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Synergistic effect of heat and solar uv on DNA damage and water disinfection of E. coli and bacteriophage MS2

机译:热和太阳紫外线对大肠杆菌和噬菌体MS2的DNA损伤和水消毒的协同作用

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摘要

The response of a representative virus and indicator bacteria to heating, solar irradiation, or their combination, was investigated in a controlled solar simulator and under real sun conditions. Heating showed higher inactivation of Escherichia coli compared to the bacteriophage MS2. Heating combined with natural or simulated solar irradiation demonstrated a synergistic effect on the inactivation of E. coli, with up to 3-log difference for 50 ℃ and natural sun insolation of 2,000 kJ m~(-2) (compared to the sum of the separate treatments). Similar synergistic effect was also evident when solar-UV induced DNA damage to E. coli was assessed using the endonuclease sensitive site assay (ESS). MS2 was found to be highly resistant to irradiation and heat, with a slightly synergistic effect observed only at 59 ℃ and natural sun insolation of 5,580 kJ m~(-2). Heat treatment also hindered light-dependent recovery of E. coli making the treatment much more effective.
机译:在受控的太阳模拟器中和在真实的阳光条件下,研究了代表性病毒和指示细菌对加热,太阳辐射或其组合的响应。与噬菌体MS2相比,加热显示大肠杆菌具有更高的灭活能力。加热与自然或模拟太阳辐射相结合对大肠杆菌的灭活具有协同作用,在50℃时差异高达3个对数,自然日照量为2,000 kJ m〜(-2)(相比之下,单独的治疗)。当使用核酸内切酶敏感位点分析(ESS)评估太阳紫外线诱导的DNA对大肠杆菌的损害时,类似的协同作用也很明显。发现MS2对辐射和热具有高度抵抗力,仅在59℃和5,580 kJ m〜(-2)的自然日照下观察到协同作用。热处理还阻碍了大肠杆菌的光依赖性恢复,从而使治疗更加有效。

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