English

Stress-Induced Dinoflagellate Bioluminescence at the Single Cell Level

Soft Condensed Matter 2020-07-15 v1 Biological Physics Fluid Dynamics Cell Behavior

Abstract

One of the characteristic features of many marine dinoflagellates is their bioluminescence, which lights up nighttime breaking waves or seawater sliced by a ship's prow. While the internal biochemistry of light production by these microorganisms is well established, the manner by which fluid shear or mechanical forces trigger bioluminescence is still poorly understood. We report controlled measurements of the relation between mechanical stress and light production at the single-cell level, using high-speed imaging of micropipette-held cells of the marine dinoflagellate Pyrocystis lunulaPyrocystis~lunula subjected to localized fluid flows or direct indentation. We find a viscoelastic response in which light intensity depends on both the amplitude and rate of deformation, consistent with the action of stretch-activated ion channels. A phenomenological model captures the experimental observations.

Keywords

Cite

@article{arxiv.2003.08427,
  title  = {Stress-Induced Dinoflagellate Bioluminescence at the Single Cell Level},
  author = {Maziyar Jalaal and Nico Schramma and Antoine Dode and Helene de Maleprade and Christophe Raufaste and Raymond E. Goldstein},
  journal= {arXiv preprint arXiv:2003.08427},
  year   = {2020}
}

Comments

6 pages, 5 figures plus 4 pages of Supplementary Material with 4 figures; videos available on website of REG