Microcystin-RR-induced accumulation of reactive oxygen species and alteration of antioxidant systems in tobacco BY-2 cells
文献类型: 外文期刊
第一作者: Yin, LY
作者: Yin, LY;Huang, JQ;Huang, WM;Li, DH;Wang, GH;Liu, YD
作者机构:
关键词: microcystin-RR;tobacco BY-2 cells;reactive oxygen species;peroxide dismutase;glutathione peroxide;superoxide dismutase;catalase;CYANOBACTERIAL TOXINS;SUPEROXIDE-DISMUTASE;PROTEIN PHOSPHATASES;OXIDATIVE STRESS;RAT HEPATOCYTES;HIGHER-PLANTS;GROWTH;RICE;LR;GLUTATHIONE
期刊名称:TOXICON ( 影响因子:3.033; 五年影响因子:2.689 )
ISSN:
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页码:
收录情况: SCI
摘要: Microcystins are cyclic heptapeptide hepatoxins produced by cyanobacteria. It has been shown that microcystins have adverse effects on animals and on plants as well. Previous researches also indicated that microcystins were capable of inducing oxidative damage in animals both in vivo and in vitro. In this study, tobacco BY-2 suspension cell line was applied to examine the effects of microcystin-RR on plant cells. Cell viability and five biochemical parameters including reactive oxygen species (ROS), superoxide dismutase (SOD), catalase (CAT), glutathione peroxide (GPX) and peroxide dismutase (POD) were investigated when cells were exposed to 50 mg/L microcystin-RR. Results showed that microcystin-RR evoked decline of the cell viability to approximately 80% after treating for 144 h. ROS levels, POD and GPX activities of the treated cells were gradually increased with a time dependent manner. Changes of SOD and CAT activities were also detected in BY-2 cells. After 168 h recovery, ROS contents, POD, GPX and CAT activities returned to normal levels. These results suggest that the microcystin-RR can cause the increase of ROS contents in plant cells and these changes led to oxidant stress, at the same time, the plant cells would improve their antioxidant abilities to combat mirocystin-RR induced oxidative injury. (c) 2005 Elsevier Ltd. All rights reserved.
分类号: R9
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