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根细胞中镉的液泡区室化增强有助于谷胱甘肽诱导小白菜(Brassica chinensis L.)中镉从根部向地上部转运的减少。

Enhanced vacuole compartmentalization of cadmium in root cells contributes to glutathione-induced reduction of cadmium translocation from roots to shoots in pakchoi (Brassica chinensis L.).

作者信息

Huang Yifan, Chen Jiahui, Zhang Derui, Fang Bo, YangJin Tsering, Zou Jianwen, Chen Yahua, Su Nana, Cui Jin

机构信息

College of Life Sciences, Nanjing Agricultural University, Nanjing, China.

College of Plant Science, Tibet Agriculture and Animal Husbandry College, Linzhi, China.

出版信息

Ecotoxicol Environ Saf. 2021 Jan 15;208:111616. doi: 10.1016/j.ecoenv.2020.111616. Epub 2020 Dec 3.

Abstract

Our previous studies showed that exogenous glutathione (GSH) decreased cadmium (Cd) concentration in shoots and alleviated the growth inhibition in pakchoi (Brassica chinensis L.) under Cd stress. Nevertheless, it is largely unknown how GSH decreases Cd accumulation in edible parts of pakchoi. This experiment mainly explored the mechanisms of GSH-induced reduction of Cd accumulation in shoot of pakchoi. The results showed that compared with sole Cd treatment, Cd + GSH treatment remarkably increased the expression of BcIRT1 and BcIRT2, and further enhanced the concentrations of Cd and Fe in root. By contrast, GSH application declined the concentration of Cd in the xylem sap. However, these results were not caused by xylem loading process because the expression of BcHMA2 and BcHMA4 had not significant difference between sole Cd treatment and Cd + GSH treatment. In addition, exogenous GSH significantly enhanced the expression of BcPCS1 and promoted the synthesis of PC, PC and PC under Cd stress. At the same time, exogenous GSH also significantly improved the expression of BcABCC1 and BcABCC2 in the roots of seedling under Cd stress, suggesting that more PCs-Cd complexes may be sequestrated into vacuoles by ABCC1 and ABCC2 transporters. The results showed that exogenous GSH could up-regulate the expression of BcIRT1/2 to increase the Cd accumulation in root, and the improvement of PCs contents and the expression of BcABCC1/2 enhanced the compartmentalization of Cd in root vacuole of pakchoi under Cd stress. To sum up, exogenous GSH reduce the concentration of free Cd in the cytoplast of root cells and then dropped the loading of Cd into the xylem, which eventually given rise to the reduction of Cd accumulation in edible portion of pakchoi.

摘要

我们之前的研究表明,外源谷胱甘肽(GSH)可降低镉胁迫下小白菜地上部的镉(Cd)浓度,并缓解其生长抑制。然而,GSH如何降低小白菜可食用部分的Cd积累在很大程度上尚不清楚。本试验主要探究了GSH诱导小白菜地上部Cd积累减少的机制。结果表明,与单一Cd处理相比,Cd + GSH处理显著增加了BcIRT1和BcIRT2的表达,并进一步提高了根部Cd和Fe的浓度。相比之下,施用GSH降低了木质部汁液中Cd的浓度。然而,这些结果并非由木质部装载过程引起,因为在单一Cd处理和Cd + GSH处理之间,BcHMA2和BcHMA4的表达没有显著差异。此外,外源GSH显著增强了BcPCS1的表达,并促进了Cd胁迫下PC2、PC3和PC4的合成。同时,外源GSH还显著提高了Cd胁迫下幼苗根部BcABCC1和BcABCC2的表达,这表明更多的PCs-Cd复合物可能通过ABCC1和ABCC2转运蛋白被隔离到液泡中。结果表明,外源GSH可上调BcIRT1/2的表达以增加根部Cd的积累,PCs含量的提高以及BcABCC1/2的表达增强了Cd胁迫下小白菜根部液泡中Cd的区室化。综上所述,外源GSH降低了根细胞细胞质中游离Cd的浓度,进而减少了Cd向木质部的装载,最终导致小白菜可食用部分Cd积累的减少。

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