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首页> 外文期刊>Plant, Cell & Environment >Differential cadmium and zinc distribution in relation to their physiological impact in the leaves of the accumulating Zygophyllum fabago L.
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Differential cadmium and zinc distribution in relation to their physiological impact in the leaves of the accumulating Zygophyllum fabago L.

机译:镉和锌在积聚的百日菊属植物叶片中的生理分布与其镉和锌的分布有关。

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Cadmium and zinc share many similar physiochemical properties, but their compartmentation, complexation and impact on other mineral element distribution in plant tissues may drastically differ. In this study, we address the impact of 10 micro m Cd or 50 micro m Zn treatments on ion distribution in leaves of a metallicolous population of the non-hyperaccumulating species Zygophyllum fabago at tissue and cell level, and the consequences on the plant response through a combined physiological, proteomic and metabolite approach. Micro-proton-induced X-ray emission and laser ablation inductively coupled mass spectrometry analyses indicated hot spots of Cd concentrations in the vicinity of vascular bundles in response to Cd treatment, essentially bound to S-containing compounds as revealed by extended X-ray absorption fine structure and non-protein thiol compounds analyses. A preferential accumulation of Zn occurred in vascular bundle and spongy mesophyll in response to Zn treatment, and was mainly bound to O/N-ligands. Leaf proteomics and physiological status evidenced a protection of photosynthetically active tissues and the maintenance of cell turgor through specific distribution and complexation of toxic ions, reallocation of some essential elements, synthesis of proteins involved in photosynthetic apparatus or C-metabolism, and metabolite synthesis with some specificities regarding the considered heavy metal treatment.
机译:镉和锌具有许多相似的理化特性,但是它们的分隔,络合以及对植物组织中其他矿物质元素分布的影响可能会大不相同。在这项研究中,我们研究了10微米Cd或50微米Zn处理对组织和细胞水平上非超积累物种百日草(Zygophyllum fabago)的含金属种群叶片中离子分布的影响,以及对植物响应的影响,方法是结合了生理学,蛋白质组学和代谢产物的方法。微质子诱导的X射线发射和激光烧蚀电感耦合质谱分析表明,响应Cd处理,血管束附近的Cd浓度热点,基本上与含S化合物结合,这通过扩展X射线吸收得以揭示精细结构和非蛋白质硫醇化合物分析。锌的优先积累是在锌束处理后的血管束和海绵状叶肉中发生的,主要与O / N-配体结合。叶片蛋白质组学和生理状态表明,通过有毒离子的特定分布和复合,某些基本元素的重新分配,光合作用或C代谢相关蛋白质的合成以及某些代谢物的合成,可以保护光合活性组织并维持细胞充盈。关于考虑的重金属处理的特殊性。

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