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Characterization of cadmium ion transport across model and real biomembranes and indication of induced damage of plant tissues

机译:跨模型和实际生物膜的镉离子迁移特征及指示的植物组织损伤

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摘要

The present study is focused on characterization and elucidation of transport processes of the environmentally important element cadmium across model and real membranes. Basic steps of these processes were clarified on model synthetic membranes, which were characterized by atomic force microscopy and by electrochemical impedance spectroscopy. To gain the cytoplasmic membranes containing specific transport systems, the technique for isolation of protoplasts from barley cells was optimized (cell wall-degrading enzyme, physiological state of plant leaves, type of osmotic stabilizers, and the composition of reaction solution). The obtained real parts of membranes were mixed with lecithin membranes and were characterized by electrochemical impedance spectroscopy, and the transported species were determined by voltammetric methods. Further, influence of cadmium on damage of plant tissues was investigated. Young barley plants were subjected to different doses of cadmium chloride and its presence affected the tissue damage, which could be characterized via conductivity of the electrolyte leakage.
机译:本研究的重点是表征和阐明环境中重要元素镉在模型和真实膜之间的传输过程。在模型合成膜上阐明了这些过程的基本步骤,并通过原子力显微镜和电化学阻抗谱对其进行了表征。为了获得包含特定转运系统的细胞质膜,优化了从大麦细胞分离原生质体的技术(细胞壁降解酶,植物叶片的生理状态,渗透稳定剂的类型以及反应溶液的组成)。将获得的膜的真实部分与卵磷脂膜混合,并通过电化学阻抗谱进行表征,并通过伏安法测定转运的物质。此外,研究了镉对植物组织损伤的影响。对大麦幼苗进行不同剂量的氯化镉处理,其存在会影响组织损伤,这可以通过电解质泄漏的电导率来表征。

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