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UV-induced dark repair mechanisms in bacteria associated with drinking water

机译:紫外线引起的与饮用水有关的细菌中的黑暗修复机制

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Caulobacter crescentus and Aquabacterium commune, both isolated from drinking water, as well as environmental isolates of Pseudomonas aeruginosa and Enterococcus faecium were treated with different UV fluences to study their capacity to restore induced DNA damages. Here, the induction of a key mechanism of bacterial dark repair, the so-called recA system, was analysed. With newly designed probes, the specific recA mRNA was detected by Northern blot. Additionally, the RecA protein was measured by the Western blot technique using a specific antibody. In drinking water bacteria as well as in opportunistic microorganisms, a specific induction of dark repair mechanisms was found even at UV fluences higher than 400J/m~2, the German standard for UV disinfection. This induction depended on the incubation time after UV treatment. Nevertheless, the UV-induced recA expressions were found to differ in the bacteria under investigation.
机译:从饮用水中分离出的新月形杆菌和水杆菌属,以及铜绿假单胞菌和粪肠球菌的环境分离物,分别用不同的紫外线通量进行处理,以研究其恢复诱导的DNA损伤的能力。在这里,分析了细菌暗修复的关键机制,即所谓的recA系统的诱导。使用新设计的探针,通过RNA印迹检测特异性recA mRNA。另外,使用特异性抗体通过蛋白质印迹技术测量RecA蛋白。在饮用水细菌以及机会性微生物中,即使在紫外线通量高于德国紫外线消毒标准400J / m〜2的情况下,也发现了一种特殊的暗修复机理。这种诱导取决于紫外线处理后的孵育时间。然而,在研究的细菌中发现紫外线诱导的recA表达不同。

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