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Global DNA hypomethylation: a potential mechanism in King pigeon nerve tissue damage induced by avermectin. | LitMetric

AI Article Synopsis

  • Avermectin (AVM) is widely used in agriculture and livestock, but its residues in manure can harm other organisms.
  • This study investigated how AVM exposure affects DNA methylation in pigeon brains over different doses and time periods, revealing global DNA hypomethylation and reduced expression of DNA methyltransferases (DNMTs).
  • Increased levels of the demethylase MBD2, which contributed more significantly to DNA hypomethylation, were also observed, linking AVM exposure to changes in DNA methylation mechanisms.

Article Abstract

As an effective insecticidal and nematicidal agent, avermectin (AVM) has been widely used in agricultural production and stock farming areas. Subsequently, the residues of AVM or its active metabolites in animal manure pose a toxic threat to non-target organisms in the environment. As the most characteristic epigenetic phenomena, DNA methylation status is a useful biological signal for the toxicity assessment of environmental chemical toxicants. In this study, analyses of the overall level of genomic DNA methylation were performed, and the expression levels of DNA methyltransferases (DNMTs), as well as demethylase methyl-CpG-binding domain protein 2 (MBD2), in pigeon brain tissues after subchronic exposure (with a AVM concentration of 20 mg/kg, 40 mg/kg and 60 mg/kg, respectively) to AVM for 30, 60 and 90 days were investigated. Global DNA hypomethylation and down-regulation of DNMT mRNA expression occurred in a dose-time-dependent manner in pigeon brains. The expression level of MBD2, which functions as a demethylase, was significantly enhanced in a dose-dependent but not time-dependent manner. In addition, the elevated expression level of MBD2 had a more robust effect on genomic DNA hypomethylation compared to changes in DNMT expression. Taken together, these results suggested that subchronic dose exposures of AVM could affect the global DNA methylation status, and this mechanism is closely related to changes in the expression levels of DNMTs and MBD2.

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Source
http://dx.doi.org/10.1016/j.cbi.2014.05.004DOI Listing

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