Burdett I D
J Gen Microbiol. 1980 Nov;121(1):93-103. doi: 10.1099/00221287-121-1-93.
Cells of Bacillus subtilis RodB changed from rods to cocci when shifted from 20 to 42 degrees C in media containing no additional anions. Quantitative studies of surface growth, including cross-wall formation and pole construction, have been made from reconstructions obtained from central, longitudinal sections of cells. Measurements of surface area and volume were obtained by mathematical rotation of axial sections about their longitudinal axis. Surface markers, perhaps analogous to the wall bands of streptococci, have been used to distinguish septal from cylindrical wall. During the shape change, wall volume increased most rapidly, in relation to cell volume, at the division site. The average volume of wall distal to the septum also increased but the slopes of the lines relating distal wall volume to cell volume were the same at all stages of the shape change. The quantity of wall per distal pole gradually declined with increase of cell volume and as the cells became more coccus-like. Collectively, these features suggest that wall continues to be produced at sites of cylindrical extension but fails to become incorporated into the existing cylinder to maintain a constant diameter. Instead, wall material may be used to thicken the surface of distal poles, but the rate of addition may decline as the cells assume a coccal morphology. The change from rods to cocci may involve a progressive dependence on septal growth for surface expansion and a modification of the time at which the cross-wall is closed. Septal closure is progressively delayed as the organisms change into cocci, so that cross-wall separation precedes septal closure, as in streptococci.
在不含额外阴离子的培养基中,枯草芽孢杆菌RodB细胞从20摄氏度转移至42摄氏度时,其形态会从杆状变为球状。通过对细胞中央纵向切片的重建,已对包括横壁形成和极构建在内的表面生长进行了定量研究。通过将轴向切片绕其纵轴进行数学旋转来获得表面积和体积的测量值。已使用可能类似于链球菌壁带的表面标记来区分隔膜壁和圆柱形壁。在形状变化过程中,相对于细胞体积,壁体积在分裂部位增加最为迅速。隔膜远端壁的平均体积也增加了,但在形状变化的所有阶段,远端壁体积与细胞体积关系曲线的斜率是相同的。随着细胞体积的增加以及细胞变得更像球菌,每个远端极的壁量逐渐减少。总体而言,这些特征表明壁继续在圆柱形延伸部位产生,但未能并入现有的圆柱体以维持恒定直径。相反,壁材料可能用于加厚远端极的表面,但随着细胞呈现球菌形态,添加速率可能会下降。从杆状到球状的变化可能涉及表面扩展对隔膜生长的逐渐依赖以及横壁关闭时间的改变。随着生物体变为球菌,隔膜关闭会逐渐延迟,因此横壁分离先于隔膜关闭,就像在链球菌中一样。