bioRxiv · 10.1101/2025.02.26.640445
Risk-reward trade-off in motility endurance generates dichotomy in search strategies among copiotrophic marine bacteria
Abstract
Coptiotrophic marine bacteria contribute significantly to carbon storage in the ocean by remineralizing organic carbon present in nutrient-rich hotspots amidst oligotrophic waters. Motility is both highly beneficial and costly in such environments, presenting copiotrophs with a risk-reward trade-off in search behavior. Here we studied the motility endurance of 26 marine isolates using video microscopy and cell tracking over two days of carbon starvation. We found that this cost-benefit trade-off results in a distinct dichotomy among marine bacteria: risk-averse copiotrophs ceased motility within hours ( limostatic), whereas risk-prone copiotrophs converted 10% of their biomass per day into energy to retain motility for the two days of observation ( limokinetic). We identified a genomic component of this dichotomy, sufficiently robust to predict the response of additional species with 83% accuracy and the prevalence of both strategies in the ocean. This dichotomy can facilitate the incorporation of the bacterial contribution in ocean carbon cycle models.
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Keegstra, J. M., Landry, Z., Zweifel, S. T., Roller, B. R. K., Martinez-Perez, C., Clerc, E. E., Ackermann, M., Stocker, R.. 2025-02-26. Risk-reward trade-off in motility endurance generates dichotomy in search strategies among copiotrophic marine bacteria. https://doi.org/10.1101/2025.02.26.640445
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