Abstract
Microcystis aeruginosa is a widespread cyanobacteria capable of producing hepatotoxic microcystins. Understanding the environmental factors that influence its growth and toxin production is essential to managing the negative effects on freshwater systems. Some micronutrients are important cofactors in cyanobacterial proteins and can influence cyanobacterial growth when availability is limited. However, micronutrient requirements are often species specific, and can be influenced by substitution between metals or by luxury uptake. In this study, M. aeruginosa was grown in modified growth media that individually excluded some micronutrients (cobalt, copper, iron, manganese, molybdenum) to assess the effect on growth, toxin production, cell morphology and iron accumulation. M. aeruginosa growth was limited when iron, cobalt and manganese were excluded from the growth media, whereas the exclusion of copper and molybdenum had no effect on growth. Intracellular microcystin-LR concentrations were variable and were at times elevated in treatments undergoing growth limitation by cobalt. Intracellular iron was notably higher in treatments grown in cobalt-deplete media compared to other treatments possibly due to inhibition or competition for transporters, or due to irons role in detoxifying reactive oxygen species (ROS).
Subject
Health, Toxicology and Mutagenesis,Toxicology
Reference81 articles.
1. Cyanobacteria: The Bright and Dark Sides of a Charming Group;Biodivers. Conserv.,2015
2. Eutrophication and Harmful Algal Blooms: A Scientific Consensus;Harmful Algae,2008
3. Nutrient Limitation of Freshwater Cyanobacteria;Harmful Cyanobacteria. Aquatic Ecology Series,2005
4. Graneli, E., and Turner, J. (2006). Ecology of Harmful Algae, Springer.
5. Evidence for Phosphorus, Nitrogen, and Iron Colimitation of Phytoplankton Communities in Lake Erie;Limnol. Oceanogr.,2007
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