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黄文敏, 邢伟, 李敦海, 刘永定. 外源DMSO和ASA对微囊藻毒素胁迫下烟草细胞ROS生成和抗氧化系统的影响[J]. 水生生物学报, 2007, 31(6): 869-870.
引用本文: 黄文敏, 邢伟, 李敦海, 刘永定. 外源DMSO和ASA对微囊藻毒素胁迫下烟草细胞ROS生成和抗氧化系统的影响[J]. 水生生物学报, 2007, 31(6): 869-870.
HUANG Wen-Min, XING Wei, LI Dun-Hai, LIU Yong-Ding. EFFECTS OF EXOGENOUS DMSO AND ASA ON FORMATION OF REACTIVE OXYGEN SPECIES AND ANTIOXIDANT SYSTEMS OF TOBACCO SUSPENSION CELLS UNDER MC-RR STRESS[J]. ACTA HYDROBIOLOGICA SINICA, 2007, 31(6): 869-870.
Citation: HUANG Wen-Min, XING Wei, LI Dun-Hai, LIU Yong-Ding. EFFECTS OF EXOGENOUS DMSO AND ASA ON FORMATION OF REACTIVE OXYGEN SPECIES AND ANTIOXIDANT SYSTEMS OF TOBACCO SUSPENSION CELLS UNDER MC-RR STRESS[J]. ACTA HYDROBIOLOGICA SINICA, 2007, 31(6): 869-870.

外源DMSO和ASA对微囊藻毒素胁迫下烟草细胞ROS生成和抗氧化系统的影响

EFFECTS OF EXOGENOUS DMSO AND ASA ON FORMATION OF REACTIVE OXYGEN SPECIES AND ANTIOXIDANT SYSTEMS OF TOBACCO SUSPENSION CELLS UNDER MC-RR STRESS

  • 摘要: 采用2μg/mL微囊藻毒素-RR(MC-RR)、2μg/mL MC-RR+0.5%二甲基亚砜(DMSO)和2μg/mL MC-RR+2 mmol/L抗坏血酸(ASA)分别处理烟草悬浮细胞, 研究上述各处理对烟草悬浮细胞活性氧(ROS)产生和抗氧化系统的影响. 结果表明, 与对照相比, MC-RR单独处理后烟草悬浮细胞中ROS、膜脂过氧化产物丙二醛(MDA)和细胞内源ASA的含量及超氧化物歧化酶(SOD)和过氧化物酶(POD)的活性明显升高, 还原型谷胱甘肽(GSH)的含量有一个先降后升的变化过程. 在分别加入外源抗氧化剂DMSO或ASA后, 细胞内ROS和MDA含量下降, ASA、GSH含量和SOD、POD酶活性基本可恢复到对照水平. 以上结果说明, 微囊藻毒素单独处理细胞可造成氧化胁迫, 其所诱导的ROS的大量积累很有可能是其产生细胞毒害的关键因子, 外源抗氧化剂ASA和DMSO可缓解MC-RR对细胞的毒害作用, 对细胞起一定保护作用.

     

    Abstract: Microcystins are a family of toxins produced by freshwater cyanobacteria.They are cyclic heptapeptides, composed of seven amino acids.They exert a toxic effect by being specific inhibitors of the protein phosphatases 1 and 2A (PP1 and PP2A), but recent evidences also indicate its potential to generate oxidative stress.Oxidative stress is a general term used to describe the steady state level of oxidative damage in cells,tissues, or organs, caused by the reactive oxygen species(ROS).In this experiment, the toxic mechanism of MC-RR inducing oxidative stress was evaluated in tobacco BY-2 suspension cells.Changes of ROS formation and antioxidant system of tobacco BY-2 suspension cellswere studied under the treatment of 2 μg/mLMC-RR,2 μg/mLMC-RR +0.5 % DMSO and 2 μg/mLMC-RR +2 mmol/L ASA.Under the treatment of 2 μg/mL MC-RR,the contents of ROS ,MDA and ASA as well as the activities of SOD and POD were higher than those in control after 5 days treatment.GSH content first decreased and then increased, and at the 6th day of treatment GSH content significantly increased compared with the control.The abundant accumulation of ROS and the change of antioxidant system both indicated that the cells suffered from oxidative stress induced by MC-RR.ROS may play an important role in its toxic effect on the cells.The MC-RR-induced oxidative stress in cellswas further confirmed by exposing the cells to MC-RR in the presence of two ROS scavengers ,ASA or DMSO.ASA has significant capacity of scavenging O2- and H2O2, and DMSO is a kind of hydroxyl radical scavengers.When tobacco BY-2 suspension cells were exposed to 2 μg/mLMCRRwith 0.5%DMSO or 2 mmol/L ASA , the formation of ROS and MDA were prevented and the contents of GSH ,ASA and activities of SOD and POD all decreased in contrast to MC-RR treatment.It concluded that tobacco BY-2 suspension cells suffered oxidative stress after MC-RR treatment and the exogenous ASA and DMSO can protect the cells fromMC-RR induced oxidative stress.

     

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