English

Switching of swimming modes in Magnetospirillium gryphiswaldense

Biological Physics 2015-06-16 v1 Soft Condensed Matter Cell Behavior

Abstract

The microaerophilic magnetotactic bacterium Magnetospirillum gryphiswaldense swims along magnetic field lines using a single flagellum at each cell pole. It is believed that this magnetotactic behavior enables cells to seek optimal oxygen concentration with maximal efficiency. We analyse the trajectories of swimming M. gryphiswaldense cells in external magnetic fields larger than the earth's field, and show that each cell can switch very rapidly (in < 0.2 s) between a fast and a slow swimming mode. Close to a glass surface, a variety of trajectories was observed, from straight swimming that systematically deviates from field lines to various helices. A model in which fast (slow) swimming is solely due to the rotation of the trailing (leading) flagellum can account for these observations. We determined the magnetic moment of this bacterium using a new method, and obtained a value of (2.0 ±\pm 0.6) ×\times 101610^{-16} Am2^2. This value is found to be consistent with parameters emerging from quantitative fitting of trajectories to our model.

Keywords

Cite

@article{arxiv.1307.2459,
  title  = {Switching of swimming modes in Magnetospirillium gryphiswaldense},
  author = {Mathias Reufer and Rut Besseling and Jana Schwarz-Linek and Vincent A. Martinez and Alexander N. Morozov and Jochen Arlt and Denis Trubitsyn and Bruce Ward and Wilson C. K. Poon},
  journal= {arXiv preprint arXiv:1307.2459},
  year   = {2015}
}

Comments

27 pages, 7 figures