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Comparative Genomics of Pediococcus pentosaceus Isolated From Different Niches Reveals Genetic Diversity in Carbohydrate Metabolism and Immune System

机译:<斜视> Pediococcus pentosaceus的比较基因组学从不同的核桃分离出碳水化合物代谢和免疫系统遗传多样性

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Pediococcus pentosaceus isolated from fermented food and the gastrointestinal tracts of humans and animals have been widely identified, and some strains have been reported to reduce inflammation, encephalopathy, obesity and fatty liver in animals. In this study, the genomes of 65 P. pentosaceus strains isolated from human and animal feces and different fermented food were sequenced and comparative genomics analysis was performed on all strains along with nine sequenced representative strains to preliminarily reveal the lifestyle of P. pentosaceus , and investigate the genomic diversity within this species. The results reveal that P. pentosaceus is not host-specific, and shares core genes encoding proteins related to translation, ribosomal structure and biogenesis and signal transduction mechanisms, while its genetic diversity relates mainly to carbohydrate metabolism, and horizontally transferred DNA, especially prophages and bacteriocins encoded on plasmids. Additionally, this is the first report of a type IIA CRISPR/Cas system in P. pentosaceus. This work provides expanded resources of P. pentosaceus genomes, and offers a framework for understanding the biotechnological potential of this species.
机译:从发酵食品中分离的Pediococcus pentosaceus和人类和动物的胃肠道已经被广泛鉴定出来,据报道一些菌株可减少动物中的炎症,脑病,肥胖症和脂肪肝。在该研究中,测序了从人和动物粪便和不同发酵食物中分离的65pp.Pentosaceus菌株的基因组,并对所有菌株进行了比较基因组学分析,以及九个测序的代表性菌株,以预先揭示P. Pentosaceus的生活方式,以及调查该物种内的基因组多样性。结果表明,P. Pentosaceus不是宿主特异性的,并分享编码与翻译,核糖体结构和生物发生和信号转导机制相关的蛋白质的核心基因,而其遗传多样性主要涉及碳水化合物代谢,水平转移的DNA,尤其是预言在质粒上编码的菌丝病。此外,这是P. Pentosaceus型IIA型CRISPR / CAS系统的第一个报告。这项工作提供了P.Pentosaceus Genomes的扩展资源,并提供了理解该物种的生物技术潜力的框架。

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