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Effect of cadmium stress on barley tissue damage and essential metal transport into plant

机译:镉胁迫对大麦组织损伤和必需金属运入植物的影响

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Conductometric assessment of electrolyte leakage from spring barley plant organs subjected to higher cadmium concentrations 10-2 – 10-4 mol l-1 revealed serious tissue damage. Therefore plants were grown under controlled environment conditions in a phytotron in Knop′s nutrient solution in two variants – the control variant without cadmium and experimental variant treated during the growth of plants with CdCl2 solution of 10-5 mol l-1. Barley plants were then separated into roots, residual caryopses, leaf bases, and leaves. Lyophilized samples were analyzed for the uptake and redistribution of cadmium, calcium, copper, iron, zinc, and manganese in plant organs by spectrometric methods. Cadmium caused significant decrease of calcium and manganese levels in all analyzed plant parts indicating that cadmium was a distinctive antagonist to intake of these metals. Cadmium treatment also lowered amounts of zinc and iron in roots. An opposite trend was characteristic for Cu, where Cd stress caused significant Cu increase and retention in roots and significant decrease in leaves. The combined usage of the electroanalytical technique - conductometry and spectrometric methods (ICP-OES, AAS) proved to be a useful tool for monitoring of tissue damage and intake and transfer of cadmium and macro- and microelements into barley organs.
机译:电导法评估在较高镉浓度10 -2 – 10 -4 mol l -1 下大麦植物器官的电解质渗漏,显示组织严重损伤。因此,在受控环境条件下,植物在Knop的营养液中的光电子加速器中生长,有两种变体-无镉的对照变体和用10 -5 mol CdCl2溶液处理植物生长过程中的实验变体。 l -1 。然后将大麦植物分成根,残留的章鱼,叶基和叶。通过光谱分析法分析了冻干样品中植物器官中镉,钙,铜,铁,锌和锰的吸收和再分布。镉会导致所有分析过的植物部位中钙和锰水平显着下降,表明镉是摄入这些金属的独特拮抗剂。镉处理还降低了根中锌和铁的含量。铜的特征是相反的趋势,其中镉胁迫导致根中的铜显着增加和保留,而叶片显着减少。电分析技术-电导法和光谱法(ICP-OES,AAS)的组合使用被证明是监测组织损伤和镉以及大,微量元素向大麦器官中摄入和转移的有用工具。

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