4.5 Article

GLOBAL CYTOSINE METHYLATION IN DAPHNIA MAGNA DEPENDS ON GENOTYPE, ENVIRONMENT, AND THEIR INTERACTION

期刊

ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
卷 34, 期 5, 页码 1056-1061

出版社

WILEY
DOI: 10.1002/etc.2887

关键词

Cytosine methylation; Aquatic invertebrate; Environmental toxicology; Epigenetics; Ecotoxicology

资金

  1. Flemish Institute for the Promotion of Science Through Technology
  2. Research Foundation Flanders [G.0614.11]
  3. BELSPO project AquaStress (IAP project) [P7/31]
  4. BELSPO project SPEEDY (IAP project) [P7/04]
  5. KU Leuven Excellence Center [PF/2010/07]
  6. EuroEEFG project STRESSFLEA [09-EEFG-FP-040]

向作者/读者索取更多资源

The authors characterized global cytosine methylation levels in 2 different genotypes of the ecotoxicological model organism Daphnia magna after exposure to a wide array of biotic and abiotic environmental stressors. The present study aimed to improve the authors' understanding of the role of cytosine methylation in the organism's response to environmental conditions. The authors observed a significant genotype effect, an environment effect, and a genotypexenvironment effect. In particular, global cytosine methylation levels were significantly altered after exposure to Triops predation cues, Microcystis, and sodium chloride compared with control conditions. Significant differences between the 2 genotypes were observed when animals were exposed to Triops predation cues, Microcystis, Cryptomonas, and sodium chloride. Despite the low global methylation rate under control conditions (0.49-0.52%), global cytosine methylation levels upon exposure to Triops demonstrated a 5-fold difference between the genotypes (0.21% vs 1.02%). No effects were found in response to arsenic, cadmium, fish, lead, pH of 5.5, pH of 8, temperature, hypoxia, and white fat cell disease. The authors' results point to the potential role of epigenetic effects under changing environmental conditions such as predation (i.e., Triops), diet (i.e., Cryptomonas and Microcystis), and salinity. The results of the present study indicate that, despite global cytosine methylation levels being low, epigenetic effects may be important in environmental studies on Daphnia. Environ Toxicol Chem 2015;34:1056-1061. (c) 2015 SETAC

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