Wu Feibo, Zhang Guoping, Dominy Peter, Wu Hongxia, Bachir Dango M L
Department of Agronomy, College of Agriculture and Biotechnology, Huajiachi Campus, Zhejiang University, Hangzhou, PR China.
Chemosphere. 2007 Nov;70(1):83-92. doi: 10.1016/j.chemosphere.2007.06.051. Epub 2007 Aug 1.
A greenhouse hydroponics experiment was carried out to investigate genotypic difference in yield components in response to Cd toxicity, and kernel Cd concentrations and its relationship with Cd levels in roots and shoots during ontogenesis and as affected by shading and awn-removal. Root, shoot biomass and yield components of the four barley genotypes were impaired by increasing external Cd levels, with cv Wumaoliuling being most affected. Cadmium accumulation in roots and shoots increased with external Cd levels and differed significantly among genotypes. Meanwhile, 1 and 5 microM Cd treatments induced significant genotypic difference in kernel Cd concentrations, and Mimai 114, with the lowest Cd levels in roots and shoots, being the highest, whereas ZAU 3 being the lowest genotype. Shading had no significant effect on kernel Cd concentration, whereas awn-removal caused a significant decrease. Significantly negative correlation was discovered between Zn, Cu or Mn and Cd concentration in kernels, and there were positive relationships between Zn and Cu, Fe or Mn concentrations. Grain Cd concentrations were strongly correlated with both shoot and root levels. Regression equations between kernel- and shoot/root-Cd concentrations at different days of Cd exposure were established, allowing prediction of kernel Cd levels at harvest by measuring root- and shoot-Cd levels at early growth stage.
进行了一项温室水培试验,以研究产量构成因素对镉毒性的基因型差异,以及在个体发育过程中籽粒镉浓度及其与根和地上部镉含量的关系,以及遮荫和去芒对其的影响。随着外部镉水平的增加,四种大麦基因型的根、地上部生物量和产量构成因素均受到损害,其中品种乌麦六棱受影响最大。根和地上部的镉积累量随外部镉水平的增加而增加,且基因型间差异显著。同时,1和5 microM镉处理诱导了籽粒镉浓度的显著基因型差异,根和地上部镉含量最低的品种米麦114籽粒镉含量最高,而品种浙农大3号最低。遮荫对籽粒镉浓度无显著影响,而去芒则导致显著降低。发现籽粒中锌、铜或锰与镉浓度之间存在显著负相关,锌与铜、铁或锰浓度之间存在正相关。籽粒镉浓度与地上部和根部水平均密切相关。建立了不同镉暴露天数下籽粒与地上部/根部镉浓度之间的回归方程,通过在生长早期测量根和地上部镉水平,可以预测收获时籽粒镉水平。