Department of Nanobiotechnology, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, P.O. Box 14115-111, Iran.
Sci Rep. 2017 Jul 18;7(1):5660. doi: 10.1038/s41598-017-05897-7.
A combination of light-microscopy and image processing was used to elaborate on the fluctuation in the width of the cylindrical part of Escherichia coli at sub-pixel-resolution, and under in vivo conditions. The mean-squared-width-difference along the axial direction of the cylindrical part of a number of bacteria was measured. The results reveal that the cylindrical part of Escherichia coli is composed of multi-domain morphological structures. The length of the domains starts at 150 nm in newborn cells, and linearly increases in length up to 300 nm in aged cells. The fluctuation in the local-cell-widths in each domain is less than the fluctuation of local-cell-widths between different domains. Local cell width correlations along the cell body occur on a length scale of less than 50 nm. This finding could be associated with the flexibility of the cell envelope in the radial versus longitudinal directions.
采用光显微镜和图像处理相结合的方法,在亚像素分辨率下和活体条件下详细研究了大肠杆菌圆柱部分宽度的波动。测量了许多细菌圆柱部分轴向方向的均方根宽度差。结果表明,大肠杆菌的圆柱部分由多域形态结构组成。新生细胞中结构域的长度从 150nm 开始,在老化细胞中长度线性增加到 300nm。每个域内的局部细胞宽度波动小于不同域之间的局部细胞宽度波动。沿细胞体的局部细胞宽度相关性发生在小于 50nm 的长度尺度上。这一发现可能与细胞包膜在径向与纵向方向的灵活性有关。