Department of Life Science, Chung-Ang University, Seoul, 06974, Republic of Korea.
Microbiology and Functionality Research Group, World Institute of Kimchi, Gwangju, 61755, Republic of Korea.
Sci Rep. 2017 Sep 14;7(1):11504. doi: 10.1038/s41598-017-12016-z.
The genomic and metabolic features of Leuconostoc (Leu) mesenteroides were investigated through pan-genomic and transcriptomic analyses. Relatedness analysis of 17 Leu. mesenteroides strains available in GenBank based on 16S rRNA gene sequence, average nucleotide identity, in silico DNA-DNA hybridization, molecular phenotype, and core-genome indicated that Leu. mesenteroides has been separated into different phylogenetic lineages. Pan-genome of Leu. mesenteroides strains, consisting of 999 genes in core-genome, 1,432 genes in accessory-genome, and 754 genes in unique genome, and their COG and KEGG analyses showed that Leu. mesenteroides harbors strain-specifically diverse metabolisms, probably representing high evolutionary genome changes. The reconstruction of fermentative metabolic pathways for Leu. mesenteroides strains showed that Leu. mesenteroides produces various metabolites such as lactate, ethanol, acetate, CO, mannitol, diacetyl, acetoin, and 2,3-butanediol through an obligate heterolactic fermentation from various carbohydrates. Fermentative metabolic features of Leu. mesenteroides during kimchi fermentation were investigated through transcriptional analyses for the KEGG pathways and reconstructed metabolic pathways of Leu. mesenteroides using kimchi metatranscriptomic data. This was the first study to investigate the genomic and metabolic features of Leu. mesenteroides through pan-genomic and metatranscriptomic analyses, and may provide insights into its genomic and metabolic features and a better understanding of kimchi fermentations by Leu. mesenteroides.
通过全基因组和转录组分析研究了肠膜明串珠菌(Leuconostoc)的基因组和代谢特征。基于 16S rRNA 基因序列、平均核苷酸同一性、计算机 DNA-DNA 杂交、分子表型和核心基因组对 GenBank 中可用的 17 株肠膜明串珠菌菌株的亲缘关系分析表明,肠膜明串珠菌已分为不同的进化谱系。肠膜明串珠菌菌株的全基因组由核心基因组中的 999 个基因、辅助基因组中的 1432 个基因和独特基因组中的 754 个基因组成,其 COG 和 KEGG 分析表明,肠膜明串珠菌具有菌株特异性的多样化代谢途径,可能代表了高进化基因组的变化。肠膜明串珠菌菌株发酵代谢途径的重建表明,肠膜明串珠菌通过从各种碳水化合物进行强制性异型乳酸发酵产生各种代谢物,如乳酸、乙醇、乙酸、CO、甘露醇、二乙酰、乙酰丙酮和 2,3-丁二醇。通过对 KEGG 途径的转录分析和使用泡菜宏转录组数据重建肠膜明串珠菌的代谢途径,研究了肠膜明串珠菌在泡菜发酵过程中的发酵代谢特征。这是首次通过全基因组和宏转录组分析研究肠膜明串珠菌的基因组和代谢特征的研究,可能为其基因组和代谢特征提供了新的见解,并更好地了解肠膜明串珠菌对泡菜发酵的影响。