Toxaphene affects the levels of mRNA transcripts that encode antioxidant enzymes in Hydra.

Comp Biochem Physiol C Toxicol Pharmacol

South Sea Environment Research Department, Korea Ocean Research and Development Institute, Geoje, Republic of Korea.

Published: June 2012

AI Article Synopsis

  • The study assessed the acute toxicity of toxaphene on the freshwater organism Hydra magnipapillata, finding median lethal concentrations (LC(50)) to decrease over time from 34.5 mg/L after 24 hours to 12.0 mg/L after 72 hours.
  • Morphological changes in hydra indicated that toxaphene adversely affects their nervous system, and the study further analyzed gene expression related to oxidative stress and neurotransmission.
  • Significant alterations in transcripts encoding various antioxidant enzymes were observed, highlighting the need to identify specific biomarkers for neurotoxicity in these organisms to aid in monitoring aquatic pollution.

Article Abstract

We evaluated toxaphene-induced acute toxicity in Hydra magnipapillata. The median lethal concentrations of the animals (LC(50)) were determined to be 34.5 mg/L, 25.0 mg/L and 12.0 mg/L after exposure to toxaphene for 24 h, 48 h and 72 h, respectively. Morphological responses of hydra polyps to a range of toxaphene concentrations suggested that toxaphene negatively affects the nervous system of H. magnipapillata. We used real-time quantitative PCR of RNA extracted from polyps exposed to two concentrations of toxaphene (0.3 mg/L and 3 mg/L) for 24 h to evaluate the differential regulation of levels of transcripts that encode six antioxidant enzymes (CAT, G6PD, GPx, GR, GST and SOD), two proteins involved in detoxification and molecular stress responses (CYP1A and UB), and two proteins involved in neurotransmission and nerve cell differentiation (AChE and Hym-355). Of the genes involved in antioxidant responses, the most striking changes were observed for transcripts that encode GPx, G6PD, SOD, CAT and GST, with no evident change in levels of transcripts encoding GR. Levels of UB and CYP1A transcripts increased in a dose-dependent manner following exposure to toxaphene. Given that toxaphene-induced neurotoxicity was not reflected in the level of AChE transcripts and only slight accumulation of Hym-355 transcript was observed only at the higher of the two doses of toxaphene tested, there remains a need to identify transcriptional biomarkers for toxaphene-mediated neurotoxicity in H. magnipapillata. Transcripts that respond to toxaphene exposure could be valuable biomarkers for stress levels in H. magnipapillata and may be useful for monitoring the pollution of aquatic environments.

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http://dx.doi.org/10.1016/j.cbpc.2012.03.005DOI Listing

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