Optimization of near ultraviolet irradiation conditions for isolation of relaxed mutants of Escherichia coli.

D Riesenberg, H Lang
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Abstract

We describe optimized conditions for isolation of relaxed mutants of bacteria with 4-thiouridine-containing tRNAs. The results presented here imply that besides the knowledge of the action spectra for near UV-induced growth inhibition of stringent and relaxed cells the fluence--fluence rate dependence of growth inhibition is an essential factor for optimizing the enrichment of relaxed mutants. We investigated systematically the dependence of growth inhibition of both stringent and relaxed strains of E. coli on the wavelength lambda, on the fluence F and on the fluence rate I within the ranges lambda = 301-365 nm, F = 0-48 kJ X m-2 and I = 0-60 W X m-2. The optimized conditions for selection of relaxed mutants of E. coli are lambda = 334 nm, F = 48 kJ X m-2 and I = 60 W X m-2. These optimized parameters determined for E. coli may be used in general to select relaxed mutants of other bacterial species by combining the turbidostat technique with near UV irradiation (Riesenberg et al. 1983).

大肠杆菌松弛突变体近紫外照射条件的优化。
我们描述了分离含有4-硫脲的trna的细菌松弛突变体的优化条件。本文的结果表明,除了了解近紫外诱导的严格和宽松细胞生长抑制的作用谱外,生长抑制的影响-影响率依赖是优化宽松突变体富集的重要因素。在λ = 301 ~ 365 nm、F = 0 ~ 48 kJ X m-2和I = 0 ~ 60 W X m-2范围内,系统地考察了严格型和宽松型大肠杆菌对生长的抑制作用与波长λ、影响F和影响率I的关系。大肠杆菌松弛突变体的最佳选择条件为λ = 334 nm, F = 48 kJ X m-2, I = 60 W X m-2。这些为大肠杆菌确定的优化参数一般可用于通过将浊度抑制技术与近紫外照射相结合来选择其他细菌物种的松弛突变体(Riesenberg et al. 1983)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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