An alternative explanation for cyanobacterial scum formation and persistence by oxygenic photosynthesis

Harmful Algae. 2016 Dec:60:27-35. doi: 10.1016/j.hal.2016.10.002. Epub 2016 Oct 28.

Abstract

The cause of persistent cyanobacteria scum formation in lakes is an unresolved subject. Scum refers to the event in which cyanobacteria are at the water surface of a lake. Factors like low turbulence levels, long day-light, high water temperatures and the buoyant capacity of cyanobacterial cells play a role in the occurrence of scums. However, they do not explain why scums are observed at periods during the day when according to theory they should have disappeared into the deeper water layers. In this study, we present an alternative explanation. The hypothesis we present here is that irreversible buoyancy of cyanobacteria colonies is created by the growth of gas bubbles on or within the mucilage of the colonies. These bubbles grow under oxygen super-saturated conditions. At low wind speed and high chlorophyll levels, the dissolved oxygen (DO) produced during photosynthesis by cyanobacteria, cannot escape sufficiently fast to the atmosphere hence a DO supersaturated condition arises in the water. At this stage, growth of oxygen bubbles may occur inside or attached to the mucilage. We present results of compression experiments to support our hypothesis. In a chamber, the pressure on lake water containing a natural cyanobacteria population is increased. At 3×105 and 4×105Pa the cyanobacteria colonies were not able to float anymore and sank. This pressure is lower than the 106Pa needed to collapse all gas vacuoles inside the cyanobacteria cells (Walsby, 1994). The observed change from floating to sinking colonies due to increased water pressure suggests that gas bubbles were present inside the colonies. In lakes, these gas bubbles may lead to permanent buoyancy, i.e. a persistent scum.

Keywords: Cyanobacteria; Gas bubble growth; Microcystis aeruginosa; Oxygen supersaturation; Photosynthesis; Scum formation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Cyanobacteria / metabolism
  • Cyanobacteria / physiology*
  • Lakes / microbiology*
  • Oxygen / metabolism*
  • Photosynthesis*
  • Water Microbiology*

Substances

  • Oxygen