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首页> 外文期刊>Research Journal of Environmental Toxicology >Effects of Cycloxydim on Population Growth, Phagocytosis, Contractile Vacuole Activity and Antioxidant Responses in the Freshwater Ciliate ( Paramecium tetraurelia )
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Effects of Cycloxydim on Population Growth, Phagocytosis, Contractile Vacuole Activity and Antioxidant Responses in the Freshwater Ciliate ( Paramecium tetraurelia )

机译:Cycloxydim对淡水纤毛虫(草履虫)的种群生长,吞噬作用,收缩液泡活性和抗氧化反应的影响。

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The continuous contamination of the aquatic environments by numerous agricultural and industrial pollutants has triggered the need to identifying new models and bioassays for assessing water pollution and understanding toxic effects of these xenobiotics at different levels. In the present study, investigation was done on physiological changes and antioxidant responses of the freshwater ciliate Paramecium tetraurelia exposed to a selective herbicide; Focus Ultra (a.i., cycloxydim: 100 g L?1). Our results revealed an inhibitory effect on the cell proliferation rate. The growth inhibitory concentration (IC50) was found to be 7.53 mg L?1. Thus, the number and the velocity of generation were decreased when the generation time was extended significantly at the higher concentration of Focus Ultra (12 mg L?1). The normal functioning of the contractile vacuole was also significantly affected at this concentration. Focus Ultra caused evenly a dose dependent stimulation of the phagocytic activity. Furthermore, monitoring biomarkers of oxidative stress showed a significant depletion in glutathione level (GSH) accompanied with a strong increase of glutathione S-transferase (GST) and catalase (CAT) activities reflecting the toxic effects of this herbicide on Paramecium tetraurelia cells.
机译:大量农业和工业污染物对水生环境的持续污染引发了对识别新模型和生物测定方法的需求,以评估水污染并了解这些异源生物在不同水平上的毒性作用。在本研究中,对暴露于选择性除草剂的淡水纤毛虫草履虫的生理变化和抗氧化反应进行了研究。 Focus Ultra(a.i.,环氧基丁:100 g L?1)。我们的结果揭示了对细胞增殖速率的抑制作用。发现生长抑制浓度(IC50)为7.53mg L·1。因此,当在较高浓度的Focus Ultra(12 mg L?1)下显着延长生成时间时,生成的数量和速度会降低。在该浓度下,收缩液泡的正常功能也受到显着影响。 Focus Ultra均匀地引起了吞噬活性的剂量依赖性刺激。此外,监测氧化应激的生物标记物显示谷胱甘肽水平(GSH)显着减少,同时谷胱甘肽S-转移酶(GST)和过氧化氢酶(CAT)活性显着增加,反映了该除草剂对草履虫的毒性作用。

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