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硫代硫酸盐处理植物中汞形态的影响。

Implications of mercury speciation in thiosulfate treated plants.

机构信息

State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, People's Republic of China.

出版信息

Environ Sci Technol. 2012 May 15;46(10):5361-8. doi: 10.1021/es204331a. Epub 2012 Apr 26.

Abstract

Mercury uptake was induced in two cultivars of Brassica juncea under field conditions using thiosulfate. Analysis was conducted to better understand the mechanism of uptake, speciation of mercury in plants, and redistribution of mercury in the soil. Plant mercury and sulfur concentrations were increased after thiosulfate treatment, and a linear correlation between mercury and sulfur was observed. Mercury may be absorbed and transported in plants as the Hg-thiosulfate complex. The majority of mercury in treated plant tissues (two cultivars) was bound to sulfur in a form similar to β-HgS (66-94%). Remaining mercury was present in forms similar to Hg-cysteine (1-10%) and Hg-dicysteine (8-28%). The formation of β-HgS may relate to the transport and assimilation of sulfate in plant tissues. Mercury-thiosulfate complex could decompose to mercuric and sulfate ions in the presence of free protons inside the plasma membrane, while sulfide ions would be produced by the assimilation of sulfate. The concomitant presence of mercuric ions and S(2-) would precipitate β-HgS. The mercury concentration in the rhizosphere decreased in the treated relative to the nontreated soil. The iron/manganese oxide and organic-bound fractions of soil mercury were transformed to more bioavailable forms (soluble and exchangeable and specifically sorbed) and taken up by plants.

摘要

在田间条件下,使用硫代硫酸盐诱导两种芥菜品种吸收汞。进行分析以更好地了解吸收机制、植物中汞的形态和土壤中汞的再分布。硫代硫酸盐处理后,植物中的汞和硫浓度增加,并且观察到汞和硫之间存在线性相关性。汞可能作为 Hg-硫代硫酸盐络合物被植物吸收和运输。处理过的植物组织(两种品种)中的大部分汞以类似于β-HgS(66-94%)的形式与硫结合。其余的汞以类似于 Hg-半胱氨酸(1-10%)和 Hg-二半胱氨酸(8-28%)的形式存在。β-HgS 的形成可能与植物组织中硫酸盐的运输和同化有关。在质膜内的游离质子存在下,汞-硫代硫酸盐络合物可能分解为汞离子和硫酸盐离子,而通过硫酸盐同化会产生硫离子。同时存在的汞离子和 S(2-) 会沉淀出β-HgS。与未处理土壤相比,处理过的根际土壤中的汞浓度降低。土壤汞的铁/锰氧化物和有机结合部分转化为更具生物利用性的形式(可溶性和可交换性以及特异性吸附)并被植物吸收。

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