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Efficiency of pyrimidine dimer formation in Escherichia coli across UV wavelengths

机译:跨紫外线波长在大肠杆菌中嘧啶二聚体形成的效率

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Inactivation of Escherichia coli as a function of ultraviolet (UV) wavelength was investigated by using the endonuclease-sensitive site (ESS) assay to quantify pyrimidine dimer formation. Ultraviolet dose-response curves were determined based on both log reduction in colony-forming units (CFU) and endonuclease-sensitive sites per kb DNA (ESS/kb) for monochromatic 254-nm low-pressure (LP) UV, polychromatic medium-pressure (MP) UV, 228 and 289-nm UV irradiation. UV irradiation from LP and MP UV sources were approx. equal in both CFU reduction and pyrimidine dimer formation at all UV doses studied; 228-nm irradiation was less effective than LP or MP, and 289-nm irradiation was the least effective in both CFU reduction and pyrimidine dimer formation. These results are in qualitative agreement with the absorption spectrum of pyrimidine bases in DNA. Results indicated an approx. linear relationship between ESS/kb and log CFU reduction. Formation of pyrimidine dimers in genomic DNA is primarily responsible for UV inactivation of E. coli. This work contributed to fundamental understanding of UV disinfection and aids in UV reactor design.
机译:通过使用内切核酸酶敏感位点(ESS)分析定量嘧啶二聚体的形成,研究了大肠埃希菌的失活与紫外线(UV)波长的关系。紫外线剂量-响应曲线是基于单色254 nm低压(LP)UV,多色中等压力下的菌落形成单位(CFU)的对数减少和每kb DNA的核酸内切酶敏感位点(ESS / kb)两者确定的(MP)UV,228和289 nm UV辐射。 LP和MP紫外线源的紫外线照射约为。在所有研究的紫外线剂量下,CFU还原和嘧啶二聚体形成均相等; 228 nm辐射的效果不如LP或MP,而289 nm辐射的CFU还原和嘧啶二聚体形成效果最低。这些结果与嘧啶碱基在DNA中的吸收光谱在质量上一致。结果表明约。 ESS / kb与log CFU减少之间的线性关系。基因组DNA中嘧啶二聚体的形成主要是导致大肠杆菌的紫外线失活。这项工作有助于对紫外线消毒有基本的了解,并有助于紫外线反应器的设计。

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