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Genomic diversity of Lactobacillus salivarius

机译:唾液乳杆菌的基因组多样性

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摘要

Lactobacillus salivarius is unusual among the lactobacilli due to its multireplicon genome architecture. The circular megaplasmids harboured by L. salivarius strains encode strain-specific traits for intestinal survival and probiotic activity. L. salivarius strains are increasingly being exploited for their probiotic properties in humans and animals. In terms of probiotic strain selection, it is important to have an understanding of the level of genomic diversity present in this species. Comparative genomic hybridization (CGH) and multilocus sequence typing (MLST) were employed to assess the level of genomic diversity in L. salivarius. The wellcharacterised probiotic strains L. salivarius UCC118 was employed as a genetic reference strain. The group of test strains were chosen to reflect the range of habitats from which L. salivarius strains are frequently recovered, including human, animal, and environmental sources. Strains of L. salivarius were found to be genetically diverse when compared to the UCC118 genome. The most conserved strains were human GIT isolates, while the greatest level of divergence were identified in animal associated isolates. MLST produced a better separation of the test strains according to their isolation origins, than that produced by CGHbased strain clustering. The exopolysaccharide (EPS) associated genes of L. salivarius strains were found to be highly divergent. The EPS-producing phenotype was found to be carbonsource dependent and inversely related to a strain's ability to produce a biofilm. The genome of the porcine isolate L. salivarius JCM1046 was shown by sequencing to harbour four extrachromosomal replicons, a circular megaplasmid (pMP1046A), a putative chromid (pMP1046B), a linear megaplasmid (pLMP1046) and a smaller circular plasmid (pCTN1046) which contains an integrated Tn916-like element (Tn6224), which carries the tetracycline resistance gene tetM. pLMP1046 represents the first sequence of a linear plasmid in a Lactobacillus species. Dissemination of antibiotic resistance genes among species with food or probiotic-association is undesirable, and the identification of Tn6224-like elements in this species has implications for strain selection for probiotic applications. In summary, this thesis used a comparative genomics approach to examine the level of genotypic diversity in L. salivarius, a species which contains probiotic strains. The genome sequence of strain JCM1046 provides additional insight into the spectrum of extrachromosomal replicons present in this species.
机译:唾液乳杆菌由于其多复制子基因组结构而在乳杆菌中不常见。唾液乳杆菌菌株携带的圆形大质粒编码肠道存活和益生菌活性的菌株特异性特征。唾液乳杆菌菌株因其在人和动物中的益生特性而被越来越多地利用。就益生菌菌株的选择而言,重要的是要了解该物种中存在的基因组多样性水平。比较基因组杂交(CGH)和多基因座序列分型(MLST)被用来评估唾液乳杆菌的基因组多样性水平。表征良好的益生菌菌株唾液乳杆菌UCC118被用作遗传参考菌株。选择测试菌株的组以反映唾液乳杆菌菌株经常被恢复的栖息地范围,包括人,动物和环境来源。与UCC118基因组相比,唾液乳杆菌菌株在遗传上是多样的。最保守的菌株是人GIT分离株,而在与动物相关的分离株中鉴定出最大程度的差异。与基于CGH的菌株聚类产生的分离相比,MLST根据其分离来源对测试菌株进行了更好的分离。唾液乳杆菌菌株的胞外多糖(EPS)相关基因被发现高度趋异。发现产生EPS的表型是碳源依赖性的,并且与菌株产生生物膜的能力成反比。通过测序显示猪分离株唾液乳杆菌JCM1046的基因组具有四个染色体外复制子,一个环状大质粒(pMP1046A),一个假定的染色质(pMP1046B),一个线性大质粒(pLMP1046)和一个较小的环状质粒(pCTN1046),其中包含一个整合的Tn916样元件(Tn6224),该元件带有四环素抗性基因tetM。 pLMP1046代表乳酸杆菌种中线性质粒的第一个序列。与食物或益生菌相关的物种之间传播抗生素抗性基因是不可取的,这种物种中Tn6224样元素的鉴定对益生菌应用菌株的选择具有影响。总之,本文采用比较基因组学方法来研究唾液乳杆菌(一种含有益生菌菌株的物种)的基因型多样性水平。菌株JCM1046的基因组序列提供了对该物种中存在的染色体外复制子谱的更多了解。

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    Raftis Emma J.;

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  • 年度 2015
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