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Complexation and detoxification of Zn and Cd in metal accumulating plants

机译:金属蓄积工厂中锌和镉的络合和解毒

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Metal accumulating plants exposed to toxic levels of zinc (Zn) and cadmium (Cd) uptake metals through extracellular and intracellular com-plexation with inorganic and organic ligand formation. However, little is known about the nature and formation mechanism of these metal-ligand complexes. Though, Zn and Cd have many similar chemical properties, yet their complexation and compartmen-talization in plants vary with plant species. In principal, the question arises what factors govern Zn and Cd partitioning in plants? What form of the metal is taken up by the root, and is further distributed and accumulated in both vegetative and reproductive tissues? Therefore, the aim of present study is to address several questions concerning the mechanisms of Zn and Cd coordination and compartmentalization in plants using X-ray absorption spectroscopy (XAS) technique. XAS allows direct determination of elemental oxidation states and coordination environments in different plant tissues. This review article briefly explains some other important techniques of XAS; EXAFS (extended X-ray absorption fine structure) and XANES (X-ray absorption near edge structure), which are employed for determining Zn and Cd complexation within the plant. Therefore, In present review, the predominant as well as the minor chemical forms of Zn and Cd present in particular plant tissue have been discussed which could give better insight towards metal accumulation and detoxification mechanisms operated in plants. This information could assist in employing suitable hyper-accumulator plants for metal phytoextraction and reclamation of metal contaminated sites.
机译:暴露于有毒水平的锌(Zn)和镉(Cd)的金属积累植物通过细胞外和细胞内复合以及无机和有机配体的形成摄取金属。但是,对于这些金属-配体络合物的性质和形成机理知之甚少。尽管Zn和Cd具有许多相似的化学性质,但是它们在植物中的络合和络合物随植物种类而变化。原则上,出现了一个问题,哪些因素决定着植物中锌和镉的分配?根部吸收了哪种形式的金属,并在营养组织和生殖组织中进一步分布和累积?因此,本研究的目的是使用X射线吸收光谱(XAS)技术解决植物中Zn和Cd的配位和分隔机制的几个问题。 XAS可以直接确定不同植物组织中元素的氧化态和配位环境。本文将简要介绍XAS的其他一些重要技术。 EXAFS(扩展的X射线吸收精细结构)和XANES(近边缘结构的X射线吸收)用于确定植物体内的Zn和Cd络合物。因此,在本综述中,已经讨论了在特定植物组织中存在的主要和次要化学形式的Zn和Cd,可以更好地了解植物中金属的积累和排毒机理。该信息可以帮助采用合适的超富集植物进行金属植物提取和金属污染场地的开垦。

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