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Theoretical model of the effect of potassium on the uptake of radiocesium by rice

机译:钾对水稻吸收铯的影响的理论模型

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摘要

After the accident at the Fukushima Dai-ichi Nuclear Power Plant owned by Tokyo Electric Power Company on 11 March 2011, potassium was applied to fields in the Tohoku and Kanto areas of Japan to reduce radiocesium uptake by crops. Despite the intense studies relating to the effect of potassium application on availability of radiocesium in the soil, physiological changes of radiocesium uptake by crops in response to K~+ concentration around roots remains elusive. In the present study, we developed physiological models describing the effect of K~+ on the uptake of radiocesium by rice. Two Cs~+:K~+ competition models were evaluated using a wide range of data obtained from pot and field experiments: the model assuming a uniformity in the gene expression of K~+ transporter (Model Ⅰ) and the model assuming the increase in the gene expression of K~+ transporter in response to K~+ concentration below threshold (Model Ⅱ). The root-mean-square deviation between the measured and estimated values was larger in Model Ⅰ than in Model Ⅱ. Residuals were positively correlated with K~+ in Model Ⅰ but showed no deflection in Model Ⅱ. These results indicate that Model Ⅱ explains the effect of K~+ on the uptake of radiocesium better than Model Ⅰ. Model Ⅱ may provide the appropriate countermeasures in inhibiting the transfer of radiocesium from soil to crop. The effect of changes in the variables in Model Ⅱ on the relationship between available K~+ in soil and ~(137)Cs uptake by plant was simulated. An increase in available ~(137)Cs~+ in soil enhanced the response of ~(137)Cs uptake to K~+. The effects of Michaelis-Menten constant for Cs~+ were the inverse of the ~(137)Cs~+ effect The effect of Michaelis-Menten constant for K~+ showed the same tendency as that of ~(137)Cs~+, but the effect was much less than that of ~(137)Cs~+. An increase in the threshold of K~+ below which the gene expression of K~+ transporter increases enhanced the response of ~(137)Cs uptake to K~+ in the high-K~+ range.
机译:东京电力公司拥有的福岛第一核电站于2011年3月11日发生事故后,向日本东北和关东地区的田地施钾,以减少农作物对放射性铯的吸收。尽管对钾的施用对土壤中放射性铯有效性的影响进行了深入的研究,但作物对根部周围钾离子浓度的响应对作物吸收放射性铯的生理变化仍然难以捉摸。在本研究中,我们建立了描述K〜+对水稻吸收铯的影响的生理模型。利用盆栽和田间试验获得的大量数据评估了两个Cs〜+:K〜+竞争模型:该模型假设K〜+转运蛋白的基因表达均一(模型Ⅰ),该模型假设Ks +转运蛋白基因表达增加。钾离子浓度低于阈值时对钾离子转运蛋白的基因表达(Ⅱ型)。模型Ⅰ的测量值和估计值之间的均方根偏差大于模型Ⅱ。模型Ⅰ中的残渣与K〜+呈正相关,而模型Ⅱ中的残渣没有偏斜。这些结果表明,模型Ⅱ比模型Ⅰ更好地解释了钾离子对放射性铯吸收的影响。模型Ⅱ可以为抑制放射性铯从土壤到作物的迁移提供适当的对策。模拟了模型Ⅱ中变量的变化对土壤中有效钾离子与植物〜(137)Cs吸收关系的影响。土壤中〜(137)Cs〜+的增加增加了〜(137)Cs吸收对K〜+的响应。 Michaelis-Menten常数对Cs〜+的影响与〜(137)Cs〜+效应相反。Michaelis-Menten常数对K〜+的影响与〜(137)Cs〜+表现出相同的趋势,但是影响远小于〜(137)Cs〜+。在较高的K〜+范围内,增加K〜+的阈值可增加〜(137)Cs吸收K〜+的响应,K +阈值的增加使K〜+转运蛋白的基因表达增加。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2014年第12期|122-131|共10页
  • 作者单位

    Fukushima Agricultural Technology Centre, 116 Shimonakamichi, Takakura-Aza, Hiwada-machi, Koriyama, Fukushima 963-0531, Japan,NARO Tohoku Agricultural Research Center, 50 Harajukuminami, Arai, Fukushirna-shi, Fukushima 960-2156, Japan;

    NARO Institute of Crop Science, Tsukuba, Ibaraki 305-8518, Japan;

    Fukushima Agricultural Technology Centre, 116 Shimonakamichi, Takakura-Aza, Hiwada-machi, Koriyama, Fukushima 963-0531, Japan;

    Fukushima Agricultural Technology Centre, 116 Shimonakamichi, Takakura-Aza, Hiwada-machi, Koriyama, Fukushima 963-0531, Japan;

    Fukushima Agricultural Technology Centre, 116 Shimonakamichi, Takakura-Aza, Hiwada-machi, Koriyama, Fukushima 963-0531, Japan;

    Fukushima Agricultural Technology Centre, 116 Shimonakamichi, Takakura-Aza, Hiwada-machi, Koriyama, Fukushima 963-0531, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Competition; Model; Potassium transporter; Radiocesium; Rice; Uptake;

    机译:竞争;模型;钾转运蛋白;放射性铯白饭;摄取量;

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