Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
J Environ Sci (China). 2009;21(5):647-53. doi: 10.1016/s1001-0742(08)62320-7.
Accumulations of copper (Cu) and cadmium (Cd) in six rice cultivars (94D-22, 94D-54, 94D-64, Gui630, YY-1, and KY1360) were evaluated through exposure to heavy metal contamination (100 mg/kg Cu, 1.0 mg/kg Cd, and 100 mg/kg Cu + 1.0 mg/kg Cd) in a greenhouse. The dry weights of shoot and root, concentrations of Cu and Cd in plant tissues and the Cu, Cd, P, Fe concentrations in the root surface iron plaques were analyzed eight weeks later after treatment. The results indicated that the plant biomass was mainly determined by rice genotypes, not Cu and Cd content in soil. Separated treatment with Cu/Cd increased each metal level in shoot, root and iron plaques. Soil Cu enhanced Cd accumulation in tissues. In contrast, Cu concentrations in shoot and root was unaffected by soil Cd. Compared to single metal contamination, combined treatment increased Cd content by 110.6%, 77.0%, and 45.2% in shoot, and by 112.7%, 51.2% and 18.4% in root for Gui630, YY-1, and KY1360, respectively. The content level of Cu or Cd in root surface iron plaques was not affected by their soil content. Cu promoted Fe accumulation in iron plaques, while Cd has no effect on P and Fe accumulation in it. The translocation of Cu and Cd from iron plaques to root and shoot was also discussed. These results might be beneficial in selecting cultivars with low heavy metal accumulation and designing strategies for soil bioremediation.
在温室中,通过暴露于重金属污染(100mg/kgCu、1.0mg/kgCd 和 100mg/kgCu+1.0mg/kgCd),评估了 6 个水稻品种(94D-22、94D-54、94D-64、Gui630、YY-1 和 KY1360)中铜(Cu)和镉(Cd)的积累。处理 8 周后,分析了地上部和根部的干重、植物组织中 Cu 和 Cd 的浓度以及根表面铁膜中 Cu、Cd、P、Fe 的浓度。结果表明,植物生物量主要由水稻基因型决定,而不是土壤中 Cu 和 Cd 的含量。Cu/Cd 单独处理增加了地上部、根部和铁膜中的每种金属水平。土壤 Cu 增加了组织中 Cd 的积累。相反,土壤 Cd 对地上部和根部的 Cu 浓度没有影响。与单一金属污染相比,联合处理使 Gui630、YY-1 和 KY1360 的地上部 Cd 含量分别增加了 110.6%、77.0%和 45.2%,根部 Cd 含量分别增加了 112.7%、51.2%和 18.4%。根表面铁膜中 Cu 或 Cd 的含量不受其土壤含量的影响。Cu 促进了铁膜中 Fe 的积累,而 Cd 对其 P 和 Fe 的积累没有影响。还讨论了 Cu 和 Cd 从铁膜向根和地上部的迁移。这些结果可能有助于选择低重金属积累的品种,并设计土壤生物修复策略。