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Complete genome sequence of Citrobacter werkmanii strain BF-6 isolated from industrial putrefaction

机译:从工业腐烂中分离出的韦氏曼氏柠檬酸杆菌BF-6菌株的完整基因组序列

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Background In our previous study, Citrobacter werkmanii BF-6 was isolated from an industrial spoilage sample and demonstrated an excellent ability to form biofilms, which could be affected by various environmental factors. However, the genome sequence of this organism has not been reported so far. Results We report the complete genome sequence of C. werkmanii BF-6 together with the description of the genome features and its annotation. The size of the complete chromosome is 4,929,789?bp with an average coverage of 137×. The chromosome exhibits an average G?+?C content of 52.0%, and encodes 4570 protein coding genes, 84 tRNA genes, 25 rRNA operons, 3 microsatellite sequences and 34 minisatellite sequences. A previously unknown circular plasmid designated as pCW001 was also found with a length of 212,549?bp and a G?+?C content of 48.2%. 73.5%, 75.6% and 92.6% of the protein coding genes could be assigned to GO Ontology, KEGG Pathway, and COG (Clusters of Orthologous Groups) categories respectively. C. werkmanii BF-6 and C. werkmanii NRBC 105721 exhibited the closest evolutionary relationships based on 16S ribosomal RNA and core-pan genome assay. Furthermore, C. werkmanii BF-6 exhibits typical bacterial biofilm formation and development. In the RT-PCR experiments, we found that a great number of biofilm related genes, such as bsmA , bssR , bssS , hmsP , tabA , csgA , csgB , csgC , csgD , csgE , and csgG , were involved in C. werkmanii BF-6 biofilm formation. Conclusions This is the first complete genome of C. werkmanii . Our work highlights the potential genetic mechanisms involved in biofilm formation and paves a way for further application of C. werkmanii in biofilms research.
机译:背景技术在我们先前的研究中,从工业腐败样品中分离出韦氏柠檬酸杆菌BF-6,并证明了其形成生物膜的出色能力,这种生物膜可能会受到各种环境因素的影响。但是,至今尚未报道该生物的基因组序列。结果我们报告了C. werkmanii BF-6的完整基因组序列,以及对基因组特征及其注释的描述。完整染色体的大小为4,929,789?bp,平均覆盖率为137倍。该染色体的G 2 +ΔC平均含量为52.0%,并编码4570个蛋白质编码基因,84个tRNA基因,25个rRNA操纵子,3个微卫星序列和34个微卫星序列。还发现了一个以前未知的称为pCW001的环状质粒,其长​​度为212,549?bp,Gδ+?C含量为48.2%。分别将73.5%,75.6%和92.6%的蛋白质编码基因分配给GO Ontology,KEGG Pathway和COG(直系同源群)类别。基于16S核糖体RNA和核心-泛基因组测定,C。werkmanii BF-6和C. werkmanii NRBC 105721表现出最紧密的进化关系。此外,C。werkmanii BF-6表现出典型的细菌生物膜形成和发育。在RT-PCR实验中,我们发现大量生物膜相关基因,例如bsmA,bssR,bssS,hmsP,tabA,csgA,csgB,csgC,csgD,csgE和csgG都与韦氏曼氏梭菌有关。 -6生物膜形成。结论这是温氏梭菌的第一个完整基因组。我们的工作突出了参与生物膜形成的潜在遗传机制,并为在生物膜研究中进一步应用C. werkmanii铺平了道路。

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