Tianjin Academy of Environmental Sciences, Tianjin, 300191, People's Republic of China,
Environ Monit Assess. 2014 Feb;186(2):751-9. doi: 10.1007/s10661-013-3414-x. Epub 2013 Sep 26.
In the previous study, Mirabilis jalapa L. had revealed the basic Cd hyperaccumulator characteristics, but the accumulation ability was not as strong as that of other known Cd hyperaccumulators. In order to improve the accumulation ability of this ornamental plant, the chelants were used to activate the Cd in soil. As a substitute, ethylene glycol bis(2-aminoethyl) tetraacetic acid (EGTA) was selected to testify whether it has better effectiveness and can bring lesser metal leaching risk than EDTA. The data showed that the growth of M. jalapa was inhibited, while the Cd concentration of the plant was significantly increased under the treatments containing EDTA or EGTA. The Cd translocation ability under the EGTA treatments was higher than that under the EDTA treatments. The available Cd resulted from the application of chelant EGTA to the contaminated soils can be limited to the top 5 cm, while the application of chelant EDTA to the contaminated soils can be limited to the top 10 cm. In a word, EGTA showed better effectiveness than EDTA in enhancing Cd phytoextraction of M. jalapa. As an ornamental plant, M. jalapa has the potential to be used for phytoextraction of Cd-contaminated soils and it can beautify the environment at the same time.
在之前的研究中,苘麻已表现出基本的镉超富集特性,但积累能力不如其他已知的镉超富集植物强。为了提高这种观赏植物的积累能力,使用螯合剂来激活土壤中的镉。乙二醇双(2-氨基乙基)四乙酸(EGTA)被选作替代物,以验证其是否比 EDTA 更有效,且带来的金属浸出风险更小。数据表明,在含有 EDTA 或 EGTA 的处理下,苘麻的生长受到抑制,而植物中的镉浓度明显增加。在 EGTA 处理下,镉的迁移能力高于 EDTA 处理。螯合剂 EGTA 应用于污染土壤,可将有效态镉限制在表层 5 cm 内,而螯合剂 EDTA 应用于污染土壤,可将有效态镉限制在表层 10 cm 内。总之,EGTA 比 EDTA 更有效地增强了苘麻对镉的植物提取。作为一种观赏植物,苘麻具有用于提取镉污染土壤的潜力,同时也可以美化环境。