School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou, People's Republic of China.
Int J Phytoremediation. 2011 Nov-Dec;13(10):1024-36. doi: 10.1080/15226514.2010.549862.
In this paper, the effects of indole-3-acetic acid (IAA) and/or ethylenediaminetetraacetic acid (EDTA) on lead uptake by a Zn/Cd hyperaccumulator Picris divaricata were studied. P. divaricata responded to Pb by better root system and increased biomass in presence of phytohormone IAA, which was able to reduce the inhibiting effects of Pb on transpiration without reducing the uptake of Pb The application of 100 microM IAA increased plant transpiration rate by about 20% and Pb concentration in leaves by about 37.3% as compared to treatment exposed to Pb alone. The enhanced phytoextraction efficiency could be attributed to the mechanisms played by IAA through alleviating Pb toxicity, creating better root system and plant biomass, promoting a higher transpiration rate as well as regulating the level of nutrient elements. On the contrary, inefficiency of phytoextraction was found with EDTA or the combination of IAA and EDTA probably because most Pb was in the form of Pb-EDTA complex which blocked the uptake by P. divaricata. The present study demonstrated that IAA was able to enhance the phytoextraction of Pb by Zn/Cd hyperaccumulator P. divaricata, providing a feasible method for the phytoremediation of polymetallic contaminated soils.
本研究探讨了吲哚乙酸(IAA)和/或乙二胺四乙酸(EDTA)对 Zn/Cd 超积累植物播娘蒿吸收铅的影响。在植物激素 IAA 的存在下,播娘蒿通过更好的根系和增加生物量对 Pb 做出响应,这能够降低 Pb 对蒸腾作用的抑制作用,而不减少 Pb 的吸收。与单独暴露于 Pb 的处理相比,应用 100μM IAA 可使植物蒸腾速率提高约 20%,叶片中 Pb 浓度提高约 37.3%。增强的植物提取效率可归因于 IAA 通过缓解 Pb 毒性、形成更好的根系和植物生物量、促进更高的蒸腾速率以及调节营养元素水平所发挥的机制。相反,EDTA 或 IAA 和 EDTA 的组合的植物提取效率较低,可能是因为大部分 Pb 以 Pb-EDTA 络合物的形式存在,从而阻止了播娘蒿的吸收。本研究表明,IAA 能够增强 Zn/Cd 超积累植物播娘蒿对 Pb 的植物提取,为多金属污染土壤的植物修复提供了一种可行的方法。