 株植物乳杆菌可以代谢多种碳源,这增强了该物种的适应性和在不同环境中的生存能力。本研究从遗传学的角度评估了植物乳杆菌的抗菌能力、基因组进化和生态灵活性,为其工业发展和应用提供了有力的证据支持。