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Intensification of harmful cyanobacterial blooms in a eutrophic, temperate lake caused by nitrogen, temperature, and CO. | LitMetric

Intensification of harmful cyanobacterial blooms in a eutrophic, temperate lake caused by nitrogen, temperature, and CO.

Sci Total Environ

School of Marine and Atmospheric Sciences, Stony Brook University, Southampton, NY, United States. Electronic address:

Published: March 2024

Warmer temperatures can significantly increase the intensity of cyanobacterial harmful algal blooms (CHABs) in eutrophic freshwater ecosystems. However, few studies have examined the effects of CO enrichment in tandem with elevated temperature and/or nutrients on cyanobacterial taxa in freshwater ecosystems. Here, we observed changes in the biomass of cyanobacteria, nutrients, pH, and carbonate chemistry over a two-year period in a shallow, eutrophic freshwater lake and performed experiments to examine the effects and co-effects of CO, temperature, and nutrient enrichment on cyanobacterial and N-fixing (diazotrophic) communities assessed via high throughput sequencing of the 16S rRNA and nifH genes, respectively. During both years, there were significant CHABs (50-500 μg cyanobacterial chlorophyll-a L) and lake CO levels were undersaturated (≤300 μatm pCO). NH significantly increased the net growth rates of cyanobacteria as well as the biomass of the diazotrophic cyanobacterial order Nostocales under elevated and ambient CO conditions. In a fall experiment, the N fixation rates of Nostocales were significantly higher when populations were enriched with CO and P, relative to CO-enriched populations that were not amended with P. During a summer experiment, N fixation rates increased significantly under N and CO - enriched conditions relative to N-enriched and ambient CO conditions. Nostocales dominated the diazotrophic communities of both experiments, achieving the highest relative abundance under CO-enriched conditions when N was added in the first experiment and when CO and temperature were elevated in the second experiment, when N fixation rates also increased significantly. Collectively, this study indicates that N promotes cyanobacterial blooms including those formed by Dolichospermum and that the biomass and N fixation rates of diazotrophic cyanobacterial taxa may benefit from enhanced CO levels in eutrophic lakes.

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http://dx.doi.org/10.1016/j.scitotenv.2024.169885DOI Listing

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