首页> 外文期刊>International journal of environmental analytical chemistry >Analysis of phytochelatins and Hg-phytochelatin complexes in Hordeum vulgare plants stressed with Hg and Cd: HPLC study with amperometric detection
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Analysis of phytochelatins and Hg-phytochelatin complexes in Hordeum vulgare plants stressed with Hg and Cd: HPLC study with amperometric detection

机译:汞和镉胁迫的大麦植物中植物螯合素和汞-植物螯合素复合物的分析:采用安培检测的HPLC研究

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摘要

Several parameters related to metal stress have been studied in Hordeum vulgare plants treated with Cd and Hg at different doses to provide new insights concerning toxicity and resistance mechanisms produced by these metals. To the best of our knowledge, for the first time the simultaneous stress by Hg and Cd has been investigated. Growth inhibition has been evaluated showing clear symptoms of phytotoxicity in metal stressed plants. Hg and Cd content evidenced the ability of this plant species to uptake and accumulate toxic metals in its tissues. Moreover, when both metals were present, regardless of their concentration, a lower uptake of Hg was observed leading us to conclude that Hordeum vulgare plants have less affinity for Hg when there is cadmium competing in the media. To explore a way of following toxic metal stress response in plants, HPLC with amperometric detection has been used to study different thiols: gluthatione (GSH), its fragments and several phytochelatins (PC_(2-5). The accumulation mechanism of these metals could be explained by the formation of PCs and their Hg complexes, which play an important role in metal detoxification. As expected, Cd was shown to be a greater PC inductor than Hg. PC_2 might be used as a marker of metal stress in plants because it increases according to the concentration of metals supplied to the plant.
机译:已在不同剂量的Cd和Hg处理的大麦植物中研究了与金属胁迫相关的几个参数,以提供有关这些金属产生的毒性和抗性机制的新见解。据我们所知,首次研究了汞和镉同时引起的应力。已经评估了生长抑制,在金属胁迫的植物中显示出明显的植物毒性症状。汞和镉的含量证明了这种植物具有吸收和在其组织中积累有毒金属的能力。此外,当两种金属都存在时,无论其浓度如何,均可观察到较低的汞吸收,这使我们得出结论,当培养基中存在镉竞争时,大麦植物对汞的亲和力较小。为了探索一种跟踪植物中有毒金属胁迫反应的方法,采用安培检测的HPLC技术研究了不同的硫醇:谷胱甘肽(GSH),其片段和几种植物螯合素(PC_(2-5)。这些金属的积累机理可以可以通过PC及其Hg配合物的形成来解释,它们在金属排毒中起着重要作用,正如预期的那样,Cd比Hg表现出更大的PC感应器,PC_2可以用作植物中金属胁迫的标志。根据供应给工厂的金属浓度而增加。

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