Hostname: page-component-77c89778f8-vpsfw Total loading time: 0 Render date: 2024-07-16T13:21:18.209Z Has data issue: false hasContentIssue false

The gliding motion of a bacterium: Flexibacter strain BH3

Published online by Cambridge University Press:  17 February 2009

R. W. O'Brien
Affiliation:
School of Mathematics, University of New South Wales, Kensington, N.S.W. 2033
Rights & Permissions [Opens in a new window]

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

The flexibacters are a form of gliding bacteria which are often found on the surfaces of solid bodies in fresh and salt water. An individual organism lacks motility in the bulk aqueous phase but glides over a solid surface with its rod-like body aligned with and nearly touching the surface. It has been suggested that this gliding motion in Flexibacter strain BH3 may be caused by waves moving down the outer surface of the rod-shaped cell [2]. This paper is concerned with the fluid mechanical aspects of this form of propulsion.

Formulae for the velocity of the organism and for the power dissipation are obtained by using a lubrication theory analysis in the small gap between the bacterium and the wall. It is found that for any progressive waveform there is an optimum distance from the wall at which the flexibacter may maximize its speed for a given power output. Assuming that the flexibacter sits at this optimum distance and taking the waveform to be sinusoidal we calculate the power required for the flexibacter to move at the maximum observed speed. It is found that this power requirement represents only a small fraction of the power available to the cell.

Type
Research Article
Copyright
Copyright © Australian Mathematical Society 1981

References

]1]Batchelor, G. K., An introduction to fluid dynamics (Cambridge University Press, 1970).Google Scholar
]2]Humphrey, B. A., Dickson, M. R. and Marshall, K. C., “Physicochemical and in situ observations on the adhesion of gliding bacteria to surfaces”, Arch. Microbiol. 120 (1979), 231238.Google Scholar
]3]Humphrey, B. A. and Marshall, K. C., “Fragmentation of some gliding bacteria during the growth cycle”, J. Appl. Bad. (to appear).Google Scholar
]4]Humphrey, B. A. and Marshall, K. C., private communication.Google Scholar
]5]Katz, D. F., “On the propulsion of micro-organisms near solid boundaries”, J. Fluid Mech. 64 (1974), 3349.CrossRefGoogle Scholar
]6]Reynolds, A. J., “The swimming of minute organisms”, J. Fluid Mech. 23 (1965), 641656.Google Scholar
]7]Taylor, G. I., “Analysis of the swimming of microscopic organisms”, Proc. Roy. Soc. A 209 (1951), 447461.Google Scholar