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Effect of Cd on GSH and GSH-related enzymes of Chlamydomonas sp.ICE-L existing in Antarctic ice 被引量:3

Effect of Cd on GSH and GSH-related enzymes of Chlamydomonas sp.ICE-L existing in Antarctic ice
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摘要 Glutathione(GSH) and GSH-related enzymes play a great role in protecting organisms from oxidative damage. The GSH level and GSH-related enzymes activities were investigated as well as the growth yield and malonyldialdehyde(MDA) content in the Antarctic ice microalga Chlamydomonas sp. ICE-L exposure to the different cadmium concentration in this paper. The results showed that the higher concentration Cd inhibited the growth of ICE-L significantly and Cd would induce formation of MDA. At the same time, it is clear that GSH level, glutathione peroxidases(GPx) activity and glutathione S\|transferases(GST), activity were higher in ICE-L exposed to Cd than the control. But GR activity dropped notably when ICE-L were cultured in the medium containing Cd. Increase of GSH level, GPx and GST activities acclimate to oxidative stress induced by Cd and protect Antarctic ice microalga Chlamydomonas sp. ICE-L from toxicity caused by Cd exposure. These parameters may be used to assess the biological impact of Cd in the Antarctic pole region environment. Glutathione(GSH) and GSH-related enzymes play a great role in protecting organisms from oxidative damage. The GSH level and GSH-related enzymes activities were investigated as well as the growth yield and malonyldialdehyde(MDA) content in the Antarctic ice microalga Chlamydomonas sp. ICE-L exposure to the different cadmium concentration in this paper. The results showed that the higher concentration Cd inhibited the growth of ICE-L significantly and Cd would induce formation of MDA. At the same time, it is clear that GSH level, glutathione peroxidases(GPx) activity and glutathione S\|transferases(GST), activity were higher in ICE-L exposed to Cd than the control. But GR activity dropped notably when ICE-L were cultured in the medium containing Cd. Increase of GSH level, GPx and GST activities acclimate to oxidative stress induced by Cd and protect Antarctic ice microalga Chlamydomonas sp. ICE-L from toxicity caused by Cd exposure. These parameters may be used to assess the biological impact of Cd in the Antarctic pole region environment.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第4期667-671,共5页 环境科学学报(英文版)
基金 TheNationalNaturalScienceFoundationofChina(No .40 2 0 60 2 2,40 30 60 2 6)
关键词 antarctic ice microalgae Chlamydomonas sp. ICE-L GLUTATHIONE glutathione peroxidase glutathione reductase glutathione S-transferase cadmium antarctic ice microalgae Chlamydomonas sp. ICE-L glutathione glutathione peroxidase glutathione reductase glutathione S-transferase cadmium
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