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首页> 外文期刊>Biophysical Journal >Origin of individuality of two daughter cells during the division process examined by the simultaneous measurement of growth and swimming property using an on-chip single-cell cultivation system
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Origin of individuality of two daughter cells during the division process examined by the simultaneous measurement of growth and swimming property using an on-chip single-cell cultivation system

机译:通过使用片上单细胞培养系统同时测量生长和游泳特性,检查了分裂过程中两个子细胞的个性起源

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We examined the origin of individuality of two daughter cells born from an isolated single Escherichia coli mother cell during its cell division process by monitoring the change in its swimming behavior and tumbling frequency using an on-chip single-cell cultivation system. By keeping the isolated condition of an observed single cell, we compared its growth and swimming property within a generation and over up to seven generations. It revealed that running speed decreased as cell length smoothly increased within each generation, whereas tumbling frequency fluctuated among generations. Also found was an extraordinary tumbling mode characterized by the prolonged duration of pausing in predivisional cells after cell constriction. The observed prolonged pausing may imply the coexistence of two distinct control systems in a predivisional cell, indicating that individuality of daughter cells emerges after a mother cell initiates constriction and before it gets physically separated into two new cell bodies.
机译:我们通过使用芯片上单细胞培养系统监测其游泳行为和翻滚频率的变化,检查了分离的单个大肠杆菌母细胞在分离过程中产生的两个子细胞的个体起源。通过保持观察到的单个细胞的分离状态,我们比较了一个世代以及多达七世代的生长和游泳特性。结果表明,运行速度随着细胞长度的平稳增长而降低,而滚动频率在各代之间波动。还发现了一种异常的翻滚模式,其特征在于细胞收缩后前房细胞的停顿时间延长。观察到的长时间暂停可能暗示着前分裂细胞中两个不同控制系统的共存,这表明子细胞的个体性在母细胞开始收缩后和在物理上分裂成两个新的细胞体之前就出现了。

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