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Streptococcus pneumoniae R6 interspecies transformation: Genetic analysis of penicillin resistance determinants and genome-wide recombination events

机译:肺炎链球菌R6种间转化:青霉素抗性决定簇和全基因组重组事件的遗传分析

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Interspecies gene transfer has been implicated as the major driving force for the evolution of penicillin resistance in Streptococcus pneumoniae. Genomic alterations of S. pneumoniae R6 introduced during four successive transformations with DNA of the high-level penicillin-resistant Streptococcus mitis B6 with beta-lactam selection have now been determined and the contribution of genes to high resistance levels was analysed genetically. Essential for high level resistance to penicillins of the transformant CCCB was the combination of murM B6 and the 3' region of pbp2b B6. Sequences of both genes were detected in clinical isolates of S. pneumoniae, confirming the participation of S. mitis in the global gene pool of beta-lactam resistance determinants. The S. mitis PBP1b gene which contains an authentic stop codon within the transpeptidase domain is now shown to contribute only marginal to resistance, but it is possible that the presence of its transglycosylase domain is important in the context of cognate PBPs. The genome sequence of CCCB revealed 36 recombination events, including deletion and acquisition of genes and repeat elements. A total of 78 genes were affected representing 67kb or 3.3% of the genome, documenting extensive alterations scattered throughout the genome.
机译:种间基因转移被认为是肺炎链球菌中青霉素抗性进化的主要驱动力。现在已经确定了在四次连续的转化过程中引入的肺炎链球菌R6的基因组变化,该转化是由高抗青霉素B6链球菌B6选配的高抗性青霉素B6的DNA进行的,目前已通过基因分析了基因对高抗性的贡献。 murM B6和pbp2b B6的3'区域的结合对转化株CCCB的青霉素具有高水平的抗性。在肺炎链球菌的临床分离物中检测到了这两个基因的序列,证实了链球菌参与了β-内酰胺抗性决定簇的全球基因库。现在显示在转肽酶结构域内包含真实终止密码子的链球菌PBP1b基因仅对抗性产生很小的贡献,但在关联PBP的背景下,其转糖基化酶结构域的存在可能很重要。 CCCB的基因组序列揭示了36个重组事件,包括基因的缺失和获得以及重复元件。总共影响了78个基因,占基因组的67kb或3.3%,记录了散布在整个基因组中的广泛变化。

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