4.7 Article

Functional characterization of four metallothionein genes in Daphnia pulex exposed to environmental stressors

期刊

AQUATIC TOXICOLOGY
卷 110, 期 -, 页码 54-65

出版社

ELSEVIER
DOI: 10.1016/j.aquatox.2011.12.010

关键词

Metallothionein; mRNA expression; Daphnia; Environmental toxicology

资金

  1. Flemish Institute for the Promotion of Scientific and Technological Research in Industry (IWT, Belgium)
  2. UGent (BOF) [01N01211, 01SB1910U]
  3. Research Foundation Flanders (FWO) [1.5.269.11, G.0229.09, G.0614.11]
  4. European Science Foundation (EuroEEFG)
  5. National Institute of Environmental Health Science [R01ES019324]

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We characterized the metallothionein genes (Mt1, Mt2, Mt3, and Mt4) in Daphnia pulex on both molecular and ecotoxicological level. We therefore conducted a bioinformatical analysis of the gene location and predicted protein sequence, and screened the upstream flanking region for regulatory elements. The number of these elements and their positions relative to the start codon varied strongly among the four genes and even among two gene duplicates (Mt1A and Mt1B), suggesting different roles of the four proteins in the organisms' response to stress. We subsequently conducted a chronic 16-day exposure of D. pulex to different environmental stressors (at sublethal levels causing approximately 50% reduction in reproduction). Based on prior knowledge, we exposed them to the metals Cd. Cu, and Ni, the moulting hormone hydroxyecdysone (20E), and the oxidative stressors cyanobacteria (Microcystis aeruginosa), and paraquat (Pq). We then compared mRNA expression levels of the four Mt genes under these stress conditions with control conditions in The Chosen One clone (TCO), for which the full genome was sequenced and annotated. All together, the mRNA expression results under the different stress regimes indicate that different Mt genes may play different and various roles in the response of D. pulex to stress and that some (but not all) of the differences among the four genes could be related to the pattern of regulatory elements in their upstream flanking region. (C) 2011 Elsevier B.V. All rights reserved.

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