Buoyancy Limitation of Filamentous Cyanobacteria under Prolonged Pressure due to the Gas Vesicles Collapse

Environ Manage. 2017 Aug;60(2):293-303. doi: 10.1007/s00267-017-0875-7. Epub 2017 May 5.

Abstract

Freshwater cyanobacterium Pseudanabaena galeata were cultured in chambers under artificially generated pressures, which correspond to the hydrostatic pressures at deep water. Variations occurred in gas vesicles volume, and buoyancy state of cells under those conditions were analyzed at different time intervals (5 min, 1 day, and 5 days). Variations in gas vesicles morphology of cells were observed by transmission electron microscopy images. Settling velocity (Vs) of cells which governs the buoyancy was observed with the aid of a modified optical microscope. Moreover, effects of the prolonged pressure on cell ballast composition (protein and polysaccharides) were examined. Elevated pressure conditions reduced the cell ballast and caused a complete disappearance of gas vesicles in Pseudanabaena galeata cells. Hence cyanobacteria cells were not able to float within the study period. Observations and findings of the study indicate the potential application of hydrostatic pressure, which naturally occurred in hypolimnion of lakes, to inhibit the re-suspension of cyanobacteria cells.

Keywords: Buoyancy loss; Cell ballast; Filamentous cyanobacteria; Gas vesicles; Prolonged pressure; Pseudanabaena galeata.

MeSH terms

  • Bacterial Physiological Phenomena
  • Cyanobacteria* / physiology
  • Cyanobacteria* / ultrastructure
  • Lakes / microbiology*
  • Microscopy, Electron, Transmission
  • Models, Theoretical
  • Pressure*
  • Temperature
  • Vacuoles* / physiology
  • Vacuoles* / ultrastructure
  • Water Microbiology / standards
  • Water Movements