Krivan Vlastimil
Department of Theoretical Biology, Institute of Entomology, Branisovská 31, 37005 Ceské Budejovice, Czech Republic.
Theor Popul Biol. 2006 Mar;69(2):181-91. doi: 10.1016/j.tpb.2005.07.006. Epub 2005 Nov 4.
A population dynamical model describing growth of bacteria on two substrates is analyzed. The model assumes that bacteria choose substrates in order to maximize their per capita population growth rate. For batch bacterial growth, the model predicts that as the concentration of the preferred substrate decreases there will be a time at which both substrates provide bacteria with the same fitness and both substrates will be used simultaneously thereafter. Preferences for either substrate are computed as a function of substrate concentrations. The predicted time of switching is calculated for some experimental data given in the literature and it is shown that the fit between predicted and observed values is good. For bacterial growth in the chemostat, the model predicts that at low dilution rates bacteria should feed on both substrates while at higher dilution rates bacteria should feed on the preferred substrate only. Adaptive use of substrates permits bacteria to survive in the chemostat at higher dilution rates when compared with non-adaptive bacteria.
分析了一个描述细菌在两种底物上生长的种群动力学模型。该模型假设细菌选择底物是为了使其人均种群增长率最大化。对于分批培养的细菌生长,该模型预测,随着首选底物浓度的降低,会有一个时间点,此时两种底物为细菌提供相同的适合度,此后两种底物将同时被利用。对任一底物的偏好是根据底物浓度计算的。针对文献中给出的一些实验数据计算了预测的转换时间,结果表明预测值与观测值之间拟合良好。对于恒化器中的细菌生长,该模型预测,在低稀释率下细菌应以两种底物为食,而在高稀释率下细菌应仅以首选底物为食。与非适应性细菌相比,底物的适应性利用使细菌能够在恒化器中以更高的稀释率存活。