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几种观赏植物的耐铅性和富集特性的水培研究。

Lead Tolerance and Enrichment Characteristics of Several Ornamentals Under Hydroponic Culture.

机构信息

College of Resource and Environment Engineering, Jilin Institute of Chemical Technology, Jilin, 132022, People's Republic of China.

College of Resource and Environmental Science, Jilin Agricultural University, Changchun, 130118, People's Republic of China.

出版信息

Bull Environ Contam Toxicol. 2020 Jul;105(1):166-172. doi: 10.1007/s00128-020-02905-x. Epub 2020 Jun 20.

Abstract

The growth response, tolerance, and enrichment characteristics of six ornamental species, Chlorophytum comosum, Calendula officinalis, Iris lacteal, Belamcanda chinensis, Saponaria officinalis, and Polygonum lapathifolium were studied under hydroponic culture with lead (Pb) concentrations ranging from 0 to 1000 mg/L. The results showed that the growth of the tested ornamental species under Pb stress was inhibited. Belamcanda chinensis presented the largest tolerance index (0.75), and Calendula officinalis had the highest toxicity threshold (500 mg/L) under Pb stress. The highest Pb contents in the shoots were detected in Iris lacteal and Belamcanda chinensis. The enrichment coefficients in the shoots of Iris lacteal and Belamcanda chinensis were significantly higher than those in the other ornamental species. In conclusion, Iris lacteal and Belamcanda chinensis are the most tolerant and have the greatest Pb enrichment and translocation abilities under Pb stress, and thus, they have a strong potential to restore Pb-contaminated water bodies and soils.

摘要

在 Pb 浓度为 0 至 1000mg/L 的水培条件下,研究了 6 种观赏植物(Chlorophytum comosum、Calendula officinalis、Iris lacteal、Belamcanda chinensis、Saponaria officinalis 和 Polygonum lapathifolium)的生长响应、耐性和富集特征。结果表明,Pb 胁迫抑制了受试观赏植物的生长。在 Pb 胁迫下,Belamcanda chinensis 的耐性指数(0.75)最大,Calendula officinalis 的毒性阈值(500mg/L)最高。 shoot 中 Pb 含量最高的是 Iris lacteal 和 Belamcanda chinensis。Iris lacteal 和 Belamcanda chinensis shoot 的富集系数明显高于其他观赏植物。综上所述,Iris lacteal 和 Belamcanda chinensis 在 Pb 胁迫下具有较强的耐性和最大的 Pb 富集和转运能力,因此具有很强的修复 Pb 污染水体和土壤的潜力。

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