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镍超积累植物边缘薄鳞苔和泰姆法薄鳞藓的植物提取潜力

Phytoextraction potential of the nickel hyperaccumulators Leptoplax emarginata and Bornmuellera tymphaea.

作者信息

Chardot Vanessa, Massoura Stamatia Tina, Echevarria Guillaume, Reeves Roger D, Morel Jean-Louis

机构信息

Laboratoire Sols et Environnment, ENSAIA/INRA-INPL, Vandoeuvre-Lès-Nancy,France.

出版信息

Int J Phytoremediation. 2005;7(4):323-35. doi: 10.1080/16226510500327186.

Abstract

Leptoplax emarginata and Bornmuellera tymphaea are nickel hyperaccumulators of the Brassicaceae family endemic to serpentine soils in Greece. The aims of this work were to compare the growth and uptake behavior of these plants with the Ni hyperaccumulator species Thlaspi caerulescens and Alyssum murale, and to evaluate their effect on soil Ni availability. Plants were grown for 3 mo on three soils that differ in Ni availability. Ni availability in soils was measuredby isotopic exchange kinetics and DTPA-TEA extractions. Results showed that L. emarginata produced significantly more biomass than other plants. On the serpentine soil, B. tymphaea showed the highest Ni concentration in shoots. However, Niphytoextraction on the three soils was maximal with L. emarginata. The high initial Ni availability of soil Serp (470.5 mg kg(-1)) was the main explanation for the high Ni concentrations measured in plant shoots grown on this soil, compared to those grown on soils Calc and Silt A. murale was the least efficient in reducing Ni availability on the serpentine soil L. emarginata appeared as the most efficient species for Ni phytoextraction and decrease of the Ni available pool.

摘要

边缘细弱藓和蒂氏波恩藓是十字花科的镍超积累植物,原产于希腊的蛇纹石土壤。这项工作的目的是比较这些植物与镍超积累物种天蓝遏蓝菜和墙生庭荠的生长和吸收行为,并评估它们对土壤镍有效性的影响。将植物在三种镍有效性不同的土壤上种植3个月。通过同位素交换动力学和DTPA-TEA萃取法测量土壤中的镍有效性。结果表明,边缘细弱藓产生的生物量明显多于其他植物。在蛇纹石土壤上,蒂氏波恩藓地上部分的镍浓度最高。然而,在这三种土壤上,边缘细弱藓的镍植物提取量最大。与在钙质土和粉砂土上生长的植物相比,蛇纹石土壤(Serp,镍初始有效性为470.5 mg kg⁻¹)的高初始镍有效性是该土壤上生长的植物地上部分镍浓度高的主要原因。墙生庭荠在降低蛇纹石土壤镍有效性方面效率最低。边缘细弱藓似乎是镍植物提取和减少有效镍库最有效的物种。

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