Univ Brest, INRAE, Laboratoire Universitaire de Biodiversité et Écologie Microbienne, F-29000, Quimper, France.
Laboratory for Molecular Biology and Microbial Food Safety, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, the Netherlands.
Food Microbiol. 2024 Aug;121:104509. doi: 10.1016/j.fm.2024.104509. Epub 2024 Mar 4.
Quantifying spore germination and outgrowth heterogeneity is challenging. Single cell level analysis should provide supplementary knowledge regarding the impact of unfavorable conditions on germination and outgrowth dynamics. This work aimed to quantify the impact of pH on spore germination and outgrowth, investigating the behavior of individual spore crops, produced under optimal and suboptimal conditions. Bacillus mycoides (formerly B. weihenstephanensis) KBAB4 spores, produced at pH 7.4 and at pH 5.5 were incubated at different pH values, from pH 5.2 to 7.4. The spores were monitored by microscopy live imaging, in controlled conditions, at 30 °C. The images were analyzed using SporeTracker, to determine the state of single cells. The impact of pH on germination and outgrowth times and rates was estimated and the correlation between these parameters was quantified. The correlation between germination and outgrowth times was significantly higher at low pH. These results suggest that an environmental pressure highlights the heterogeneity of spore germination and outgrowth within a spore population. Results were consistent with previous observations at population level, now confirmed and extended to single cell level. Therefore, single cell level analyses can be used to quantify the heterogeneity of spore populations, which is of interest in order to control the development of spore-forming bacteria, responsible for food safety issues.
量化孢子萌发和生长的异质性具有挑战性。单细胞水平的分析应该为不利条件对萌发和生长动力学的影响提供补充知识。本工作旨在量化 pH 值对孢子萌发和生长的影响,研究在最佳和次优条件下产生的单个孢子批次的行为。在 pH 值为 7.4 和 pH 值为 5.5 下生产的地衣芽孢杆菌(以前称为 B. weihenstephanensis)KBAB4 孢子在不同的 pH 值(从 pH 值 5.2 到 7.4)下孵育。在 30°C 的受控条件下通过显微镜实时成像监测孢子。使用 SporeTracker 分析图像,以确定单细胞的状态。估计了 pH 值对萌发和生长时间和速率的影响,并量化了这些参数之间的相关性。在低 pH 值下,萌发和生长时间之间的相关性显著更高。这些结果表明,环境压力突出了孢子群体中萌发和生长的异质性。这些结果与以前在群体水平上的观察结果一致,现在得到了证实并扩展到单细胞水平。因此,单细胞水平的分析可用于量化孢子群体的异质性,这对于控制负责食品安全问题的孢子形成细菌的发展具有重要意义。