An evolutionarily stable strategy to colonize spatially extended habitats.
basic_science · Level V
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- Record sourced from PubMed, PMID 31695198.
- Also identified by DOI 10.1038/s41586-019-1734-x and PMC identifier 6883132.
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Abstract
The ability of a species to colonize newly available habitats is crucial to its overall fitness<sup>1-3</sup>. In general, motility and fast expansion are expected to be beneficial for colonization and hence for the fitness of an organism<sup>4-7</sup>. Here we apply an evolution protocol to investigate phenotypical requirements for colonizing habitats of different sizes during range expansion by chemotaxing bacteria<sup>8</sup>. Contrary to the intuitive expectation that faster is better, we show that there is an optimal expansion speed for a given habitat size. Our analysis showed that this effect arises from interactions among pioneering cells at the front of the expanding population, and revealed a simple, evolutionarily stable strategy for colonizing a habitat of a specific size: to expand at a speed given by the product of the growth rate and the habitat size. These results illustrate stability-to-invasion as a powerful principle for the selection of phenotypes in complex ecological processes.
Medical subject headings
- Chemotaxis
- Ecosystem
- Escherichia coli