Login / Signup

Cell size, density, and nutrient dependency of unicellular algal gravitational sinking velocities.

Teemu P MiettinenAnnika L GomezYanqi WuWeida WuThomas R UsherwoodYejin HwangBenjamin R K RollerMartin F PolzScott R Manalis
Published in: Science advances (2024)
Eukaryotic phytoplankton, also known as algae, form the basis of marine food webs and drive marine carbon sequestration. Algae must regulate their motility and gravitational sinking to balance access to light at the surface and nutrients in deeper layers. However, the regulation of gravitational sinking remains largely unknown, especially in motile species. Here, we quantify gravitational sinking velocities according to Stokes' law in diverse clades of unicellular marine microalgae to reveal the cell size, density, and nutrient dependency of sinking velocities. We identify a motile algal species, Tetraselmis sp., that sinks faster when starved due to a photosynthesis-driven accumulation of carbohydrates and a loss of intracellular water, both of which increase cell density. Moreover, the regulation of cell sinking velocities is connected to proliferation and can respond to multiple nutrients. Overall, our work elucidates how cell size and density respond to environmental conditions to drive the vertical migration of motile algae.
Keyphrases
  • single cell
  • cell therapy
  • stem cells
  • gene expression
  • risk assessment
  • heavy metals
  • bone marrow
  • climate change
  • genome wide
  • mesenchymal stem cells