首页> 美国卫生研究院文献>Marine Drugs >Genome-Wide Comparison Reveals a Probiotic Strain Lactococcus lactis WFLU12 Isolated from the Gastrointestinal Tract of Olive Flounder (Paralichthys olivaceus) Harboring Genes Supporting Probiotic Action
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Genome-Wide Comparison Reveals a Probiotic Strain Lactococcus lactis WFLU12 Isolated from the Gastrointestinal Tract of Olive Flounder (Paralichthys olivaceus) Harboring Genes Supporting Probiotic Action

机译:全基因组比较揭示了从橄榄比目鱼(Paralichthys olivaceus)的胃肠道分离出的益生菌乳酸乳球菌WFLU12含有支持益生菌作用的基因。

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摘要

Our previous study has shown that dietary supplementation with Lactococcus lactis WFLU12 can enhance the growth of olive flounder and its resistance against streptococcal infection. The objective of the present study was to use comparative genomics tools to investigate genomic characteristics of strain WFLU12 and the presence of genes supporting its probiotic action using sequenced genomes of L. lactis strains. Dispensable and singleton genes of strain WFLU12 were found to be more enriched in genes associated with metabolism (e.g., energy production and conversion, and carbohydrate transport and metabolism) than pooled dispensable and singleton genes in other L. lactis strains, reflecting WFLU12 strain-specific ecosystem origin and its ability to metabolize different energy sources. Strain WFLU12 produced antimicrobial compounds that could inhibit several bacterial fish pathogens. It possessed the nisin gene cluster (nisZBTCIPRKFEG) and genes encoding lysozyme and colicin V. However, only three other strains (CV56, IO-1, and SO) harbor a complete nisin gene cluster. We also found that L. lactis WFLU12 possessed many other important functional genes involved in stress responses to the gastrointestinal tract environment, dietary energy extraction, and metabolism to support the probiotic action of this strain found in our previous study. This strongly indicates that not all L. lactis strains can be used as probiotics. This study highlights comparative genomics approaches as very useful and powerful tools to select probiotic candidates and predict their probiotic effects.
机译:我们以前的研究表明,饮食中添加乳酸乳球菌WFLU12可以增强比目鱼的生长及其对链球菌感染的抵抗力。本研究的目的是使用比较基因组学工具来研究菌株WFLU12的基因组特征以及使用乳酸乳球菌菌株的测序基因组来支持其益生菌作用的基因的存在。发现与其他乳酸杆菌菌株中汇集的可分配和单例基因相比,菌株WFLU12的可分配和单例基因在代谢相关基因(例如,能量产生和转化以及碳水化合物运输和代谢)中的富集程度更高,反映了WFLU12菌株特异性生态系统起源及其代谢不同能源的能力。菌株WFLU12产生的抗菌化合物可以抑制几种细菌鱼病原体。它拥有乳链菌肽基因簇(nisZBTCIPRKFEG)以及编码溶菌酶和大肠菌素V的基因。但是,只有其他三个菌株(CV56,IO-1和SO)具有完整的乳链菌肽基因簇。我们还发现,乳酸乳球菌WFLU12具有许多其他重要的功能基因,参与了对胃肠道环境的应激反应,饮食能量提取和代谢,以支持我们先前研究中发现的该菌株的益生菌作用。这有力地表明并非所有的乳酸乳球菌菌株都可以用作益生菌。这项研究强调了比较基因组学方法是选择益生菌候选物并预测其益生菌作用的非常有用和强大的工具。

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