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Quantal Behavior of a Diffusible Factor Which Initiates Septum Formation at Potential Division Sites in Escherichia coli

机译:在大肠杆菌的潜在分裂位点启动隔膜形成的扩散因子的量子行为

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摘要

Analysis of nucleated cell size in a minicell-producing strain of Escherichia coli and in its parental strain shows that the two distributions are considerably different. A model is proposed to account for this difference. The model states that: (i) in the mutant population, the cell poles are available as potential division sites in addition to the normally located division sites; (ii) the probability of a division occurring at any of the potential division sites is equal; and (iii) only enough “division factor” arises at each unit cell doubling to permit a single division. This factor is utilized entirely in the formation of a single septum. Thus, the occurrence of a polar division with the production of an anucleate minicell (which occurs only in the mutant strain) prevents the occurrence of a non-polar division, with the result that the average nucleated cell length is increased in minicell-producing strains. The model has been used to construct a theoretical population, and a number of parameters of the real and theoretical populations have been compared. The two populations are very similar in all of the parameters measured.
机译:对产生微细胞的大肠杆菌及其亲本菌株中有核细胞大小的分析表明,这两种分布有很大不同。提出了一个模型来解决这一差异。该模型指出:(i)在突变群体中,除正常定位的分裂位点外,细胞极还可以作为潜在的分裂位点; (ii)在任何潜在的分裂地点发生分裂的可能性相等; (iii)每个单位单元仅产生足够多的“划分因子”,以允许单个划分。该因素在单个隔膜的形成中被完全利用。因此,通过产生无核小细胞(仅在突变菌株中发生)而产生极性分裂,防止了非极性分裂的发生,结果,在产生小细胞的菌株中平均有核细胞长度增加了。 。该模型已用于构建理论种群,并比较了实际种群和理论种群的许多参数。在所有测得的参数中,这两个总体非常相似。

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