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Do radial oxygen loss and external aeration affect iron plaque formation and arsenic accumulation and speciation in rice?

机译:径向氧气损失和外部曝气是否会影响水稻中铁斑的形成以及砷的积累和形态?

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Hydroponic experiments were conducted to investigate the effect of radial oxygen loss (ROL) and external aeration on iron (Fe) plaque formation, and arsenic (As) accumulation and speciation in rice (Oryza sativa L.). The data showed that there were significant correlations between ROL and Fe concentrations in Fe plaque produced on different genotypes of rice. There were also significant differences in the amounts of Fe plaque formed between different genotypes in different positions of roots and under different aeration conditions (aerated, normal, and stagnant treatments). In aerated treatments, rice tended to have a higher Fe plaque formation than in a stagnant solution, with the greatest formation at the root tip decreasing with increasing distances away, in accordance with a trend of spatial ROL. Genotypes with higher rates of ROL induced higher degrees of Fe plaque formation. Plaques sequestered As on rice roots, with arsenate almost double that with arsenite, leading to decreased As accumulation in both roots and shoots. The major As species detected in roots and shoots was arsenite, ranging from 34 to 78% of the total As in the different treatments and genotypes. These results contribute to our understanding of genotypic differences in As uptake by rice and the mechanisms causing rice genotypes with higher ROL to show lower overall As accumulation.
机译:进行了水培试验,以研究径向氧损失(ROL)和外部通气对水稻(Oryza sativa L.)中铁(Fe)斑块形成以及砷(As)积累和形态的影响。数据表明,不同基因型水稻产生的铁斑中ROL与铁浓度之间存在显着相关性。不同基因型在根部不同位置,在不同通气条件(充气,正常和停滞处理)之间形成的铁斑量也存在显着差异。在充气处理中,与空间停滞的溶液相比,水稻倾向于具有更高的铁斑形成,根尖的最大形成随着距离的增加而减小,这与空间ROL的趋势一致。具有较高ROL率的基因型可诱导较高程度的铁斑形成。斑块在水稻根部螯合砷,砷酸根几乎是砷的两倍,导致根部和芽中砷的积累减少。在根和芽中检测到的主要砷物种为亚砷酸盐,在不同处理和基因型中占总砷的34%至78%。这些结果有助于我们理解水稻吸收砷的基因型差异,以及导致具有较高ROL的水稻基因型显示较低总体砷积累的机制。

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    《Journal of Experimental Botany》 |2012年第8期|p.2961-2970|共10页
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    1Croucher Institute for Environmental Sciences, and Department of Biology, Hong Kong Baptist University, Kowloon Tong, Hong Kong SAR, PR China 2School of Environmental and Resource Sciences, Zhejiang Agriculture and Forestry University, Linan 311300, PR China 3State Key Laboratory for Bio-control, and School of Life Sciences, Sun Yat-sen University, Guangzhou 510006, PR China 4Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Haidian, Beijing 100085, PR China 5Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Science, Xiamen 361021, PR China;

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