Anatoxins are consistently released into the water of streams with Microcoleus autumnalis-dominated (cyanobacteria) proliferations

Harmful Algae. 2018 Dec:80:88-95. doi: 10.1016/j.hal.2018.10.001. Epub 2018 Oct 10.

Abstract

Proliferations of potentially toxic, mat-forming Microcoleus are increasing in streams globally. A range of cyanotoxins are produced by Microcoleus, with the neurotoxic anatoxins (anatoxin-a, dihydro-anatoxin-a, homoanatoxin-a and dihydro-homoanatoxin-a) the most commonly reported. The anatoxins produced by Microcoleus are thought to be largely contained within the cells. More knowledge on whether anatoxins are been released into the overlying stream water is required to better assess health risks to human, animals, and aquatic organisms. Field studies were conducted in three streams experiencing toxic Microcoleus autumnalis (basionym Phormidium autumnale)-dominated proliferations. Samples were collected every 1.5-3 h over a 24- or 26-h sampling period. Water samples were analyzed for total (intracellular and dissolved) and dissolved anatoxins, and time-integrated anatoxin samples were collected using solid phase adsorption tracking technology (SPATT). Anatoxins were detected in all stream water and SPATT samples (max. 0.91 ng mL-1 and 95 ng g-1 of strata-x hr-1). At two sites, anatoxins were largely dissolved, whereas at the third site only total anatoxins could be detected. Temporal variability in anatoxin concentrations was observed, but there were no evident patterns between sampling sites. Linear regression showed a very weakstatistically significant relationship (R2 = 0.24, p = 0.002) between total anatoxin concentrations in water and SPATT, however, when tested per site, only one of the three showed a significant relationship. These results highlight the potential for chronic exposure to anatoxins for humans (i.e., through drinking water) and aquatic organisms in streams with M. autumnalis proliferations. The health implications of this are unknown.

Keywords: Benthic mats; Cyanobacteria; Liquid chromatography-mass spectrometry; Solid phase adsorption tracking technology.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bacterial Toxins / analysis*
  • Cyanobacteria / growth & development
  • Cyanobacteria / physiology*
  • Cyanobacteria Toxins
  • Environmental Monitoring
  • Linear Models
  • Marine Toxins / analysis*
  • Microcystins / analysis*
  • Risk Assessment
  • Rivers / chemistry*

Substances

  • Bacterial Toxins
  • Cyanobacteria Toxins
  • Marine Toxins
  • Microcystins