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Influence of Iron Status on Cadmium and Zinc Uptake by Different Ecotypes of the Hyperaccumulator Thlaspi caerulescens

机译:铁状态对不同生态类型的超级蓄积拟南芥对镉和锌吸收的影响

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摘要

We have previously identified an ecotype of the hyperaccumulator Thlaspi caerulescens (Ganges), which is far superior to other ecotypes (including Prayon) in Cd uptake. In this study, we investigated the effect of Fe status on the uptake of Cd and Zn in the Ganges and Prayon ecotypes, and the kinetics of Cd and Zn influx using radioisotopes. Furthermore, the T. caerulescens ZIP (Zn-regulated transporter/Fe-regulated transporter-like protein) genes TcZNT1-G and TcIRT1-G were cloned from the Ganges ecotype and their expression under Fe-sufficient and -deficient conditions was analyzed. Both short- and long-term studies revealed that Cd uptake was significantly enhanced by Fe deficiency only in the Ganges ecotype. The concentration-dependent kinetics of Cd influx showed that the Vmax of Cd was 3 times greater in Fe-deficient Ganges plants compared with Fe-sufficient plants. In Prayon, Fe deficiency did not induce a significant increase in Vmax for Cd. Zn uptake was not influenced by the Fe status of the plants in either of the ecotypes. These results are in agreement with the gene expression study. The abundance of ZNT1-G mRNA was similar between the Fe treatments and between the two ecotypes. In contrast, abundance of the TcIRT1-G mRNA was greatly increased only in Ganges root tissue under Fe-deficient conditions. The present results indicate that the stimulatory effect of Fe deficiency on Cd uptake in Ganges may be related to an up-regulation in the expression of genes encoding for Fe2+ uptake, possibly TcIRT1-G.
机译:我们之前已经确定了一种高蓄积性藻类(Thlaspi caerulescens,恒牙)的生态型,它在吸收镉方面远远优于其他生态型(包括Prayon)。在这项研究中,我们研究了铁的状态对恒河和普莱永生态型对Cd和Zn吸收的影响,以及使用放射性同位素对Cd和Zn流入动力学的影响。此外,从恒河生态型中克隆了青枯菌ZIP(锌调节转运蛋白/铁调节转运蛋白样蛋白)基因TcZNT1-G和TcIRT1-G,并分析了它们在铁充足和不足的条件下的表达。短期和长期研究均表明,仅在恒河生态型中,Fe缺乏会显着提高Cd的吸收。 Cd流入的浓度依赖性动力学表明,缺铁恒河植物中Cd的Vmax比富铁植物高3倍。在Prayon,铁缺乏并未导致镉的Vmax显着增加。在任何一种生态型中,锌的吸收均不受植物中铁含量的影响。这些结果与基因表达研究一致。在铁处理之间和两种生态型之间,ZNT1-G mRNA的丰度相似。相反,仅在缺铁条件下恒河根组织中TcIRT1-G mRNA的丰度大大增加。目前的研究结果表明,铁缺乏对恒河中Cd吸收的刺激作用可能与上调Fe 2 + 吸收的基因(可能是TcIRT1-G)的表达上调有关。

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