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关于在相互连接的恒化器配置中三种微生物群体竞争两种互补底物的共存情况。

On the coexistence of three microbial populations competing for two complementary substrates in configurations of interconnected chemostats.

作者信息

Thomopoulos N A, Vayenas D V, Pavlou S

机构信息

Department of Chemical Engineering, University of Patras, Greece.

出版信息

Math Biosci. 1998 Dec 15;154(2):87-102. doi: 10.1016/s0025-5564(98)10047-0.

Abstract

We examine the question of coexistence of three microbial populations competing for two complementary rate-limiting substrates in configurations of interconnected chemostats. It is known that coexistence of two populations competing for two rate-limiting substrates is possible in a single chemostat, but coexistence is not possible when three populations are involved. We examine whether coexistence of three populations becomes possible by considering configurations of two or three interconnected chemostats, thus allowing for effects of spatial heterogeneity. Computational analysis of the model equations indicates that in the case of two chemostats coexistence is possible only for specific discrete parameter values where the system is structurally unstable and therefore the coexistence state is not practically attainable, whereas in the case of three chemostats coexistence is possible for a whole range of parameter values where the system is structurally stable and therefore the coexistence state can be realized in practice.

摘要

我们研究了在相互连接的恒化器配置中,三种微生物群体竞争两种互补的限速底物时的共存问题。已知在单个恒化器中,两种群体竞争两种限速底物时共存是可能的,但当涉及三种群体时,共存是不可能的。我们通过考虑两个或三个相互连接的恒化器的配置来研究三种群体的共存是否变得可能,从而考虑空间异质性的影响。对模型方程的计算分析表明,在两个恒化器的情况下,共存仅在特定的离散参数值下才有可能,此时系统结构不稳定,因此共存状态实际上无法实现;而在三个恒化器的情况下,对于一系列参数值,共存是可能的,此时系统结构稳定,因此共存状态在实践中可以实现。

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