Institute of Experimental Plant Biology and Biotechnology, Faculty of Biology, University of Warsaw, Miecznikowa Street 1, 02-096 Warszawa, Poland.
J Plant Physiol. 2013 Sep 1;170(13):1176-86. doi: 10.1016/j.jplph.2013.03.018. Epub 2013 May 9.
HvHMA2 is a plasma membrane P1B-ATPase from barley that functions in Zn/Cd root-to-shoot transport. To assess the usefulness of HvHMA2 for modifying the metal content in aerial plant parts, it was expressed in tobacco under the CaMV35S promoter. Transformation with HvHMA2 did not produce one unique pattern of Zn and Cd accumulation; instead it depended on external metal supply. Thus Zn and Cd root-to-shoot translocation was facilitated, but not at all applied Zn/Cd concentrations. Metal uptake was restricted in HvHMA2-transformed plants and the level in the shoot was not enhanced. It was shown that HvHMA2 localizes to the plasma membrane of tobacco cells, and overloads the apoplast with Zn, which could explain the overall decrease in metal uptake observed. Despite the lower levels in the shoot, HvHMA2 transformants showed increased Zn sensitivity. Moreover, introduction of HvHMA2 into tobacco interfered with Fe metabolism and Fe accumulation was modified in HvHMA2-transformants in a Zn- and Cd-concentration dependent manner. The results indicate that ectopic expression of the export protein HvHMA2 in tobacco interferes with tobacco metal Zn-Cd-Fe cross-homeostasis, inducing internal mechanisms regulating metal uptake and tolerance.
HvHMA2 是大麦质膜 P1B-ATP 酶,在 Zn/Cd 的根到梢的转运中发挥作用。为了评估 HvHMA2 在修饰空气植物部分金属含量方面的有用性,它在烟草中通过 CaMV35S 启动子表达。用 HvHMA2 转化并没有产生一种独特的 Zn 和 Cd 积累模式;相反,它取决于外部金属供应。因此,促进了 Zn 和 Cd 的根到梢的转运,但并非在所有应用的 Zn/Cd 浓度下都如此。在 HvHMA2 转化的植物中,金属摄取受到限制,并且在地上部分的水平没有增强。结果表明,HvHMA2 定位于烟草细胞的质膜上,并使质外体超负荷 Zn,这可以解释观察到的金属摄取总体下降的原因。尽管地上部分的水平较低,但 HvHMA2 转化体表现出对 Zn 的敏感性增加。此外,将 HvHMA2 导入烟草会干扰 Fe 代谢,并且 HvHMA2 转化体中的 Fe 积累会以 Zn 和 Cd 浓度依赖的方式发生改变。这些结果表明,在烟草中外源表达出口蛋白 HvHMA2 会干扰烟草金属 Zn-Cd-Fe 的交叉稳态,诱导内部机制来调节金属摄取和耐受。