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Growth inhibition and IRT1 induction of Arabidopsis thaliana in response to bismuth

机译:铋对拟南芥的生长抑制和IRT1诱导

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摘要

Bismuth (Bi) is used in cosmetics and in semiconductor. And more, Bismuth is used in water pipes as substitute of lead. However, the Bi concentration in soil has not been investigated and no environmental quality standard is available in Japan. Here we investigated the effect of Bi on growth of Arabidopsis thaliana and identified the responsible genes with microarray analysis. The seeds, which were soaked with various concentrations of Bi including agar medium, were not able to germinate by more than 7 A mu M Bi. The root elongation and shoot growth were significantly inhibited by more than 2 A mu M Bi. Then, the mRNA was extracted from 2 A mu M Bi treated seedlings and the gene expression levels were analyzed by microarray. In response to Bi, 13 metal homeostasis genes were expressed 2-fold higher than that of control. The relative transcription level of AtIRT1, the primary Fe2+ uptake transporter in the root, was about 5-fold higher compared to the control. This data is indicating that Bi induces AtIRT1 expression in roots. Moreover, ferritin protein coding genes were one half lesser than that of the control. Bi exposure increased Fe accumulation in roots. These results suggest that Bi might disturb iron homeostasis in seedlings.
机译:铋(Bi)用于化妆品和半导体。还有,铋在水管中用作铅的替代品。但是,日本尚未对土壤中的Bi浓度进行调查,也没有环境质量标准。在这里,我们研究了Bi对拟南芥生长的影响,并通过微阵列分析确定了负责的基因。用各种浓度的Bi(包括琼脂培养基)浸泡的种子不能以超过7 AμM的Bi发芽。超过2 AμM Bi显着抑制了根的伸长和枝条的生长。然后,从2AμMBi处理的幼苗中提取mRNA,并通过微阵列分析基因表达水平。响应Bi,13种金属稳态基因的表达比对照高2倍。根中主要的Fe2 +吸收转运蛋白AtIRT1的相对转录水平比对照高约5倍。该数据表明Bi在根中诱导AtIRT1表达。此外,铁蛋白蛋白编码基因比对照组少一半。 Bi暴露会增加铁在根中的积累。这些结果表明Bi可能会干扰幼苗中的铁稳态。

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