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金属诱导的陆生大型地衣中的氧化应激。

Metal-induced oxidative stress in terrestrial macrolichens.

机构信息

Department of Biology, University of Trnava, Priemyselná 4, 918 43 Trnava, Slovak Republic.

Department of Plant Physiology, Maria Curie-Skłodowska University, Akademicka 19, 20-033 Lublin, Poland.

出版信息

Chemosphere. 2018 Jul;203:402-409. doi: 10.1016/j.chemosphere.2018.03.112. Epub 2018 Mar 19.

Abstract

Short-term (24 h) responses of Cladonia arbuscula subsp. mitis and Cladonia furcata to copper (CuII) or chromium (CrIII) excess (10 or 100 μM) were compared. C. arbuscula accumulated more Cu and Cr at higher metal doses but both species revealed depletion of K and/or Ca amount. Not only Cu but also Cr typically elevated reactive oxygen species (ROS) formation (fluorescence microscopy detection of total ROS and hydrogen peroxide) and depleted nitric oxide (NO) signal, with Cu showing more negative impact on lipid peroxidation (BODIPY 581/591 C11 staining reagent). Metals and staining reagents also affected anatomical responses and photobiont/mycobiont visibility. Principally different impact of Cu and Cr was observed at antioxidative metabolites level, indicating various ways of metal-induced ROS removal and/or metal chelation: Cu strongly depleted glutathione (GSH) and stimulated phytochelatin 2 (PC2) content while ascorbic acid accumulation was depleted by Cu and stimulated by Cr. Subsequent experiment with GSH biosynthetic inhibitor (buthionine sulfoximine, BSO) revealed that 48 h of exposure is needed to deplete GSH and BSO-induced depletion of GSH and PC2 amounts under Cu or Cr excess elevated ROS but depleted NO. These data suggest close relations between thiols, NO and appearance of oxidative stress (ROS generation) under metallic stress also in lichens.

摘要

短期(24 小时)内,我们比较了纤细枝状叶梅衣(Cladonia arbuscula subsp. mitis)和叉状地卷衣(Cladonia furcata)对铜(CuII)或铬(CrIII)过量(10 或 100 μM)的反应。在较高的金属剂量下,C. arbuscula 积累了更多的 Cu 和 Cr,但两种物种都显示出 K 和/或 Ca 含量的消耗。不仅 Cu,而且 Cr 通常会增加活性氧物种(ROS)的形成(总 ROS 和过氧化氢的荧光显微镜检测),并耗尽一氧化氮(NO)信号,Cu 对脂质过氧化的负面影响更大(BODIPY 581/591 C11 染色试剂)。金属和染色试剂也会影响解剖反应和共生藻/共生菌的可见性。Cu 和 Cr 的主要影响不同,这表明了金属诱导的 ROS 清除和/或金属螯合的不同方式:Cu 强烈消耗谷胱甘肽(GSH)并刺激植物螯合肽 2(PC2)的含量,而 Cu 消耗抗坏血酸的积累并被 Cr 刺激。随后用 GSH 生物合成抑制剂(丁硫氨酸亚砜,BSO)进行实验,结果表明,48 小时的暴露足以耗尽 GSH,BSO 诱导的 GSH 和 PC2 含量在 Cu 或 Cr 过量下会增加 ROS,但会耗尽 NO。这些数据表明,在金属胁迫下,巯基、NO 和氧化应激(ROS 生成)之间存在密切关系,地衣也不例外。

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