Laboratoire de Biotechnologie de l'Environnement, INRA, Avenue des Etangs, 11100 Narbonne, France.
J Biol Dyn. 2008 Jan;2(1):1-13. doi: 10.1080/17513750801942537.
We study a chemostat model in which two microbial species grow on a single resource. We show that species coexistence is possible when the species which would normally win the exclusive competition aggregates in flocs. Our mathematical analysis exploits the fact that flocculation is fast compared to biological growth, a common hypothesis in floc models. A numerical study shows the validity of this approach in a large parameter range. We indicate how our model yields a mechanistic justification for the so-called density-dependent growth.
我们研究了一个在单一资源上生长的两种微生物物种的恒化器模型。我们表明,当通常会在独占竞争中获胜的物种在絮体中聚集时,物种共存是可能的。我们的数学分析利用了絮体形成比生物生长快的事实,这是絮体模型中的一个常见假设。数值研究表明,该方法在很大的参数范围内是有效的。我们指出了我们的模型如何为所谓的密度依赖生长提供一种机械上的解释。