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Response to copper and cadmium stress in wild-type and copper tolerant strains of the lichen alga Trebouxia erici: metal accumulation, toxicity and non-protein thiols

机译:野生型和铜耐受性地衣藻Terbouxia erici对铜和镉胁迫的响应:金属积累,毒性和非蛋白质硫醇

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摘要

Cysteine, glutathione (GSH) and phytochelatins were determined in the cells of both wild and copper tolerant strains of the lichen alga Trebouxia erici following short-term (24 h) exposure to copper and cadmium and long-term (4 weeks) exposure to copper. Both metals caused concentration dependent synthesis of phytochelatins (PC2–PC5), but cadmium was a more potent activator of phytochelatin synthesis, even inducing synthesis of PC5. The copper-tolerant strain did not reveal a higher degree of phytochelatin synthesis than the wild strain, and at 5 μM Cu production of phytochelatins was in fact significantly lower. Lower levels of phytochelatin correlated with significantly decreased intracellular copper content in the copper-tolerant strain. Both strains maintained high GSH levels even at a high copper concentration of 5 μM, and only the highest copper concentration (10 μM) was toxic for both strains, causing a decrease of GSH and PC content in algal cells. Cadmium had less effect on GSH in the cells of both tested strains. In the long term experiments, only relatively small amounts of PC2 were detected in both strains, but the copper-tolerant strain retained significantly higher levels of reduced glutathione, probably due to the lesser degree of oxidative stress caused by Cu. The significant increase of cysteine synthesis in the copper-tolerant strain found in the present study may be related to copper tolerance in T. erici, while decreased intracellular Cu uptake, detoxification by PCs and increased free proline levels for protection of chloroplast membranes may also be implicated.
机译:在短期(24小时)暴露于铜和镉以及长期(4周)暴露于铜和镉之后,在野生和铜耐受性地衣藻Trebouxia erici的细胞中均测定了半胱氨酸,谷胱甘肽(GSH)和植物螯合素。两种金属都引起浓度依赖性的植物螯合素(PC2 –PC5 )合成,但是镉是更有效的植物螯合素激活剂,甚至诱导PC5 的合成。与野生菌株相比,耐铜菌株没有显示出更高的植物螯合素合成水平,实际上,在5μM的铜下,植物螯合素的产量显着降低。较低水平的植物螯合素与耐铜菌株中细胞内铜含量显着降低有关。两种菌株即使在5μM的高铜浓度下仍保持高GSH水平,并且只有最高的铜浓度(10μM)对两种菌株都有毒,导致藻类细胞中GSH和PC含量降低。镉对两种测试菌株的细胞中的谷胱甘肽影响都较小。在长期实验中,在两种菌株中仅检测到相对少量的PC2 ,但是耐铜菌株却保留了较高水平的还原型谷胱甘肽,这可能是由于Cu引起的氧化应激程度较低。在本研究中发现的耐铜菌株中半胱氨酸合成的显着增加可能与紫茎泽兰的铜耐受性有关,而细胞内铜吸收的减少,PC的解毒作用和保护叶绿体膜的游离脯氨酸水平也可能增加。牵连。

著录项

  • 来源
    《Plant Growth Regulation》 |2007年第1期|17-27|共11页
  • 作者单位

    Institute of Biology and Ecology Department of Botany Šafárik University Mánesova 23 041 67 Kosice Slovak Republic;

    Centre for Ecological Research Polish Academy of Sciences at Dziekanów Leśny Experimental Station at Lublin Niecała 18/3 20-080 Lublin Poland;

    Institute of Biology and Ecology Department of Botany Šafárik University Mánesova 23 041 67 Kosice Slovak Republic;

    Centre for Ecological Research Polish Academy of Sciences at Dziekanów Leśny Experimental Station at Lublin Niecała 18/3 20-080 Lublin Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Algae; Cadmium; Copper; Cysteine; Glutathione; Lichens; Photobiont; Phytochelatin; Trebouxia;

    机译:藻类;镉;铜;半胱氨酸;谷胱甘肽;地衣;光生物剂;植物螯合素;Trebouxia;

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