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Kinetic Analysis of Zinc/Cadmium Reciprocal Competitions Suggests a Possible Zn-Insensitive Pathway for Root-to-Shoot Cadmium Translocation in Rice

机译:锌/镉相互竞争的动力学分析表明水稻根到射出的镉转运可能是锌不敏感的途径

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摘要

BackgroundAmong cereals, rice has a genetic propensity to accumulate high levels of cadmium (Cd) in grains. Xylem-mediated root-to-shoot translocation rather than root uptake has been suggested as the main physiological factor accounting for the genotypic variation observed in Cd accumulation in shoots and grains. Several evidence indicate OsHMA2 – a putative zinc (Zn) transporter – as the main candidate protein that could be involved in mediating Cd- and Zn-xylem loading in rice. However, the specific interactions between Zn and Cd in rice often appear anomalous if compared to those observed in other staple crops, suggesting that root-to-shoot Cd translocation process could be more complex than previously thought. In this study we performed a complete set of competition experiments with Zn and Cd in order to analyze their possible interactions and reciprocal effects at the root-to-shoot translocation level.
机译:背景技术在谷物中,大米具有在谷物中积累高水平镉(Cd)的遗传倾向。木质部介导的从根到茎的易位而不是从根部吸收被认为是解释芽和谷粒中Cd积累中观察到的基因型变异的主要生理因素。一些证据表明,OsHMA2(一种推测的锌(Zn)转运蛋白)是可能参与介导水稻中Cd和Zn木质部负载的主要候选蛋白。但是,与其他主要农作物相比,水稻中Zn和Cd之间的特定相互作用通常会出现异常,这表明从根到茎的Cd易位过程可能比以前认为的更为复杂。在这项研究中,我们用锌和镉进行了一整套竞争实验,以分析它们在根与茎易位水平上可能的相互作用和相互影响。

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