Current Biology
Volume 30, Issue 18, 21 September 2020, Pages 3580-3590.e7
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Article
Reciprocal Fitness Feedbacks Promote the Evolution of Mutualistic Cooperation

https://doi.org/10.1016/j.cub.2020.06.100Get rights and content
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Highlights

  • Mutualistic cooperation can evolve in a spatially unstructured environment

  • Spatial clustering and reciprocal fitness feedback drive the evolution of cooperation

  • Non-cooperators are less fit than cooperative individuals

Summary

Mutually beneficial interactions are ubiquitous in nature and have played a pivotal role for the evolution of life on earth. However, the factors facilitating their emergence remain poorly understood. Here, we address this issue both experimentally and by mathematical modeling using cocultures of auxotrophic strains of Escherichia coli, whose growth depends on a reciprocal exchange of amino acids. Coevolving auxotrophic pairs in a spatially heterogeneous environment for less than 150 generations transformed the initial interaction that was merely based on an exchange of metabolic byproducts into a costly metabolic cooperation, in which both partners increased the amounts of metabolites they produced to benefit their corresponding partner. The observed changes were afforded by the formation of multicellular clusters, within which increased cooperative investments were favored by positive fitness feedbacks among interacting genotypes. Under these conditions, non-cooperative individuals were less fit than cooperative mutants. Together, our results highlight the ease with which mutualistic cooperation can evolve, suggesting similar mechanisms likely operate in natural communities.

Keywords

bacterial community
cluster formation
cooperation
cross-feeding
Escherichia coli
fitness feedback
mutualism
reciprocity
synergistic coevolution

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3

These authors contributed equally

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