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盐生植物单叶滨藜(L. monopetalum)(L.)Boiss 的金属植物修复:两种对比生态型。

Metal phytoremediation by the halophyte Limoniastrum monopetalum (L.) Boiss: two contrasting ecotypes.

出版信息

Int J Phytoremediation. 2014;16(7-12):755-69. doi: 10.1080/15226514.2013.856847.

DOI:10.1080/15226514.2013.856847
PMID:24933883
Abstract

The phytoremediation potential of the halophyte Limoniastrum monopetalum for the removal of Cd and Pb from polluted sites is assessed in this work. Two pot experiments were conducted; the first with wild L. monopetalum grown on soil polluted with Cd and Pb irrigated at different salinities, and the second with commonly cultivated ornamental L. monopetalum grown on soil polluted with Cd irrigated also at different salinities. The data revealed that wild L. monopetalum is a Cd and Pb tolerant plant able to accumulate at least 100 ppm of cadmium in its shoots without showing any significant decrease in terms of biomass production, chlorophyll content or water content suggesting that it could be an accumulator of Cd. Pb above-ground accumulation was kept at low levels with the majority of Pb localized in the roots. On the other hand, contrasting results were obtained for ornamental L. monopetalum which although it was found to be also Cd tolerant, Cd accumulation in its tissues was kept at significantly lower levels especially compared to that of the wild ecotype. In addition for ornamental L. monopetalum salinity did not have a positive effect on Cd accumulation and translocation as observed in the wild type and in other halophytes. Analysis of the salt excretion crystals on the leaf surface confirmed that wild and cultivated ornamental L. monopetalum excrete cadmium and lead through their salt glands as a possible metal detoxification mechanism, although the amount excreted by the ornamental L. monopetalum is significantly less.

摘要

本研究评估了盐生植物独一味(Limoniastrum monopetalum)对受污染场地中 Cd 和 Pb 的植物修复潜力。进行了两项盆栽实验;第一项实验是在受 Cd 和 Pb 污染且灌溉不同盐度的土壤中种植野生独一味,第二项实验是在受 Cd 污染且灌溉不同盐度的土壤中种植常见的观赏独一味。数据表明,野生独一味是一种 Cd 和 Pb 耐受植物,能够在不显著降低生物量、叶绿素含量或含水量的情况下,在其地上部分积累至少 100ppm 的 Cd,表明其可能是 Cd 的积累者。地上部分的 Pb 积累保持在低水平,大部分 Pb 定位于根部。另一方面,观赏独一味的结果则相反,尽管它也被发现对 Cd 具有耐受性,但 Cd 在其组织中的积累水平明显较低,尤其是与野生生态型相比。此外,与野生型和其他盐生植物不同,盐度对观赏独一味 Cd 的积累和转运没有积极影响。对叶片表面盐排泄晶体的分析证实,野生和栽培观赏独一味通过盐腺排泄 Cd 和 Pb,这可能是一种金属解毒机制,尽管观赏独一味排泄的量明显较少。

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