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蜈蚣草对锌的耐受性、积累及其对锌和砷污染土壤的植物修复潜力。

Zinc tolerance and accumulation in Pteris vittata L. and its potential for phytoremediation of Zn- and As-contaminated soil.

作者信息

An Zi-Zhuang, Huang Ze-Chun, Lei Mei, Liao Xiao-Yong, Zheng Yuan-Ming, Chen Tong-Bin

机构信息

Center for Environmental Remediation, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, 11A Datun Road, Beijing 100101, PR China.

出版信息

Chemosphere. 2006 Feb;62(5):796-802. doi: 10.1016/j.chemosphere.2005.04.084. Epub 2005 Jun 28.

Abstract

A field investigation and pot experiments were conducted to determine the potential of arsenic (As) hyperaccumulator, Pteris vittata L., to remediate sites co-contaminated with zinc (Zn) and As. We found that P. vittata L. had a very high tolerance to Zn and grew normally at sites with high Zn concentrations. In addition, P. vittata L. could effectively take up Zn into its fronds, with a maximum of 737 mg kg(-1) under field conditions. In pot experiments, the accumulated Zn concentration increased significantly as the Zn treatment was raised from 0 to 2000 mg kg(-1), with a maximum Zn accumulation of 0.22 mg pot(-1). Although the concentration of As in P. vittata L. was reduced by the addition of Zn, total frond accumulation of As was elevated when the Zn treatment was increased from 0 to 1000 mg kg(-1), with a maximum As accumulation of 8.3 mg pot(-1) in the presence of 1000 mg kg(-1) Zn. The high Zn tolerance, relatively high ability to accumulate Zn, and great capacity to accumulate As under conditions of suppression by high Zn suggest that P. vittata L. could be useful for the remediation of sites co-contaminated with Zn and As.

摘要

开展了一项田间调查和盆栽试验,以确定砷超富集植物蜈蚣草修复锌和砷共同污染场地的潜力。我们发现蜈蚣草对锌具有很高的耐受性,在高锌浓度的场地能正常生长。此外,蜈蚣草能有效地将锌吸收到其叶片中,在田间条件下最高可达737毫克/千克。在盆栽试验中,随着锌处理浓度从0提高到2000毫克/千克,积累的锌浓度显著增加,锌的最大积累量为0.22毫克/盆。虽然添加锌会降低蜈蚣草中砷的浓度,但当锌处理浓度从0增加到1000毫克/千克时,叶片中砷的总积累量会升高,在存在1000毫克/千克锌的情况下,砷的最大积累量为8.3毫克/盆。高锌耐受性、相对较高的锌积累能力以及在高锌抑制条件下较大的砷积累能力表明,蜈蚣草可用于修复锌和砷共同污染的场地。

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