Itan E, Carmon G, Rabinovitch A, Fishov I, Feingold M
Department of Physics, Ben Gurion University, Beer Sheva, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Jun;77(6 Pt 1):061902. doi: 10.1103/PhysRevE.77.061902. Epub 2008 Jun 4.
The shape of Escherichia coli is approximately that of a cylinder with hemispherical caps. Since its size is not much larger than optical resolution, it has been difficult to quantify deviations from this approximation. We show that one can bypass this limitation and obtain the cell shape with subpixel accuracy. The resulting contours are shown to deviate from the hemisphere-cylinder-hemisphere shape. In particular, the cell is weakly asymmetric. Its two caps are different from each other and the sides are slightly curved. Most cells have convex sides. We discuss our results in light of several mechanisms that are involved in determining the shape of cells.
大肠杆菌的形状近似于一个两端带有半球形帽的圆柱体。由于其尺寸比光学分辨率大不了多少,因此很难量化与这种近似形状的偏差。我们表明,可以绕过这一限制并以亚像素精度获得细胞形状。结果显示,所得轮廓与半球 - 圆柱体 - 半球形状存在偏差。具体而言,细胞具有轻微的不对称性。它的两个帽彼此不同,且侧面略有弯曲。大多数细胞的侧面是凸起的。我们根据几种与细胞形状确定相关的机制来讨论我们的结果。