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唾液乳杆菌JCM1046中异常的基因组复杂性。

Unusual genome complexity in Lactobacillus salivarius JCM1046.

作者信息

Raftis Emma J, Forde Brian M, Claesson Marcus J, O'Toole Paul W

机构信息

School of Microbiology University College Cork, Cork, Ireland.

出版信息

BMC Genomics. 2014 Sep 8;15(1):771. doi: 10.1186/1471-2164-15-771.

Abstract

BACKGROUND

Lactobacillus salivarius strains are increasingly being exploited for their probiotic properties in humans and animals. Dissemination of antibiotic resistance genes among species with food or probiotic-association is undesirable and is often mediated by plasmids or integrative and conjugative elements. L. salivarius strains typically have multireplicon genomes including circular megaplasmids that encode strain-specific traits for intestinal survival and probiotic activity. Linear plasmids are less common in lactobacilli and show a very limited distribution in L. salivarius. Here we present experimental evidence that supports an unusually complex multireplicon genome structure in the porcine isolate L. salivarius JCM1046.

RESULTS

JCM1046 harbours a 1.83 Mb chromosome, and four plasmids which constitute 20% of the genome. In addition to the known 219 kb repA-type megaplasmid pMP1046A, we identified and experimentally validated the topology of three additional replicons, the circular pMP1046B (129 kb), a linear plasmid pLMP1046 (101 kb) and pCTN1046 (33 kb) harbouring a conjugative transposon. pMP1046B harbours both plasmid-associated replication genes and paralogues of chromosomally encoded housekeeping and information-processing related genes, thus qualifying it as a putative chromid. pLMP1046 shares limited sequence homology or gene synteny with other L. salivarius plasmids, and its putative replication-associated protein is homologous to the RepA/E proteins found in the large circular megaplasmids of L. salivarius. Plasmid pCTN1046 harbours a single copy of an integrated conjugative transposon (Tn6224) which appears to be functionally intact and includes the tetracycline resistance gene tetM.

CONCLUSION

Experimental validation of sequence assemblies and plasmid topology resolved the complex genome architecture of L. salivarius JCM1046. A high-coverage draft genome sequence would not have elucidated the genome complexity in this strain. Given the expanding use of L. salivarius as a probiotic, it is important to determine the genotypic and phenotypic organization of L. salivarius strains. The identification of Tn6224-like elements in this species has implications for strain selection for probiotic applications.

摘要

背景

唾液乳杆菌菌株因其在人和动物中的益生菌特性而越来越多地被开发利用。抗生素抗性基因在与食品或益生菌相关的物种之间传播是不可取的,并且通常由质粒或整合与接合元件介导。唾液乳杆菌菌株通常具有多复制子基因组,包括环状大质粒,这些大质粒编码用于肠道存活和益生菌活性的菌株特异性特征。线性质粒在乳杆菌中不太常见,并且在唾液乳杆菌中的分布非常有限。在此,我们提供了实验证据,支持猪源分离株唾液乳杆菌JCM1046中存在异常复杂的多复制子基因组结构。

结果

JCM1046含有一条1.83 Mb的染色体和四个质粒,这些质粒占基因组的20%。除了已知的219 kb repA 型大质粒pMP1046A外,我们还鉴定并通过实验验证了另外三个复制子的拓扑结构,环状的pMP1046B(129 kb)、一个线性质粒pLMP1046(101 kb)和携带接合转座子的pCTN1046(33 kb)。pMP1046B既含有与质粒相关的复制基因,也含有染色体编码的管家基因和信息处理相关基因的旁系同源物,因此将其鉴定为假定的染色体外复制子。pLMP1046与其他唾液乳杆菌质粒的序列同源性或基因共线性有限,其假定的复制相关蛋白与在唾液乳杆菌大环状大质粒中发现的RepA/E蛋白同源。质粒pCTN1046含有一个整合接合转座子(Tn6224)的单拷贝,该转座子似乎功能完整,并且包含四环素抗性基因tetM。

结论

序列组装和质粒拓扑结构的实验验证解析了唾液乳杆菌JCM1046复杂的基因组结构。高覆盖度的基因组草图序列无法阐明该菌株的基因组复杂性。鉴于唾液乳杆菌作为益生菌的使用日益广泛,确定唾液乳杆菌菌株的基因型和表型组织非常重要。在该物种中鉴定出Tn6224样元件对益生菌应用的菌株选择具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63fd/4165912/e513751b3541/12864_2014_6438_Fig1_HTML.jpg

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