College of Life Sciences, Nanjing Agricultural University, Nanjing, China; The Agriculture Ministry Key Laboratory of Agricultural Engineering in the Middle and Lower Reaches of Yangtze River, Institute of Agricultural Facilities and Equipment, Jiangsu Academy of Agricultural Sciences, Nanjing, China.
College of Life Sciences, Nanjing Agricultural University, Nanjing, China.
J Hazard Mater. 2021 Apr 5;407:124599. doi: 10.1016/j.jhazmat.2020.124599. Epub 2020 Dec 13.
The results of Cd (cadmium) concentration, Cd fluorescent staining, NMT (non-invasive micro-test technology) analysis of Cd absorption revealed the remarkably positive role of HRW in reducing Cd uptake by root of pak choi seedlings. BcIRT1 (iron-regulated transporter 1) and BcZIP2 (zinc-regulated transporter protein 2) are the main Cd transporters in pak choi, but their roles in the process of HRW-reduced Cd uptake is still far from being answered. In this study, we specifically verified the function of IRT1 and ZIP2 in HRW-reduced Cd absorption in pak choi and Arabidopsis thaliana. Heterologous and homologous expression in Arabidopsis thaliana displayed that Cd concentrations in wild-type (Col-0) and transgenic A. thaliana of IRT1 and ZIP2 were significantly reduced by HRW, except for irt1- and zip2-mutant. NMT detection showed that HRW not only decreased Cd influx in root of WT and transgenic lines, but also enhanced the competition between Zn and Cd. Taken together, the HRW-induced reduction of Cd accumulation in plants may be result from depressing the expression of BcIRT1 and BcZIP2 and affecting the preference of BcIRT1 and BcZIP2 in ion uptake.
镉(Cd)浓度、Cd 荧光染色、Cd 吸收的非侵入性微量测试技术(NMT)分析结果表明,HRW 可显著降低小白菜幼苗根部对 Cd 的吸收。BcIRT1(铁调节转运蛋白 1)和 BcZIP2(锌调节转运蛋白 2)是小白菜中主要的 Cd 转运蛋白,但它们在 HRW 降低 Cd 吸收过程中的作用仍远未得到解答。在本研究中,我们专门验证了 IRT1 和 ZIP2 在 HRW 降低小白菜和拟南芥 Cd 吸收中的功能。在拟南芥中异源和同源表达显示,HRW 可显著降低野生型(Col-0)和 IRT1 和 ZIP2 转基因拟南芥的 Cd 浓度,除了 irt1- 和 zip2-突变体。NMT 检测表明,HRW 不仅降低了 WT 和转基因系根部的 Cd 内流,还增强了 Zn 和 Cd 之间的竞争。综上所述,HRW 诱导植物中 Cd 积累的减少可能是由于抑制了 BcIRT1 和 BcZIP2 的表达,并影响了 BcIRT1 和 BcZIP2 在离子吸收中的偏好。