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Molecular effects of the cyanobacterial toxin cyanopeptolin (CP1020) occurring in algal blooms: global transcriptome analysis in zebrafish embryos.
Faltermann, Susanne; Zucchi, Sara; Kohler, Esther; Blom, Judith F; Pernthaler, Jakob; Fent, Karl.
Afiliação
  • Faltermann S; University of Applied Sciences Northwestern Switzerland, School of Life Sciences, Gründenstrasse 40, CH-4132 Muttenz, Switzerland.
  • Zucchi S; University of Applied Sciences Northwestern Switzerland, School of Life Sciences, Gründenstrasse 40, CH-4132 Muttenz, Switzerland.
  • Kohler E; University of Zürich, Institute of Plant Biology, Limnological Station, Seestrasse 187, CH-8802 Kilchberg, Switzerland.
  • Blom JF; University of Zürich, Institute of Plant Biology, Limnological Station, Seestrasse 187, CH-8802 Kilchberg, Switzerland.
  • Pernthaler J; University of Zürich, Institute of Plant Biology, Limnological Station, Seestrasse 187, CH-8802 Kilchberg, Switzerland.
  • Fent K; University of Applied Sciences Northwestern Switzerland, School of Life Sciences, Gründenstrasse 40, CH-4132 Muttenz, Switzerland; Swiss Federal Institute of Technology (ETH Zürich), Institute of Biogeochemistry and Pollution Dynamics, Department of Environmental Systems Science, CH-8092 Zürich, Swi
Aquat Toxicol ; 149: 33-9, 2014 Apr.
Article em En | MEDLINE | ID: mdl-24561424
Higher water temperatures due to climate change combined with eutrophication of inland waters promote cyanobacterial blooms. Some of the cyanobacteria produce toxins leading to drinking water contamination and fish poisoning on a global scale. Here, we focused on the molecular effects of the cyanobacterial oligopeptide cyanopeptolin CP1020, produced by Microcystis and Planktothrix strains, by means of whole-genome transcriptomics. Exposure of 72 hpf old zebrafish embryos for 96 h to 100 and 1,000 µg/L CP1020 resulted in differential transcriptional alteration of 396 and 490 transcripts (fold change ≥ 2), respectively, of which 68 gene transcripts were common. These belong to genes related to various important biological and physiological pathways. Most clearly affected were pathways related to DNA damage recognition and repair, circadian rhythm and response to light. Validation by RT-qPCR showed dose-dependent transcriptional alterations of genes belonging to DNA damage and repair and regulation of circadian rhythm. This leads to the hypothesis that CP1020 acts on DNA and has neurotoxic activity. This transcriptome analysis leads to the identification of novel and unknown molecular effects of this cyanobacterial toxin, including neurotoxicity, which may have important consequences for humans consuming contaminated drinking water.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Peptídeos Cíclicos / Poluentes Químicos da Água / Peixe-Zebra / Eutrofização / Transcriptoma Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Revista: Aquat Toxicol Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Peptídeos Cíclicos / Poluentes Químicos da Água / Peixe-Zebra / Eutrofização / Transcriptoma Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Revista: Aquat Toxicol Ano de publicação: 2014 Tipo de documento: Article