January Mary C, Cutright Teresa J, Van Keulen Harry, Wei Robert
Department Civil Engineering, The University of Akron, Akron, OH 44325-3905, United States.
Chemosphere. 2008 Jan;70(3):531-7. doi: 10.1016/j.chemosphere.2007.06.066. Epub 2007 Aug 13.
Sundance sunflowers were subjected to contaminated solutions containing 3, 4, or 5 heavy metals, with and without EDTA. The sunflowers exhibited a metal uptake preference of Cd=Cr>Ni, Cr>Cd>Ni>As and Fe>>As>Cd>Ni>Cr without EDTA and Cr>Cd>Ni, Fe>>As>Cd>Cr>Ni with EDTA. As uptake was not affected by other metals, but it decreased Cd and Ni concentration in the stems. The presence of Fe improved the translocation of the other metals regardless of whether EDTA was present. In general, EDTA served as a hindrance to metal uptake. For the experiment with all five heavy metals, EDTA decreased Cd in the roots and stems from 2.11 to 1.36 and from 2.83 to 2.3 2mg g(-1) biomass, respectively. For the same conditions, Ni in the stems decreased from 1.98 to 0.94 mg g(-1) total metal uptake decreased from 14.95 mg to 13.89 mg, and total biomass decreased from 2.38 g to 1.99 g. These results showed an overall negative effect in addition of EDTA. However it is unknown whether the negative effect was due to toxicity posed by EDTA or the breaking of phytochelatin-metal bonds. The most important finding was the ability of Sundance sunflowers to achieve hyperaccumulator status for both As and Cd under all conditions studied. Ni hyperaccumulator status was only achieved in the presence of three metals without EDTA.
将圣丹斯向日葵置于含有3种、4种或5种重金属的污染溶液中,溶液中添加或不添加乙二胺四乙酸(EDTA)。在不添加EDTA的情况下,向日葵对金属的吸收偏好为Cd=Cr>Ni、Cr>Cd>Ni>As以及Fe>>As>Cd>Ni>Cr;在添加EDTA的情况下,吸收偏好为Cr>Cd>Ni、Fe>>As>Cd>Cr>Ni。砷的吸收不受其他金属影响,但它会降低茎中镉和镍的浓度。无论是否存在EDTA,铁的存在都能促进其他金属的转运。总体而言,EDTA对金属吸收起到阻碍作用。在所有五种重金属的实验中,EDTA使根部和茎部的镉含量分别从2.11降至1.36以及从2.83降至2.32mg g(-1)生物量。在相同条件下,茎中的镍含量从1.98降至0.94mg g(-1),总金属吸收量从14.95mg降至13.89mg,总生物量从2.38g降至1.99g。这些结果表明添加EDTA会产生总体负面影响。然而,尚不清楚这种负面影响是由于EDTA的毒性还是植物螯合肽 - 金属键的断裂所致。最重要的发现是,在所有研究条件下,圣丹斯向日葵都有能力成为砷和镉的超富集植物。只有在不添加EDTA且存在三种金属的情况下,向日葵才能达到镍超富集植物的状态。