4.7 Article

Effect of hydrogen peroxide on Microcystic aeruginosa: Role of cytochromes P450

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 626, Issue -, Pages 211-218

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.scitotenv.2018.01.067

Keywords

Microcystis aeruginosa; Hydrogen peroxide; Cytochromes P450; Photosynthesis; Microcystins

Funding

  1. National Natural Science Foundation of China (NSFC) [21677124]

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Cyanobacterial bloom has been rising as a worldwide issue owing to its adverse effects to water quality and ecological health. To solve this problem, hydrogen peroxide (H2O2) has been considered as a potential algaecide because no byproducts are generated after treatment and because it kills cyanobacteria selectively. In addition, cytochromes P450 (CYPs) was reported to be related with H2O2, but the roles of CYPs in the regulation of H2O2 in cyanobacteria have yet to be investigated. In this study, the CYPs suicide inhibitor 1-aminobenzotriazole (ABT) was added to the representative cyanobacteria Microcystis aeruginosa (M. aeruginosa) exposed to H2O2. The results showed that CYPsmediates the effects of H2O2 on M. aeruginosa. To be exact, the addition of ABT induced greater inhibitory effects on the growth and higher reactive oxygen species levels in M. aeruginosa comparing to those treated with H2O2 alone. At the same time, photosynthetic parameters significantly decreased, and the content of extracellular microcystins (MCs) increased but the total MCs decreased due to the combined effect of H2O2 and ABT. ABT also intensified the aggregation of Fe, which might explain the effects on photosynthesis and synthesis of MCs. Furthermore, the transcriptional levels of MCs-synthesis genes (mcyA and mcyD) decreased butMCs-release gene (mcyH) increased, and photosynthetic genes (psaB, psbD1and rbcL) decreased, which confirmed the effects on the MC production/release and electron transport of photosynthesis, respectively. In summary, this study illuminated the mediation role of CYPs in the adverse effects on M. aeruginosa induced by H2O2, thus providing new theoretical basis for the explanation of H2O2 as potential algaecide. (c) 2018 Elsevier B.V. All rights reserved.

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