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Historical and Contemporary NaCl Concentrations Affect the Duration and Distribution of Lag Times from Individual Spores of Nonproteolytic Clostridium botulinum

机译:历史和当代NaCl浓度影响非蛋白水解肉毒梭菌单个孢子的滞后时间的持续时间和分布

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摘要

In this study we determined the effect of NaCl concentration during sporulation (0 or 3.0% [wt/vol] added NaCl) and subsequent growth (0 or 2.0% [wt/vol] added NaCl) on the distributions of times associated with various stages of the lag phase of individual spores of nonproteolytic Clostridium botulinum strain Eklund 17B. The effects of NaCl on the probability of germination and the probability of subsequent growth were also determined. Spore populations exhibited considerable heterogeneity at all stages of lag phase for each condition tested. Germination time did not correlate strongly with the times for later stages in the lag phase, such as outgrowth and doubling time. Addition of NaCl to either the sporulation or growth media increased the mean times for, and variability of, all the measured stages of the lag phase (germination, emergence, time to one mature cell, and time to first doubling). There was a synergistic interaction between the inhibitory effects of NaCl in the sporulation medium and the inhibitory effects of NaCl in the subsequent growth medium on the total lag time and each of its stages. Addition of NaCl to either the sporulation medium or the growth medium reduced both the probability of germination and the probability of a germinated spore developing into a mature cell, but the interaction was not synergistic. Spores formed in medium with added NaCl were not better adapted to subsequent growth in suboptimal osmotic conditions than spores formed in medium with no added NaCl were. Knowledge of the distribution of lag times for individual spores and quantification of the biovariability within lag time distributions may provide insight into the underlying mechanisms and can be used to improve predictions of growth in food and to refine risk assessments.
机译:在这项研究中,我们确定了孢子形成期间(添加NaCl的0或3.0%[wt / vol])和后续生长过程(添加NaCl的0或2.0%[wt / vol]的NaCl)对与各个阶段相关的时间分布的影响蛋白水解肉毒梭菌菌株Eklund 17B的单个孢子的滞后期的变化。还确定了氯化钠对发芽概率和随后生长的可能性的影响。对于每种测试条件,孢子种群在滞后阶段的所有阶段均表现出相当大的异质性。萌发时间与滞后阶段后期的时间(例如,生长时间和倍增时间)没有显着相关。在孢子形成或生长培养基中添加NaCl会增加所有测量的迟滞期阶段的平均时间和变异性(发芽,出苗,进入一个成熟细胞的时间以及首次翻倍的时间)。 NaCl在孢子形成培养基中的抑制作用与随后生长培养基中的NaCl在总滞后时间及其各个阶段的抑制作用之间存在协同作用。向孢子形成培养基或生长培养基中添加NaCl既降低了发芽的可能性,也降低了发芽的孢子发育成成熟细胞的可能性,但是相互作用并不协同。与在没有添加NaCl的培养基中形成的孢子相比,在添加有NaCl的培养基中形成的孢子不能更好地适应于次优渗透条件下的后续生长。了解单个孢子的滞后时间分布以及滞后时间分布内生物变异性的定量分析,可以提供对潜在机制的深入了解,并可用于改善对食品生长的预测并完善风险评估。

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