Zhao F J, Jiang R F, Dunham S J, McGrath S P
Agriculture and Environment Division, Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, UK.
New Phytol. 2006;172(4):646-54. doi: 10.1111/j.1469-8137.2006.01867.x.
Arabidopsis halleri is a well-known zinc (Zn) hyperaccumulator, but its status as a cadmium (Cd) hyperaccumulator is less certain. Here, we investigated whether A. halleri can hyperaccumulate Cd and whether Cd is transported via the Zn pathway. Growth and Cd and Zn uptake were determined in hydroponic experiments with different Cd and Zn concentrations. Short-term uptake and root-to-shoot transport were measured with radioactive 109Cd and 65Zn labelling. A. halleri accumulated > 1000 mg Cd kg(-1) in shoot dry weight at external Cd concentrations >or= 5 microm, but the short-term uptake rate of 109Cd was much lower than that of 65Zn. Zinc inhibited short-term 109Cd uptake kinetics and root-to-shoot translocation, as well as long-term Cd accumulation in shoots. Uptake of 109Cd and 65Zn were up-regulated, respectively, by low iron (Fe) or Zn status. A. halleri was much less tolerant to Cd than to Zn. We conclude that A. halleri is able to hyperaccumulate Cd partly, at least, through the Zn pathway, but the mechanisms responsible for cellular Zn tolerance cannot detoxify Cd effectively.
南芥是一种著名的锌(Zn)超富集植物,但其作为镉(Cd)超富集植物的地位尚不太明确。在此,我们研究了南芥是否能够超积累镉以及镉是否通过锌途径进行转运。在不同镉和锌浓度的水培实验中测定了其生长以及镉和锌的吸收情况。通过放射性109Cd和65Zn标记测量了短期吸收以及从根到地上部分的转运。在外部镉浓度≥5微摩尔时,南芥地上部干重中镉积累量>1000毫克/千克,但109Cd的短期吸收速率远低于65Zn。锌抑制了109Cd的短期吸收动力学、从根到地上部分的转运以及地上部镉的长期积累。低铁(Fe)或锌状态分别上调了109Cd和65Zn的吸收。南芥对镉的耐受性远低于对锌的耐受性。我们得出结论,南芥至少部分能够通过锌途径超积累镉,但负责细胞锌耐受性的机制不能有效地解毒镉。