Wang Lei, Shi Yi-Ping, Tang Yan-Ni, Xian Bao-Shan, Ren Xiao-Tong, Ren Meng-Yuan, He Juan, Liu Yong-Chang, Xu Quan-Le, Chen Peng, Shu Kai
Shaanxi Key Laboratory of Qinling Ecological Intelligent Monitoring and Protection, School of Ecology and Environment, Northwestern Polytechnical University, Xi'an, Shaanxi, China.
Department of Biochemistry & Molecular Biology, College of Life Sciences, Northwest A&F University, Yangling, Shaanxi, China.
Plant Cell Environ. 2025 Apr 2. doi: 10.1111/pce.15518.
The presence of toxic heavy metals lead (Pb) and cadmium (Cd) in polluted soil damage crop production and consequently harms human and livestock health. Tartary buckwheat (Fagopyrum tataricum) is a potential model plant for heavy metal phytoremediation because of its valuable characteristics of high heavy metal tolerance and abundant biomass production. Here, we report that the Tartary buckwheat FtMYB46-FtNRAMP3 module enhances plant Pb and Cd tolerance. RNA sequencing analysis showed that Pb treatment specifically induced expression of FtNRAMP3, a member of the NRAMP (Natural Resistance-Associated Macrophage Protein) transporter gene family. Further cytological and biochemical analysis revealed that FtNRAMP3 was localised to the plasma membrane and significantly contributed to increased tolerance to Pb and Cd in yeast cells. Consistently, transgenic overexpression of FtNRAMP3 in Arabidopsis significantly increased plant tolerance to Pb and Cd applications, reducing Pb concentration but increasing Cd concentration in the overexpression transgenic plants. Subsequent yeast one-hybrid and electrophoretic mobility shift assays showed that the transcription factor FtMYB46 directly binds to the FtNRAMP3 promoter. Further, FtMYB46 promoted FtNRAMP3 expression and increased plant Pb and Cd tolerance. Overall, this study demonstrates the important role of the FtMYB46-FtNRAMP3 module and its potential value in the phytoremediation of Pb and Cd stress.
污染土壤中有毒重金属铅(Pb)和镉(Cd)的存在会损害作物产量,进而危害人类和牲畜健康。苦荞(鞑靼荞麦)因其对重金属具有高耐受性和能大量产生生物量的宝贵特性,是重金属植物修复的潜在模式植物。在此,我们报道苦荞FtMYB46 - FtNRAMP3模块增强了植物对铅和镉的耐受性。RNA测序分析表明,铅处理特异性诱导了NRAMP(天然抗性相关巨噬蛋白)转运蛋白基因家族成员FtNRAMP3的表达。进一步的细胞学和生化分析表明,FtNRAMP3定位于质膜,并且对酵母细胞中铅和镉耐受性的提高有显著贡献。同样,在拟南芥中过表达FtNRAMP3显著提高了植物对铅和镉处理的耐受性,降低了过表达转基因植物中的铅浓度,但提高了镉浓度。随后的酵母单杂交和电泳迁移率变动分析表明,转录因子FtMYB46直接与FtNRAMP3启动子结合。此外,FtMYB46促进FtNRAMP3的表达并提高植物对铅和镉的耐受性。总体而言,本研究证明了FtMYB46 - FtNRAMP3模块的重要作用及其在铅和镉胁迫植物修复中的潜在价值。