Related Experiment Video
Updated: Dec 10, 2025

The Use of Chemostats in Microbial Systems Biology
Published on: October 14, 2013
Modeling microbial metabolic trade-offs in a chemostat
Zhiyuan Li1,2,3,4, Bo Liu5, Sophia Hsin-Jung Li6
1Center for Quantitative Biology, Peking University, Beijing, China.
Abstract:
Microbes face intense competition in the natural world, and so need to wisely allocate their resources to multiple functions, in particular to metabolism. Understanding competition among metabolic strategies that are subject to trade-offs is therefore crucial for deeper insight into the competition, cooperation, and community assembly of microorganisms. In this work, we evaluate competing metabolic strategies within an ecological context by considering not only how the environment influences cell growth, but also how microbes shape their chemical environment. Utilizing chemostat-based resource-competition models, we exhibit a set of intuitive and general procedures for assessing metabolic strategies. Using this framework, we are able to relate and unify multiple metabolic models, and to demonstrate how the fitness landscape of strategies becomes intrinsically dynamic due to species-environment feedback. Such dynamic fitness landscapes produce rich behaviors, and prove to be crucial for ecological and evolutionarily stable coexistence in all the models we examined.
Related Concept Videos
Metabolism of Chemolithotrophs
Microbial Nutrition
Microbial Growth Measurement: Indirect Methods
Methods for Controlling Microbial Growth
Operon Model
Microbial Growth Measurement: Direct Methods

