Scinovex
article Open AccessTop 1% cited

Summer heatwaves promote blooms of harmful cyanobacteria

Global Change Biology · 2007 · Vol. 14(3) · pp. 495–512
Klaus JöhnkJef HuismanJonathan SharplesB.P. SommeijerP. VisserJasper M. Stroom

Abstract

Abstract Dense surface blooms of toxic cyanobacteria in eutrophic lakes may lead to mass mortalities of fish and birds, and provide a serious health threat for cattle, pets, and humans. It has been argued that global warming may increase the incidence of harmful algal blooms. Here, we report on a lake experiment where intermittent artificial mixing failed to control blooms of the harmful cyanobacterium Microcystis during the summer of 2003, one of the hottest summers ever recorded in Europe. To understand this failure, we develop a coupled biological–physical model investigating how competition for light between buoyant cyanobacteria, diatoms, and green algae in eutrophic lakes is affected by the meteorological conditions of this extreme summer heatwave. The model consists of a phytoplankton competition model coupled to a one‐dimensional hydrodynamic model, driven by meteorological data. The model predicts that high temperatures favour cyanobacteria directly, through increased growth rates. Moreover, high temperatures also increase the stability of the water column, thereby reducing vertical turbulent mixing, which shifts the competitive balance in favour of buoyant cyanobacteria. Through these direct and indirect temperature effects, in combination with reduced wind speed and reduced cloudiness, summer heatwaves boost the development of harmful cyanobacterial blooms. These findings warn that climate change is likely to yield an increased threat of harmful cyanobacteria in eutrophic freshwater ecosystems.

Aquatic Ecosystems and Phytoplankton DynamicsMarine and coastal ecosystemsFish Ecology and Management StudiesEutrophicationEnvironmental scienceCyanobacteriaPhytoplanktonAlgal bloomMicrocystisEcosystemClimate changeAlgaeMicrocystis aeruginosa

Funding

  • Sight Research UK
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Natural Environment Research Council
Citations
1,070
FWCI
23.74
field-weighted impact
References
85
Percentile
100%
vs. same field & year
Citations per year
Cited by
Phytoplankton response to a changing climate
Hydrobiologia · 2012 · 671 citations
Warmer climates boost cyanobacterial dominance in shallow lakes
Global Change Biology · 2011 · 889 citations
Lakes as sentinels of climate change
Limnology and Oceanography · 2009 · 1,875 citations
State of knowledge and concerns on cyanobacterial blooms and cyanotoxins
Environment International · 2013 · 952 citations
Cyanobacterial blooms
Nature Reviews Microbiology · 2018 · 2,690 citations
Scientists’ warning to humanity: microorganisms and climate change
Nature Reviews Microbiology · 2019 · 2,020 citations
References
The numerical computation of turbulent flows
Computer Methods in Applied Mechanics and Engineering · 1974 · 12,513 citations
The prediction of laminarization with a two-equation model of turbulence
International Journal of Heat and Mass Transfer · 1972 · 4,071 citations
Effects of Climate Change on Plant Respiration
Ecological Applications · 1991 · 869 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Summer heatwaves promote blooms of harmful cyanobacteria · Scinovex