Su Xu, Jianjun Cheng, Xiangchen Meng, Yan Xu, Ying Mu
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引用次数: 4
Abstract
Lactobacillus reuteri YSJL-12 was isolated from healthy sow fresh feces and used as probiotics additives previously. To investigate the genetic basis on probiotic potential and identify the genes in the strain, the complete genome of YSJL-12 was sequenced. Then comparative genome analysis on 9 strains of Lactobacillus reuteri was performed. The genome of YSJL-12 consisted of a circular 2,084,748 bp chromosome and 2 circular plasmids (51,906 and 15,134 bp). From among the 2065 protein-coding sequences (CDSs), the genes resistant to the environmental stress were identified. The function of COG (Clusters of Orthologous Group) protein genes was predicted, and the KEGG (Kyoto Encyclopedia of Genes and Genomes) pathways were analyzed. The comparative genome analysis indicated that the pan-genome contained a core genome of 1257 orthologous gene clusters, an accessory genome of 1064 orthologous gene clusters, and 1148 strain-specific genes, and the antibacterial mechanism among Lactobacillus reuteri strains might be different. The phylogenetic analysis and genomic collinearity revealed that the phylogenetic relationship among 9 strains of Lactobacillus reuteri was connected with host species and showed host specificity. The research could help us to better predict genes function and understand genetic basis on adapting to host gut in Lactobacillus reuteri YSJL-12.
罗伊氏乳杆菌YSJL-12是从健康母猪新鲜粪便中分离得到的,曾作为益生菌添加剂使用。为了研究该菌株益生菌潜力的遗传基础和鉴定菌株的基因,对YSJL-12进行了全基因组测序。对9株罗伊氏乳杆菌进行比较基因组分析。YSJL-12基因组由一条环状2084748 bp的染色体和两个环状质粒(51906 bp和15134 bp)组成。从2065个蛋白质编码序列(CDSs)中鉴定出抗环境胁迫的基因。预测了COG (Clusters of Orthologous Group)蛋白基因的功能,并分析了KEGG (Kyoto Encyclopedia of genes and Genomes)通路。比较基因组分析表明,该泛基因组包含1257个同源基因簇的核心基因组,1064个同源基因簇的辅助基因组,以及1148个菌株特异性基因,菌株间的抑菌机制可能存在差异。系统发育分析和基因组共线性分析表明,9株罗伊氏乳杆菌的系统发育关系与宿主种类有关,具有宿主特异性。本研究有助于更好地预测罗伊氏乳杆菌YSJL-12的基因功能,了解其适应宿主肠道的遗传基础。
期刊介绍:
Evolutionary Bioinformatics is an open access, peer reviewed international journal focusing on evolutionary bioinformatics. The journal aims to support understanding of organismal form and function through use of molecular, genetic, genomic and proteomic data by giving due consideration to its evolutionary context.