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Draft Genome Comparison of Representatives of the Three Dominant Genotype Groups of Dairy Bacillus licheniformis Strains

机译:地衣芽孢杆菌三个主要基因型组代表的基因组比较草案

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The spore-forming bacterium Bacillus licheniformis is a common contaminant of milk and milk products. Strains of this species isolated from dairy products can be differentiated into three major groups, namely, G, F1, and F2, using random amplification of polymorphic DNA (RAPD) analysis; however, little is known about the genomic differences between these groups and the identity of the fragments that make up their RAPD profiles. In this work we obtained high-quality draft genomes of representative strains from each of the three RAPD groups (designated strain G-1, strain F1-1, and strain F2-1) and compared them to each other and to B. licheniformis ATCC 14580 and Bacillus subtilis 168. Whole-genome comparison and multilocus sequence typing revealed that strain G-1 contains significant sequence variability and belongs to a lineage distinct from the group F strains. Strain G-1 was found to contain genes coding for a type I restriction modification system, urease production, and bacitracin synthesis, as well as the 8-kbp plasmid pFL7, and these genes were not present in strains F1-1 and F2-1. In agreement with this, all isolates of group G, but no group F isolates, were found to possess urease activity and antimicrobial activity against Micrococcus . Identification of RAPD band sequences revealed that differences in the RAPD profiles were due to differences in gene lengths, 3′ ends of predicted primer binding sites, or gene presence or absence. This work provides a greater understanding of the phylogenetic and phenotypic differences observed within the B. licheniformis species.
机译:形成孢子的地衣芽孢杆菌是牛奶和奶制品的常见污染物。从乳制品中分离出的该菌种可以通过随机扩增多态性DNA(RAPD)分析分为三大类,即G,F1和F2。然而,对于这些组之间的基因组差异以及组成其RAPD图谱的片段的身份了解甚少。在这项工作中,我们从三个RAPD组(指定的菌株G-1,菌株F1-1和菌株F2-1)中获得了代表菌株的高质量草图基因组,并将它们彼此以及与地衣芽孢杆菌ATCC进行了比较。 14580和枯草芽孢杆菌168。全基因组比较和多基因座序列分型显示,菌株G-1包含明显的序列变异性,属于不同于F组的谱系。发现菌株G-1包含编码I型限制性修饰系统,脲酶产生和杆菌肽合成的基因,以及8-kbp质粒pFL7,这些基因在菌株F1-1和F2-1中不存在。 。与此相一致,发现G组的所有分离株,但没有F组的分离株,具有脲酶活性和对微球菌的抗菌活性。 RAPD条带序列的鉴定表明,RAPD图谱的差异是由于基因长度,预测的引物结合位点的3'末端或基因存在或不存在的差异所致。这项工作提供了对地衣芽孢杆菌物种内观察到的系统发育和表型差异的更好理解。

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