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The effect of silicon on iron plaque formation and arsenic accumulation in rice genotypes with different radial oxygen loss (ROL)

机译:硅对不同径向氧损失(ROL)基因型水稻中铁斑形成和砷积累的影响

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摘要

Rice is one of the major pathways of arsenic (As) exposure in human food chain, threatening over half of the global population. Greenhouse pot experiments were conducted to examine the effects of Si application on iron (Fe) plaque formation, As uptake and rice grain As speciation in indica and hybrid rice genotypes with different radial oxygen loss (ROL) ability. The results demonstrated that Si significantly increased root and grain biomass. Indica genotypes with higher ROL induced greater Fe plaque formation, compared to hybrid genotypes and sequestered more As in Fe plaque. Silicon applications significantly increased Fe concentrations in iron plaque of different genotypes, but it decreased As concentrations in the roots, straws and husks by 28–35%, 15–35% and 32–57% respectively. In addition, it significantly reduced DMA accumulation in rice grains but not inorganic As accumulation. Rice of indica genotypes with higher ROL accumulated lower concentrations of inorganic As in grains than hybrid genotypes with lower ROL.
机译:稻米是人类食物链中砷暴露的主要途径之一,威胁着全球一半以上的人口。进行了温室盆栽实验,以研究硅对不同径向氧损失(ROL)能力的in型和杂交稻基因型中铁(Fe)斑块形成,As吸收和稻米As形态的影响。结果表明,硅显着增加了根和籽粒的生物量。与杂种基因型相比,具有较高ROL的型基因型诱导更大的铁斑形成,并且螯合更多的As。硅的施用显着增加了不同基因型铁斑块中的铁浓度,但根,稻草和稻壳中的砷浓度分别降低了28-35%,15-35%和32-57%。此外,它显着减少了稻米中的DMA积累,但没有减少无机As积累。与具有较低ROL的杂交基因型相比,具有较高ROL的in型基因水稻在谷物中累积的无机As浓度较低。

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