Department of Biology, Faculty of Sciences, University of Isfahan, Isfahan, Iran.
J Basic Microbiol. 2012 Apr;52(2):206-15. doi: 10.1002/jobm.201100042. Epub 2011 Jul 21.
Most bacterial strains accumulate intracellular polyhydroxybutyrate (PHB) granules as an energy reservoir, in response to fluctuations in their microenvironment. Flow cytometry was applied for the analysis of single cells of Ralstonia pickettii AR1 in response to changes in the culture conditions. Two parameters, the PHB production-related FL2 and side scatter (SSC) parameters, were used to monitor, distinguish and characterize different subpopulations in the growth and PHB production phases. A high SSC level was observed in the mid-log exponential growth phase. When the nitrogen source reached a limiting level, the SSC started to decrease, in contrast to the intracellular PHB granules-related FL2 parameter. The results show that ammonium limitation is a critical and important factor for the accumulation of reserve compounds. Four subpopulations were observed and distinguished upon entrance of the cells into the exponential growth phase. When the cells entered the late exponential growth or early stationary phase, two subpopulations had disappeared and only two, different subpopulations were dominant. One of the subpopulations with changed SSC and PHB production activity switched to another subpopulation that was only active in PHB production in the stationary phase. The whole cells of R. pickettii AR1 tended to form a homogeneous population at the end of the stationary phase. In fact, the changes in the subpopulations of a single strain are related to different physiological states of the cells. The observation of different subpopulations suggests that each subpopulation shows a specific response to changes in the surrounding microenvironment, nutrients and limiting factors.
大多数细菌菌株会在其微环境发生波动时积累细胞内聚羟基丁酸酯 (PHB) 颗粒作为能量储备。本研究应用流式细胞术分析了 Ralstonia pickettii AR1 单细胞对培养条件变化的响应。使用 PHB 产生相关的 FL2 和侧向散射 (SSC) 参数来监测、区分和描述生长和 PHB 产生阶段的不同亚群。在对数中期生长阶段观察到高 SSC 水平。当氮源达到限制水平时,SSC 开始下降,而与细胞内 PHB 颗粒相关的 FL2 参数则相反。结果表明,铵限制是积累储备化合物的关键和重要因素。当细胞进入指数生长期时,观察到并区分了四个亚群。当细胞进入指数生长后期或早期静止期时,两个亚群已经消失,只有两个不同的亚群占主导地位。其中一个 SSC 和 PHB 产生活性发生变化的亚群切换到另一个仅在静止期 PHB 产生中活跃的亚群。R. pickettii AR1 的整个细胞在静止期结束时趋于形成同质群体。事实上,单菌株亚群的变化与细胞的不同生理状态有关。不同亚群的观察表明,每个亚群对周围微环境、营养物质和限制因素的变化都表现出特定的响应。