Puyet A, Cánovas J L
Centro de Investigaciones Biológicas, CSIC, Madrid, Spain.
Arch Microbiol. 1989;152(6):578-83. doi: 10.1007/BF00425490.
It is generally accepted that during fast growth of Escherichia coli, the time (D) between the end of a round of DNA replication and cell division is constant. This concept is not consistent with the fact that average cell mass of a culture is an exponential function of the growth rate, if it is also accepted that average cell mass per origin of DNA replication (Mi) changes with growth rate and negative exponential cell age distribution is taken into account. Data obtained from cell composition analysis of E. coli OV-2 have shown that not only Mi but also D varied with growth rate at generation times (tau) between 54 and 30 min. E. coli OV-2 is a thymine auxotroph in which the replication time (C) can be lengthened, without inducing changes in tau, by growth with limiting amounts of thymine. This property has been used to study the relationship between cell size and division from cell composition measurements during growth with different amounts of thymine. When C increased, average cell mass at the end of a round of DNA replication also increased while D decreased, but only the time lapse (d) between the end of a replication round and cell constriction initiation appeared to be affected because the constriction period remained fairly constant. We propose that the rate at which cells proceed to constriction initiation from the end of replication is regulated by cell mass at this event, big cells having shorter d times than small cells.
人们普遍认为,在大肠杆菌快速生长期间,一轮DNA复制结束与细胞分裂之间的时间间隔(D)是恒定的。如果还认为每个DNA复制起点的平均细胞质量(Mi)随生长速率变化且考虑到细胞年龄的负指数分布,那么这一概念与培养物的平均细胞质量是生长速率的指数函数这一事实并不一致。从大肠杆菌OV - 2的细胞组成分析获得的数据表明,不仅Mi而且D在代时(tau)为54至30分钟之间时也随生长速率而变化。大肠杆菌OV - 2是一种胸腺嘧啶营养缺陷型菌株,在其中,通过在胸腺嘧啶含量有限的条件下生长,复制时间(C)可以延长而不引起tau的变化。利用这一特性,通过在不同胸腺嘧啶含量条件下生长期间的细胞组成测量来研究细胞大小与分裂之间的关系。当C增加时,一轮DNA复制结束时的平均细胞质量也增加,而D减小,但似乎只有复制结束与细胞缢缩起始之间的时间间隔(d)受到影响,因为缢缩期保持相当恒定。我们提出,细胞从复制结束到缢缩起始的进展速率在此事件中受细胞质量调节,大细胞的d时间比小细胞短。