Hu Ying, Zhou Xueqi, Shi An, Yu Yanshuang, Rensing Christopher, Zhang Taoxiang, Xing Shihe, Yang Wenhao
Key Laboratory of Soil Ecosystem Health and Regulation of Fujian Provincial University, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, China.
College of Forestry, Fujian Agriculture and Forestry University, Fuzhou, China.
Front Plant Sci. 2023 Feb 21;14:1134370. doi: 10.3389/fpls.2023.1134370. eCollection 2023.
Soil Cadmium (Cd) pollution has become a serious environmental problem. Silicon (Si) plays key roles in alleviating Cd toxicity in plants. However, the effects of Si on mitigation of Cd toxicity and accumulation of Cd by hyperaccumulators are largely unknown. This study was conducted to investigate the effect of Si on Cd accumulation and the physiological characteristics of Cd hyperaccumulator under Cd stress. Results showed that, exogenous Si application promoted the biomass, Cd translocation and concentration of , with an increased rate of 21.74-52.17% for shoot biomass, and 412.39-621.00% for Cd accumulation. Moreover, Si alleviated Cd toxicity by: (i) increasing chlorophyll contents, (ii) improving antioxidant enzymes, (iii) enhancing cell wall components (lignin, cellulose, hemicellulose and pectin), (iv) raising the secretion of organic acids (oxalic acid, tartaric acid and L-malic acid). The RT-PCR analysis of genes that involved in Cd detoxification showed that the expression of , , and in roots were significantly decreased by 11.46-28.23%, 6.61-65.19%, 38.47-80.87%, 44.80-69.85% and 33.96-71.70% in the Si treatments, while Si significantly increased the expression of . This study expanded understanding on the role of Si in phytoextraction and provided a feasible strategy for assisting phytoextraction Cd by . In summary, Si facilitated the Cd phytoextraction of by promoting plant growth and enhancing the resistance of plants to Cd.
土壤镉(Cd)污染已成为一个严重的环境问题。硅(Si)在减轻植物镉毒性方面发挥着关键作用。然而,硅对超富集植物减轻镉毒性和镉积累的影响在很大程度上尚不清楚。本研究旨在探讨硅对镉胁迫下镉超富集植物镉积累及生理特性的影响。结果表明,外源施硅促进了生物量、镉的转运和含量,地上部生物量增加率为21.74 - 52.17%,镉积累增加率为412.39 - 621.00%。此外,硅通过以下方式减轻镉毒性:(i)增加叶绿素含量;(ii)提高抗氧化酶活性;(iii)增强细胞壁成分(木质素、纤维素、半纤维素和果胶);(iv)提高有机酸(草酸、酒石酸和L - 苹果酸)的分泌。参与镉解毒的基因的RT - PCR分析表明,在硅处理中,根中、、、和的表达分别显著降低了11.46 - 28.23%、6.61 - 65.19%、38.47 - 80.87%、44.80 - 69.85%和33.96 - 71.70%,而硅显著增加了的表达。本研究扩展了对硅在植物提取中作用的认识,并为协助植物提取镉提供了一种可行的策略。总之,硅通过促进植物生长和增强植物对镉的抗性,促进了植物对镉的提取。