Mechanisms for bacterial gliding motility on soft substrates.
Ontology highlight
ABSTRACT: The motility mechanism of certain prokaryotes has long been a mystery, since their motion, known as gliding, involves no external appendages. The physical principles behind gliding still remain poorly understood. Using myxobacteria as an example of such organisms, we identify here the physical principles behind gliding motility and develop a theoretical model that predicts a 2-regime behavior of the gliding speed as a function of the substrate stiffness. Our theory describes the elasto-capillary-hydrodynamic interactions between the membrane of the bacteria, the slime it secretes, and the soft substrate underneath. Defining gliding as the horizontal translation under zero net force, we find the 2-regime behavior is due to 2 distinct mechanisms of motility thrust. On mildly soft substrates,
SUBMITTER: Tchoufag J
PROVIDER: S-EPMC6911197 | biostudies-literature | 2019 Dec
REPOSITORIES: biostudies-literature
ACCESS DATA