Department of Chemical Engineering, Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, New Jersey 07102, USA.
Biotechnol Bioeng. 1989 Jan 20;33(4):460-70. doi: 10.1002/bit.260330411.
It is well established that pure and simple microbial competitors cannot coexist at a steady state if their environment is homogeneous. For the case of two microbial populations competing purely and simply in two interconnected chemostats having time-invariant input(s), it is known from the literature that a stable steady state of coexistence arises in domains of the operating parameters space and is attributed to the spatial heterogeneities of the system, which allow a different species to have the competitive advantage in each one of the two sub-environments. This article investigates whether the aforementioned result can be extended to the case of three species competing in three interconnected vessels. By studying all possible alternate configurations of the three-chemostat system, it is shown that coexistence of the three species is impossible, except possibly for some discrete values of the operating parameters. Some potential explanations for the results are discussed.
如果环境是同质的,那么纯粹且简单的微生物竞争者就不可能在稳定状态下共存。对于两种微生物种群在两个具有时不变输入的相互连接的恒化器中纯粹且简单地竞争的情况,根据文献可知,在操作参数空间的某些域中会出现稳定的共存稳定状态,这归因于系统的空间异质性,这使得不同的物种在两个子环境中的每一个中都具有竞争优势。本文研究了上述结果是否可以扩展到三种物质在三个相互连接的容器中竞争的情况。通过研究三种恒化器系统的所有可能的交替配置,可以证明除了操作参数的某些离散值外,三种物质共存是不可能的。讨论了一些可能的结果解释。