2021
DOI: 10.1101/2021.10.17.463831
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Active reconfiguration of cytoplasmic lipid droplets governs migration of nutrient-limited phytoplankton

Abstract: As open oceans continue to warm, modified currents and enhanced stratification exacerbate nitrogen and phosphorus limitation, constraining primary production. The ability to migrate vertically bestows motile phytoplankton a crucial – albeit energetically expensive – advantage toward vertically redistributing for optimal growth, uptake and resource storage in nutrient-limited water columns. However, this traditional view discounts the possibility that phytoplankton migration may be actively selected by the stor… Show more

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Cited by 2 publications
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“…To quell lingering ambiguity about this role, future studies must account for ecologically relevant factors governing the dynamics of microbes in their natural habitats. For instance, changes to an alga's cell shape and reorganizations of its subcellular structures can greatly alter gyrotactic stability [5,10]. Accounting for such microbial processes will improve both macroscopic control and ecological understanding of bioconvection.…”
Section: Figurementioning
confidence: 99%
“…To quell lingering ambiguity about this role, future studies must account for ecologically relevant factors governing the dynamics of microbes in their natural habitats. For instance, changes to an alga's cell shape and reorganizations of its subcellular structures can greatly alter gyrotactic stability [5,10]. Accounting for such microbial processes will improve both macroscopic control and ecological understanding of bioconvection.…”
Section: Figurementioning
confidence: 99%