A theoretical model for evaluating a specific mode of lethal injury that causes reproductive death in an irradiated microbial population.

Tetsuaki Tsuchido, Khanh C Vo, Ryoko Asada, Masakazu Furuta
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Abstract

When microbial cells exposed to γ-rays and UV light are cultured in a liquid medium, reproductive death is observed. These cells can divide for one to several generations but cannot form visible colonies on an agar medium and are therefore eventually recognized as dead. We call this specific type of lethal injury "ρ injury" and the apparent growth observed "phantom growth". To estimate such a lethal cell population, we propose in this study the use of a double subculture method that combines a derivative of the previously reported growth delay analysis (GDA) method and the conventional colony count method. Furthermore, a novel theoretical model is developed for this purpose.

一个理论模型,用于评估一种特定模式的致命伤害,导致生殖死亡的辐照微生物群体。
当微生物细胞暴露于γ射线和紫外线光在液体培养基中培养时,观察到生殖死亡。这些细胞可以分裂一到几代,但在琼脂培养基上不能形成可见的菌落,因此最终被认为是死亡的。我们把这种特定类型的致死性损伤称为“ρ损伤”,而观察到的表观生长称为“幻影生长”。为了估计这样的致死细胞群,我们在本研究中提出使用双重传代培养方法,该方法结合了先前报道的生长延迟分析(GDA)方法和传统菌落计数方法的衍生物。此外,本文还为此建立了一个新的理论模型。
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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