State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China/ Triticeae Research Institute, Sichuan Agricultural University, Wenjiang 611130, Sichuan, China.
State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China/ Triticeae Research Institute, Sichuan Agricultural University, Wenjiang 611130, Sichuan, China.
J Hazard Mater. 2023 Apr 15;448:130998. doi: 10.1016/j.jhazmat.2023.130998. Epub 2023 Feb 11.
This study investigated the effects of manganese (Mn) and copper (Cu) on dwarf Polish wheat under cadmium (Cd) stress by evaluating plant growth, Cd uptake, translocation, accumulation, subcellular distribution, and chemical forms, and the expression of genes participating in cell wall synthesis, metal chelation, and metal transport. Compared with the control, Mn deficiency and Cu deficiency increased Cd uptake and accumulation in roots, and Cd levels in root cell wall and soluble fractions, but inhibited Cd translocation to shoots. Mn addition reduced Cd uptake and accumulation in roots, and Cd level in root soluble fraction. Cu addition did not affect Cd uptake and accumulation in roots, while it caused a decrease and an increase of Cd levels in root cell wall and soluble fractions, respectively. The main Cd chemical forms (water-soluble Cd, pectates and protein integrated Cd, and undissolved Cd phosphate) in roots were differently changed. Furthermore, all treatments distinctly regulated several core genes that control the main component of root cell walls. Several Cd absorber (COPT, HIPP, NRAMP, and IRT) and exporter genes (ABCB, ABCG, ZIP, CAX, OPT, and YSL) were differently regulated to mediate Cd uptake, translocation, and accumulation. Overall, Mn and Cu differently influenced Cd uptake and accumulation; Mn addition is an effective treatment for reducing Cd accumulation in wheat.
本研究通过评估植物生长、镉吸收、转运、积累、亚细胞分布和化学形态,以及参与细胞壁合成、金属螯合和金属转运的基因表达,研究了锰(Mn)和铜(Cu)对镉(Cd)胁迫下矮波兰小麦的影响。与对照相比,Mn 缺乏和 Cu 缺乏增加了根中 Cd 的吸收和积累,以及根细胞壁和可溶部分的 Cd 水平,但抑制了 Cd 向地上部分的转运。Mn 加合减少了根中 Cd 的吸收和积累,以及根可溶部分的 Cd 水平。Cu 加合不影响根中 Cd 的吸收和积累,但分别导致根细胞壁和可溶部分的 Cd 水平降低和增加。根中 Cd 的主要化学形态(水溶性 Cd、果胶和蛋白质整合 Cd、不溶性 Cd 磷酸盐)发生了不同的变化。此外,所有处理都明显调节了控制根细胞壁主要成分的几个核心基因。几个 Cd 吸收器(COPT、HIPP、NRAMP 和 IRT)和外排器基因(ABCB、ABCG、ZIP、CAX、OPT 和 YSL)的表达不同,从而介导 Cd 的吸收、转运和积累。总的来说,Mn 和 Cu 对 Cd 的吸收和积累有不同的影响;Mn 加合是减少小麦中 Cd 积累的有效处理方法。