Rabinovitch A, Hadas H, Einav M, Melamed Z, Zaritsky A
Department of Physics, Ben-Gurion University of the Negev, Be'er-Sheva, Israel 84105, USA.
J Bacteriol. 1999 Mar;181(5):1677-83. doi: 10.1128/JB.181.5.1677-1683.1999.
Mathematical relations for the number of mature T4 bacteriophages, both inside and after lysis of an Escherichia coli cell, as a function of time after infection by a single phage were obtained, with the following five parameters: delay time until the first T4 is completed inside the bacterium (eclipse period, nu) and its standard deviation (sigma), the rate at which the number of ripe T4 increases inside the bacterium during the rise period (alpha), and the time when the bacterium bursts (mu) and its standard deviation (beta). Burst size [B = alpha(mu - nu)], the number of phages released from an infected bacterium, is thus a dependent parameter. A least-squares program was used to derive the values of the parameters for a variety of experimental results obtained with wild-type T4 in E. coli B/r under different growth conditions and manipulations (H. Hadas, M. Einav, I. Fishov, and A. Zaritsky, Microbiology 143:179-185, 1997). A "destruction parameter" (zeta) was added to take care of the adverse effect of chloroform on phage survival. The overall agreement between the model and the experiment is quite good. The dependence of the derived parameters on growth conditions can be used to predict phage development under other experimental manipulations.
得出了单个噬菌体感染大肠杆菌细胞后,细胞内及裂解后成熟T4噬菌体数量与感染后时间的数学关系,涉及以下五个参数:细菌内第一个T4噬菌体完成所需的延迟时间(潜伏期,ν)及其标准差(σ),上升期细菌内成熟T4噬菌体数量的增长速率(α),细菌裂解时间(μ)及其标准差(β)。因此,爆发量[B = α(μ - ν)],即从被感染细菌释放的噬菌体数量,是一个依赖参数。使用最小二乘法程序,针对在不同生长条件和操作下,用野生型T4在大肠杆菌B/r中获得的各种实验结果,推导参数值(H. Hadas、M. Einav、I. Fishov和A. Zaritsky,《微生物学》143:179 - 185,1997)。添加了一个“破坏参数”(ζ)以考虑氯仿对噬菌体存活的不利影响。模型与实验之间的总体一致性相当好。推导参数对生长条件的依赖性可用于预测其他实验操作下的噬菌体发育情况。