首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Homologous recombination is facilitated in starving populations of Pseudomonas putida by phenol stress and affected by chromosomal location of the recombination target
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Homologous recombination is facilitated in starving populations of Pseudomonas putida by phenol stress and affected by chromosomal location of the recombination target

机译:苯酚胁迫可促进恶性恶臭假单胞菌种群的同源重组,并受重组靶标染色体位置的影响

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Homologous recombination (HR) has a major impact in bacterial evolution. Most of the knowledge about the mechanisms and control of HR in bacteria has been obtained in fast growing bacteria. However, in their natural environment bacteria frequently meet adverse conditions which restrict the growth of cells. We have constructed a test system to investigate HR between a plasmid and a chromosome in carbon-starved populations of the soil bacterium Pseudomonas putida restoring the expression of phenol monooxygenase gene pheA. Our results show that prolonged starvation of P. putida in the presence of phenol stimulates HR. The emergence of recombinants on selective plates containing phenol as an only carbon source for the growth of recombinants is facilitated by reactive oxygen species and suppressed by DNA mismatch repair enzymes. Importantly, the chromosomal location of the HR target influences the frequency and dynamics of HR events. In silico analysis of binding sites of nucleoid-associated proteins (NAPs) revealed that chromosomal DNA regions which flank the test system in bacteria exhibiting a lower HR frequency are enriched in binding sites for a subset of NAPs compared to those which express a higher frequency of HR. We hypothesize that the binding of these proteins imposes differences in local structural organization of the genome that could affect the accessibility of the chromosomal DNA to HR processes and thereby the frequency of HR.
机译:同源重组(HR)对细菌进化有重要影响。关于细菌中HR的机制和控制的大多数知识是在快速生长的细菌中获得的。但是,细菌在其自然环境中经常遇到不利条件,这些条件限制了细胞的生长。我们已经构建了一个测试系统,以研究土壤细菌细菌恶臭假单胞菌碳饥饿种群中质粒和染色体之间的HR,以恢复酚单加氧酶基因pheA的表达。我们的结果表明,在苯酚存在下恶臭假单胞菌的长期饥饿会刺激HR。活性氧促进了重组体在含有苯酚作为唯一的碳源的选择性平板上的生长,而活性氧促进了重组体的生长,DNA错配修复酶抑制了重组体的生长。重要的是,HR靶标的染色体位置影响HR事件的频率和动力学。在对核苷酸相关蛋白(NAPs)结合位点的计算机分析中发现,与表现出较高HR频率的NAP子集相比,位于表现出较低HR频率的细菌中位于测试系统侧面的染色体DNA区域富集了一部分NAPs的结合位点。人力资源部我们假设这些蛋白的结合在基因组的局部结构组织中施加了差异,这可能影响染色体DNA对HR过程的可及性,从而影响HR的频率。

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