Nutrient levels and trade-offs control diversity in a serial dilution ecosystem
Abstract
Microbial communities feature an immense diversity of species and this diversity is linked with outcomes ranging from ecosystem stability to medical prognoses. Yet the mechanisms underlying microbial diversity are under debate. While simple resource-competition models don't allow for coexistence of a large number of species, it was recently shown that metabolic trade-offs can allow unlimited diversity. Does this diversity persist with more realistic, intermittent nutrient supply? Here, we demonstrate theoretically that in serial dilution culture, metabolic trade-offs allow for high diversity. When a small amount of nutrient is supplied to each batch, the serial dilution dynamics mimic a chemostat-like steady state. If more nutrient is supplied, diversity depends on the amount of nutrient supplied due to an "early-bird" effect. The interplay of this effect with different environmental factors and diversity-supporting mechanisms leads to a variety of relationships between nutrient supply and diversity, suggesting that real ecosystems may not obey a universal nutrient-diversity relationship.
Keywords
Cite
@article{arxiv.1902.09039,
title = {Nutrient levels and trade-offs control diversity in a serial dilution ecosystem},
author = {Amir Erez and Jaime G. Lopez and Benjamin Weiner and Yigal Meir and Ned S. Wingreen},
journal= {arXiv preprint arXiv:1902.09039},
year = {2020}
}
Comments
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