College of Architecture and Environment, Sichuan University, Chengdu 610065, China.
State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu 610065, China; College of Water Resource and Hydropower, Sichuan University, Chengdu 610065, China.
Chemosphere. 2022 Mar;291(Pt 3):133108. doi: 10.1016/j.chemosphere.2021.133108. Epub 2021 Nov 29.
As a beneficial element, Selenium (Se) reduces toxic cadmium (Cd) absorption in many crops, but the effects of Se on Cd hyperaccumulator plants are unclear. This study examined the effects of Se on Amaranthus hypochondriacus (K472). The results showed that Se increased antioxidant enzyme activities, reduced Cd concentrations and toxicity, restored cell viability, and enhanced photosynthesis; these effects increased the biomass of roots, stems, and leaves by 59.87%, 53.85%, 44.19%, respectively, and these values exceeded the biomass of roots and stems in untreated control plants by 56.69% and 15.37%, respectively. Moreover, Se promoted PC synthesis, stably chelated Cd in the form of PC3 and PC4 and transported PC-Cd to vacuoles. Furthermore, Se protected organelles and reduced Cd migration by increasing Cd levels in cell walls and vacuoles. Interestingly, although the Cd content in K472 was decreased, Se maintained the total extracted Cd concentrations and its remediation efficiency by improving biomass and increased tolerance to Cd by approximately 5 times. The experimental results provide novel insights and methods for mitigating toxicity, promoting growth, and broadening the engineering application scope of K472; these results also provide a theoretical basis for further application of Se in soil with high Cd concentrations.
作为一种有益元素,硒(Se)可以减少许多作物对有毒镉(Cd)的吸收,但硒对 Cd 超积累植物的影响尚不清楚。本研究考察了硒对苋菜(K472)的影响。结果表明,硒能提高抗氧化酶的活性,降低 Cd 浓度和毒性,恢复细胞活力,增强光合作用;这些作用使根、茎和叶的生物量分别增加了 59.87%、53.85%和 44.19%,且分别比未处理对照植物的根和茎生物量高 56.69%和 15.37%。此外,硒能促进 PC 的合成,以 PC3 和 PC4 的形式稳定螯合 Cd,并将 PC-Cd 运输到液泡。此外,硒通过增加细胞壁和液泡中 Cd 的含量来保护细胞器并减少 Cd 的迁移。有趣的是,尽管 K472 中的 Cd 含量降低了,但硒通过提高生物量和增加对 Cd 的耐受能力,维持了总提取 Cd 浓度及其修复效率,约提高了 5 倍。实验结果为减轻毒性、促进生长以及拓宽 K472 的工程应用范围提供了新的思路和方法;这些结果也为进一步在高 Cd 浓度土壤中应用硒提供了理论依据。