College of Life and Geographic Sciences, Kashi University, Kashi 844006, China.
College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Int J Environ Res Public Health. 2020 Nov 4;17(21):8143. doi: 10.3390/ijerph17218143.
Subcellular fractions and the chemical forms of cadmium (Cd) reflect its level of toxicity to plants; however, these effects of exogenous glutathione (GSH) are poorly understood. We exposed two Italian ryegrass () cultivars (IdyII and Harukaze) to 50 µM Cd or 200 µM GSH to investigate the effect of GSH on the Cd uptake, subcellular compartments, and chemical forms. Cd significantly inhibited the plant growth, while GSH supplementation decreased this inhibition. The application of GSH significantly improved the Cd concentration in the roots but reduced that in the shoots and decreased the Cd translocation from root to shoot. The Cd concentration of the root in the cell wall was increased while the concentration in the soluble fraction was decreased when supplied with GSH. The inorganic form (80% ethanol for Cd extraction) in the roots was significantly reduced when treated with GSH. The Cd form extracted by 2% acetic acid (HAC) with low toxicity and immobility were greatly increased. In leaves, the application GSH decreased in any form of Cd form extracted. In conclusion, exogenous GSH decreased the translocation of Cd and alleviated Italian ryegrass Cd toxicity by accumulating more Cd in the root cell wall and immobilizing more Cd in lower toxicity fractions.
亚细胞组分和镉(Cd)的化学形态反映了其对植物的毒性水平;然而,外源性谷胱甘肽(GSH)的这些影响还知之甚少。我们用 50µM 的 Cd 或 200µM 的 GSH 处理两个意大利黑麦草(Lolium multiflorum Lam.)品种(IdyII 和 Harukaze),以研究 GSH 对 Cd 吸收、亚细胞区室和化学形态的影响。Cd 显著抑制了植物的生长,而 GSH 的补充则降低了这种抑制作用。GSH 的应用显著提高了根中的 Cd 浓度,但降低了地上部分的浓度,并减少了 Cd 从根部向地上部的转运。当用 GSH 处理时,根中细胞壁的 Cd 浓度增加,而可溶部分的浓度降低。用 80%乙醇提取的 Cd 的无机形式(inorganic form)(用于 Cd 提取)显著减少。用 2%乙酸(HAC)提取的毒性和迁移性低的 Cd 形式大大增加。在叶片中,施用 GSH 减少了任何形式的 Cd 形式的提取。总之,外源性 GSH 通过在根细胞壁中积累更多的 Cd 和固定更多的 Cd 在低毒性部分来减少 Cd 的转运,从而减轻意大利黑麦草 Cd 的毒性。