Chemotaxis as a navigation strategy to boost range expansion.
basic_science · Level V
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- Record sourced from PubMed, PMID 31695195.
- Also identified by DOI 10.1038/s41586-019-1733-y and PMC identifier 6883170.
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Abstract
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among the best-characterized subjects in molecular biology<sup>1-10</sup>, but much less is known about its physiological roles<sup>11</sup>. It is commonly seen as a starvation response when nutrients run out, or as an escape response from harmful situations<sup>12-16</sup>. Here we identify an alternative role of chemotaxis by systematically examining the spatiotemporal dynamics of Escherichia coli in soft agar<sup>12,17,18</sup>. Chemotaxis in nutrient-replete conditions promotes the expansion of bacterial populations into unoccupied territories well before nutrients run out in the current environment. Low levels of chemoattractants act as aroma-like cues in this process, establishing the direction and enhancing the speed of population movement along the self-generated attractant gradients. This process of navigated range expansion spreads faster and yields larger population gains than unguided expansion following the canonical Fisher-Kolmogorov dynamics<sup>19,20</sup> and is therefore a general strategy to promote population growth in spatially extended, nutrient-replete environments.
Medical subject headings
- Chemotaxis
- Escherichia coli
- Models, Biological