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Cell shape dynamics during the staphylococcal cell cycle

机译:葡萄球菌细胞周期中的细胞形态动力学

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Staphylococcus aureus is an aggressive pathogen and a model organism to study cell division in sequential orthogonal planes in spherical bacteria. However, the small size of staphylococcal cells has impaired analysis of changes in morphology during the cell cycle. Here we use super-resolution microscopy and determine that S. aureus cells are not spherical throughout the cell cycle, but elongate during specific time windows, through peptidoglycan synthesis and remodelling. Both peptidoglycan hydrolysis and turgor pressure are required during division for reshaping the flat division septum into a curved surface. In this process, the septum generates less than one hemisphere of each daughter cell, a trait we show is common to other cocci. Therefore, cell surface scars of previous divisions do not divide the cells in quadrants, generating asymmetry in the daughter cells. Our results introduce a need to reassess the models for division plane selection in cocci.
机译:金黄色葡萄球菌是一种攻击性病原体,是一种模型生物,用于研究球形细菌中连续的正交平面中的细胞分裂。然而,葡萄球菌细胞的小尺寸削弱了细胞周期中形态变化的分析。在这里,我们使用超分辨率显微镜,并确定金黄色葡萄球菌细胞在整个细胞周期中不是球形,而是通过肽聚糖合成和重塑在特定的时间窗口内伸长。在分裂过程中,既需要肽聚糖的水解作用,又要承受膨胀压力,以使平坦的分离隔膜重新成形为曲面。在此过程中,隔垫在每个子细胞中产生的半球少于一个,我们显示出的性状是其他球菌所共有的。因此,先前划分的细胞表面疤痕不会将细胞划分为象限,从而在子细胞中产生不对称性。我们的结果提出了需要重新评估球墨镜中的分割平面选择模型。

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