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首页> 外文期刊>Gut Pathogens >Whole-genome sequence assembly of Pediococcus pentosaceus LI05 (CGMCC 7049) from the human gastrointestinal tract and comparative analysis with representative sequences from three food-borne strains
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Whole-genome sequence assembly of Pediococcus pentosaceus LI05 (CGMCC 7049) from the human gastrointestinal tract and comparative analysis with representative sequences from three food-borne strains

机译:人体胃肠道戊糖片球菌LI05(CGMCC 7049)的全基因组序列组装以及与三种食源性菌株的代表性序列的比较分析

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Background Strains of Pediococcus pentosaceus from food and the human gastrointestinal tract have been widely identified, and some have been reported to reduce inflammation, encephalopathy, obesity and fatty liver in animals. In this study, we sequenced the whole genome of P. pentosaceus LI05 (CGMCC 7049), which was isolated from the fecal samples of healthy volunteers, and determined its ability to reduce acute liver injury. No other genomic information for gut-borne P. pentosaceus is currently available in the public domain. Results We obtained the draft genome of P. pentosaceus LI05, which was 1,751,578 bp in size and possessed a mean G?+?C content of 37.3%. This genome encoded an abundance of proteins that were protective against acids, bile salts, heat, oxidative stresses, enterocin A, arsenate and universal stresses. Important adhesion proteins were also encoded by the genome. Additionally, P. pentosaceus LI05 genes encoded proteins associated with the biosynthesis of not only three antimicrobials, including prebacteriocin, lysin and colicin V, but also vitamins and functional amino acids, such as riboflavin, folate, biotin, thiamine and gamma-aminobutyrate. A comparison of P. pentosaceus LI05 with all known genomes of food-borne P. pentosaceus strains (ATCC 25745, SL4 and IE-3) revealed that it possessed four novel exopolysaccharide biosynthesis proteins, additional putative environmental stress tolerance proteins and phage-related proteins. Conclusions This work demonstrated the probiotic properties of P. pentosaceus LI05 from the gut and the three other food-borne P. pentosaceus strains through genomic analyses. We have revealed the major genomic differences between these strains, providing a framework for understanding the probiotic effects of strain LI05, which exhibits unique physiological and metabolic properties.
机译:背景技术已经广泛鉴定了来自食物和人胃肠道的戊糖小球菌的菌株,并且据报道一些菌株可减轻动物的炎症,脑病,肥胖症和脂肪肝。在这项研究中,我们对从健康志愿者粪便样本中分离出来的戊糖假单胞菌LI05(CGMCC 7049)的全基因组进行了测序,并确定了其减轻急性肝损伤的能力。目前在公共领域尚无关于肠道传播的戊糖假单胞菌的其他基因组信息。结果我们获得了P.pentosaceus LI05的基因组草图,其大小为1,751,578 bp,平均Gα+ΔC含量为37.3%。该基因组编码了丰富的蛋白质,这些蛋白质可抵抗酸,胆汁盐,热量,氧化应激,肠球蛋白A,砷酸盐和普遍应激。重要的粘附蛋白也由基因组编码。此外,戊糖假单胞菌LI05基因编码的蛋白质不仅与三种抗菌素的生物合成有关,包括前细菌素,溶素和大肠菌素V,而且还与维生素和功能性氨基酸(如核黄素,叶酸,生物素,硫胺素和γ-氨基丁酸)的生物合成有关。戊糖假单胞菌LI05与食源性戊糖假单胞菌菌株的所有已知基因组(ATCC 25745,SL4和IE-3)的比较表明,它具有四个新颖的​​胞外多糖生物合成蛋白,其他假定的环境胁迫耐受蛋白和噬菌体相关蛋白。结论这项工作通过基因组分析证明了来自肠道的戊糖假单胞菌LI05和其他三个食源性戊糖假单胞菌菌株的益生菌特性。我们已经揭示了这些菌株之间的主要基因组差异,为理解LI05菌株的益生菌作用提供了框架,LI05菌株表现出独特的生理和代谢特性。

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