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PMID: 18096252 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Thiol metabolism and antioxidant systems complement each other during arsenate detoxification in Ceratophyllum demersum L.

Aquatic toxicology (Amsterdam, Netherlands) ·Vol. 86 ·No. 2 ·2008-01-31 ·Pages 205-15

Mishra S, Srivastava S, Tripathi RD, Trivedi PK

Abstract

Ceratophyllum demersum L. is known to be a potential accumulator of arsenic (As), but mechanisms of As detoxification have not been investigated so far. In the present study, we analyzed the biochemical responses of Ceratophyllum plants to arsenate (As(V); 0-250 microM) exposure to explore the underlying mechanisms of As detoxification. Plants efficiently tolerated As toxicity up to concentrations of 50 microM As(V) and durations of 4 d with no significant effect on growth by modulating various pathways in a coordinated and complementary manner and accumulated about 76 microg As g(-1)dw. Significant increases were observed in the levels of various thiols including phytochelatins (PCs), the activities of enzymes of thiolic metabolism as well as arsenate reductase (AR). These primary responses probably enabled plants to detoxify at least some part of As(V) through its reduction and subsequent complexation. The maximum proportion of As chelated by PCs was found to be about 30% (at 50 microM As(V) after 2 d). Simultaneously, a significant increase in the activities of antioxidant enzymes was observed and hence plants did not experience oxidative stress when exposed to 50 microM As(V) for 4 d. Exposure of plants to higher concentrations (250 microM As(V)) and/or for longer durations (7 d) resulted in a significant increase in the level of As (maximum 525 microgg(-1)dw at 250 microM after 7 d) and an inverse relationship between As accumulation and various detoxification strategies was observed that lead to enhanced oxidative stress and hampered growth.

MeSH Terms
Aminoacyltransferases/drug effects Antioxidants/metabolism Arsenates/analysis,metabolism,toxicity Arsenic/analysis Enzymes/drug effects Hydrogen Peroxide/analysis Inactivation, Metabolic Magnoliopsida/chemistry,drug effects,metabolism Malondialdehyde/analysis Oxidative Stress Phosphates/chemistry Phytochelatins/chemistry,drug effects Sulfhydryl Compounds/analysis,metabolism Time Factors Water Pollutants, Chemical/analysis,metabolism,toxicity
Chemicals
Antioxidants Arsenates Enzymes Phosphates Sulfhydryl Compounds Water Pollutants, Chemical Malondialdehyde Phytochelatins Hydrogen Peroxide Aminoacyltransferases glutathione gamma-glutamylcysteinyltransferase Arsenic arsenic acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Mishra Seema
Ecotoxicology and Bioremediation Group, National Botanical Research Institute, Rana Pratap Marg, Lucknow 226001, India.
Srivastava Sudhakar
Tripathi Rudra D
Trivedi Prabodh K
Article Info
Journal
Aquatic toxicology (Amsterdam, Netherlands)
Abbr.
Aquat Toxicol
ISSN
0166-445X
Published
2008-01-31
Epub
2007-00-09
Pages
205-15
Language
English
Region
Netherlands
NLM ID
8500246
Subset
IM
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