The Effect of Heavy Metal-Induced Oxidative Stress on the Enzymes in White Rot Fungus Phanerochaete chrysosporium
被引:0
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作者:
Qihua Zhang
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机构:Hunan University,College of Environmental Science and Engineering
Qihua Zhang
Guangming Zeng
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机构:Hunan University,College of Environmental Science and Engineering
Guangming Zeng
Guiqiu Chen
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机构:Hunan University,College of Environmental Science and Engineering
Guiqiu Chen
Min Yan
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机构:Hunan University,College of Environmental Science and Engineering
Min Yan
Anwei Chen
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h-index: 0
机构:Hunan University,College of Environmental Science and Engineering
Anwei Chen
Jianjian Du
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机构:Hunan University,College of Environmental Science and Engineering
Jianjian Du
Jian Huang
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机构:Hunan University,College of Environmental Science and Engineering
Jian Huang
Bin Yi
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机构:Hunan University,College of Environmental Science and Engineering
Bin Yi
Ying Zhou
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机构:Hunan University,College of Environmental Science and Engineering
Ying Zhou
Xiaoxiao He
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机构:Hunan University,College of Environmental Science and Engineering
Xiaoxiao He
Yan He
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机构:Hunan University,College of Environmental Science and Engineering
Yan He
机构:
[1] Hunan University,College of Environmental Science and Engineering
[2] Hunan University,Key Laboratory of Environmental Biology and Pollution Control, Ministry of Education
来源:
Applied Biochemistry and Biotechnology
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2015年
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175卷
关键词:
Heavy metal;
Reactive oxygen species;
Antioxidant defense system;
Cytochrome P450;
D O I:
暂无
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摘要:
Prevalence of heavy metals in the living environment causes chemical stress and reactive oxygen species (ROS) formation in Phanerochaete chrysosporium (P. chrysosporium). However, the mechanisms involved in ROS defense are still under investigation. In the present study, we evaluated the effect of lead- and cadmium-induced oxidative stress on the activities of catalase (CAT), peroxidase (POD), lignin peroxidase (LiP), and manganese peroxidase (MnP). A time-dependent change in all enzyme activities was observed following exposure to 50 μM cadmium and 25 μM lead. The lowest values were recorded at 4 h after exposure. Both cadmium and lead inhibited CAT and POD. The cytochrome P450 (CYP450) levels increased under 50–100 μM cadmium or lead exposure and decreased when heavy metal concentration was under 50 μM; this suggested that ROS is not the only factor that alters the CYP450 levels. The cadmium removal rate in the sample containing 900 μM taxifolin (inhibitor of CYP450) and 100 μM cadmium was reduced to 12.34 %, 9.73 % lower than that of 100 μM cadmium-induced sample, indicating CYP450 may play an indirect but key role in the process of clearance of heavy metals. The pH of the substrate solution decreased steadily during the incubation process.