Liphadzi M S, Kirkham M B, Paulsen G M
Department of Agronomy, 2004 Throckmorton Hall, Kansas State University, Manhattan, KS 66506-5501, USA.
Environ Technol. 2006 Jun;27(6):695-704. doi: 10.1080/09593332708618683.
A technology to increase root growth would be advantageous for phytoremediation of trace metal polluted soil, because more roots would be available for metal uptake. The objective of this study was to determine if the auxin, indole-3-acetic acid (IAA), would increase root growth in soil with metals from sewage sludge, when the tetrasodium salt of the chelate EDTA (ethylenediamine-tetraacetic acid) was added to solubilize the metals. Sunflower (Helianthus annuus L.) plants grew in large pots containing either soil from a sludge farm or composted sludge. The EDTA salt was added at a rate of 1 g kg(-1) soil 37 days after planting. IAA at the rate of 3 or 6 mg l(-1) was sprayed on the leaves (500 ml) and added to the soil (500 ml) three times: 41, 50, and 74 days after planting. At harvest 98 days after planting, oven-dry weights were measured, and plant organs were analyzed for Cd, Cu, Fe, Mn, Ni, Pb, and Zn. Metal uptake was determined as the product of metal concentration in an organ and weight. IAA increased root growth of plants grown in the soil with sludge when no EDTA was present. With no EDTA, Mn and Ni in leaves of plants grown in the soil were higher at 3 and 6 mg l(-1) IAA compared to 0 mg l(-1) IAA. With and without EDTA, Cd and Pb in leaves of plants grown in the compost were higher with 3 and 6 mg l(-1) IAA compared to 0 mg l(-1) IAA.
一种促进根系生长的技术对于痕量金属污染土壤的植物修复具有优势,因为更多的根系可用于吸收金属。本研究的目的是确定当添加螯合剂乙二胺四乙酸(EDTA)的四钠盐以溶解金属时,生长素吲哚 - 3 - 乙酸(IAA)是否会增加生长在含有污水污泥金属的土壤中的根系生长。向日葵(Helianthus annuus L.)植株种植在装有来自污泥农场的土壤或堆肥污泥的大花盆中。种植37天后,以1 g kg(-1)土壤的速率添加EDTA盐。以3或6 mg l(-1)的速率将IAA喷洒在叶片上(500 ml)并添加到土壤中(500 ml),共三次:种植后41、50和74天。在种植98天后收获时,测量烘干重量,并分析植物器官中的镉、铜、铁、锰、镍、铅和锌。金属吸收量通过器官中金属浓度与重量的乘积来确定。当不存在EDTA时,IAA增加了生长在含污泥土壤中的植物的根系生长。在不存在EDTA的情况下,与0 mg l(-1) IAA相比,生长在土壤中的植物叶片中的锰和镍在3和6 mg l(-1) IAA时更高。无论有无EDTA,与0 mg l(-1) IAA相比,生长在堆肥中的植物叶片中的镉和铅在3和6 mg l(-1) IAA时更高。