MOE Key Laboratory of Environment Remediation and Ecological Health, College of Environmental & Resource Science, Zhejiang University, Hangzhou 310029, China.
Environ Pollut. 2011 Mar;159(3):782-8. doi: 10.1016/j.envpol.2010.11.020. Epub 2010 Dec 18.
The in vivo localization and speciation of lead (Pb) in tissues of the accumulator Sedum alfredii grown in EDTA-Pb and Pb(NO(3))(2) was studied by synchrotron X-ray investigation. The presence of EDTA-Pb in solution resulted in a significant reduction of Pb accumulation in S. alfredii. Lead was preferentially localized in the vascular bundles regardless of treatments but the intensities of Pb were lower in the plants treated with EDTA. Lead was predominantly presented as a Pb-cell wall complex in the plants regardless of its supply form. However, a relatively high proportion of Pb was observed as Pb-EDTA complex when the plant was treated with EDTA-Pb, but as a mixture of Pb(3)(PO(4))(2), Pb-malic, and Pb-GSH when cultured with ionic Pb. These results suggest that EDTA does not increase the internal mobility of Pb, although the soluble Pb-EDTA complex could be transported and accumulated within the plants of S. alfredii.
采用同步辐射 X 射线研究了 EDTA-Pb 和 Pb(NO3)2 处理下,生物累积器垂盆草组织中铅(Pb)的体内定位和形态。溶液中存在 EDTA-Pb 会显著降低 S. alfredii 对 Pb 的积累。无论处理方式如何,Pb 都优先定位于维管束中,但在 EDTA 处理的植物中 Pb 的强度较低。无论其供应形式如何,Pb 主要以 Pb-细胞壁复合物的形式存在于植物中。然而,当用 EDTA-Pb 处理植物时,观察到相对较高比例的 Pb 作为 Pb-EDTA 复合物,但当用离子 Pb 培养时,Pb 则以 Pb3(PO4)2、Pb-苹果酸和 Pb-GSH 的混合物形式存在。这些结果表明,虽然可溶性 Pb-EDTA 复合物可以在垂盆草植物内运输和积累,但 EDTA 并没有增加 Pb 的内部迁移性。