Copper effects on biomarkers associated with photosynthesis, oxidative status and calcification in the Brazilian coral Mussismilia harttii (Scleractinia, Mussidae).

Mar Environ Res

Programa de Pós-Graduação em Oceanografia Biológica, Instituto de Oceanografia, Universidade Federal do Rio Grande, Av. Itália, km 8, Rio Grande, RS 96203-900, Brazil; Instituto Coral Vivo, Rua dos Coqueiros, Parque Yaya, Santa Cruz Cabrália, BA 45.807-000, Brazil; Instituto de Ciências Biológicas, Universidade Federal do Rio Grande, Av. Itália, km 8, Rio Grande, RS 96203-900, Brazil. Electronic address:

Published: September 2017

AI Article Synopsis

  • Seawater contamination by copper (Cu) poses a significant threat to coral reefs, specifically affecting the Brazilian coral Mussismilia harttii.
  • Polyps were tested under controlled Cu levels and exposed to higher concentrations for 12 days to evaluate impacts on photosynthesis, oxidative stress, and calcification.
  • Results showed that Cu exposure leads to increased oxidative stress, shown by higher antioxidant capacity and DNA damage, and potentially reduced calcification ability due to decreased ATPase activity, making these biomarkers useful for assessing coral health.

Article Abstract

Seawater contamination with metals, such as copper (Cu), is a notable local impact threatening coral reefs. Cu effects on biomarkers associated with photosynthesis, oxidative status and calcification were evaluated in the Brazilian coral Mussismilia harttii using a marine mesocosm facility. Polyps were kept under control conditions (1.9 μg L Cu) or exposed to dissolved Cu (3.0, 4.8, and 6.7 μg L) for 12 days. Photochemical efficiency of the photosystem II of symbiotic algae (zooxanthellae) was measured and polyps were analyzed for antioxidant capacity, lipid peroxidation, DNA damage, and carbonic anhydrase Ca-ATPase, Mg-ATPase and (Ca,Mg)-ATPase activities after 12 days. Results highlighted the effects of Cu exposure, leading corals to an oxidative stress condition [increased total antioxidant capacity (TAC) and DNA damage] and a possible reduced calcification ability [decreased (Ca,Mg)-ATPase activity]. Therefore, biomarkers associated with oxidative status (TAC and DNA damage) and calcification [(Ca, Mg)-ATPase] are indicated as good predictors of corals health.

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http://dx.doi.org/10.1016/j.marenvres.2017.08.002DOI Listing

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