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Heavy metal-induced glutathione accumulation and its role in heavy metal detoxification in Phanerochaete chrysosporium
Authors:Piao Xu  Liang Liu  Guangming Zeng  Danlian Huang  Cui Lai  Meihua Zhao  Chao Huang  Ningjie Li  Zhen Wei  Haipeng Wu  Chen Zhang  Mingyong Lai  Yibin He
Affiliation:1. College of Environmental Science and Engineering, Hunan University, Changsha, 410082, People’s Republic of China
2. Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha, 410082, People’s Republic of China
Abstract:Phanerochaete chrysosporium are known to be vital hyperaccumulation species for heavy metal removal with admirable intracellular bioaccumulation capacity. This study analyzes the heavy metal-induced glutathione (GSH) accumulation and the regulation at the intracellular heavy metal level in P. chrysosporium. P. chrysosporium accumulated high levels of GSH, accompanied with high intracellular concentrations of Pb and Cd. Pb bioaccumulation lead to a narrow range of fluctuation in GSH accumulation (0.72–0.84 μmol), while GSH plummeted under Cd exposure at the maximum value of 0.37 μmol. Good correlations between time-course GSH depletion and Cd bioaccumulation were determined (R 2?>?0.87), while no significant correlations have been found between GSH variation and Pb bioaccumulation (R 2?P. chrysosporium showed considerable hypertolerance to Pb ions, accompanied with demand-driven stimulation in GSH synthesis and unconspicuous generation of reactive oxygen stress. GSH plummeted dramatically response to Cd exposure, due to the strong affinity of GSH to Cd and the involvement of GSH in Cd detoxification mechanism mainly as Cd chelators. Investigations into GSH metabolism and its role in ameliorating metal toxicity can offer important information on the application of the microorganism for wastewater treatment.
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