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Effect of physiological age on radiation resistance of some bacteria that are highly radiation resistant.

机译:生理年龄对某些高度抗辐射细菌的抗辐射能力的影响。

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摘要

Physiological age-dependent variation in radiation resistance was studied for three bacteria that are highly radiation resistant: Micrococcus radiodurans, Micrococcus sp. isolate C-3, and Moraxella sp. isolate 4. Stationary-phase cultures of M. radiodurans and isolate C-3 were much more resistant to gamma radiation than were log-phase cultures. This pattern of relative resistance was reversed for isolate 4. Resistance of isolate 4 to UV light was also greater during log phase, although heat resistance and NaCl tolerance after heat stress were greater during stationary phase. Radiation-induced injury of isolate 4 compared with injury of Escherichia coli B suggested that the injury process, as well as the lethal process, was affected by growth phase. The hypothesis that growth rate affects radiation resistance was tested, and results were interpreted in light of the probable confounding effect of methods used to alter growth rates of bacteria. These results indicate that dose-response experiments should be designed to measure survival during the most resistant growth phase of the organism under study. This timing is particularly important when extrapolations of survival results might be made to potential irradiation processes for foods.
机译:对三种高度辐射抗性的细菌研究了抗辐射性随年龄的生理变化:Micrococcus radiodurans,Micrococcus sp.。分离C-3和莫拉氏菌。分离株4.放射性对虾和分离株C-3的固定相培养物比对数相培养物对伽马射线的耐受性高得多。隔离物4的这种相对电阻模式相反。尽管在固定相中,热应力后的耐热性和NaCl耐受性较大,但在对数阶段,隔离物4对UV光的电阻也较大。与大肠杆菌B的损伤相比,辐射诱导的分离株4的损伤表明,损伤过程以及致死过程均受生长期影响。测试了增长率影响辐射抗性的假设,并根据改变细菌生长速率的方法可能产生的混杂效应来解释结果。这些结果表明,应设计剂量反应实验来测量所研究生物的最抗性生长阶段的存活率。当可能将生存结果外推到食品的潜在辐照过程时,此时间特别重要。

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