Related Experiment Video
Updated: Jul 29, 2026

Procedure for Adaptive Laboratory Evolution of Microorganisms Using a Chemostat
Published on: September 20, 2016
High-pressure adaptation by salt stress in a moderately halophilic bacterium obtained from open seawater
T Tanaka1, J G Burgess, P C Wright
1Department of Mechanical and Chemical Engineering, Heriot-Watt University, Edinburgh, Scotland, UK.
Abstract:
High-pressure adaptation was examined using a moderately halophilic bacterium (Micrococcus roseus), which was isolated from open seawater and capable of growing in 15% w/v NaCl (optimum NaCl concentration: 3% w/v). After treatment at 207 MPa, colony-forming units (CFUs) significantly decreased; however, the loss of integral cells after pressure was only 30% when direct cell count was performed microscopically. In order to investigate the piezotolerance of M. roseus under high pressure without morphological change, the survival of cells was examined under pressure at 138 MPa for 2 h. M. roseus in 3% NaCl was still sensitive to pressure at 138 MPa. However, the cells in the third generations showed remarkably increased pressure resistance, and no significant loss of viability was confirmed. Furthermore, when M. roseus was cultured in 1, 3, 5, 10 and 15% NaCl, the survival ratio proportionally increased at increased NaCl concentration. M. roseus cultured in 15% NaCl was remarkably resistant (94.7% viability) to pressure at 138 MPa, even when suspended in lower concentration of NaCl. This suggests that NaCl concentrations in growth culture affect the piezotolerance of M. roseus and that this species has an ability to adapt to high pressure.
Related Concept Videos
Responses to Salt Stress
Carbon-dioxide Fixation
Factors Influencing Microbial Growth: Osmolarity
Other Stress Responses in Bacteria
Hyperthermophilic Bacteria
Deep Sea Microbial Ecology

