Arbuscular mycorrhizal fungi alter Hg root uptake and ligand environment as studied by X-ray absorption fine structure

被引:26
|
作者
Kodre, Alojz [1 ,2 ]
Arcon, Iztok [2 ,3 ]
Debeljak, Marta [4 ]
Potisek, Mateja [5 ]
Likar, Matevz [5 ]
Vogel-Mikus, Katarina [2 ,5 ]
机构
[1] Univ Ljubljana, Fac Math & Phys, Jadranska 19, Ljubljana, Slovenia
[2] Jozef Stefan Inst, Jamova 39, Ljubljana, Slovenia
[3] Univ Nova Gorica, Vipavska 13, Nova Gorica, Slovenia
[4] Natl Inst Chem, Hajdrihova 19, Ljubljana, Slovenia
[5] Univ Ljubljana, Biotech Fac, Jamnikarjeva 101, Ljubljana, Slovenia
关键词
EXAFS; XANES; Arbuscular mycorrhiza; Phytoremediation; Toxicity; Hg coordination; Ligand environment; HEAVY-METAL PHYTOREMEDIATION; MERCURY; SPECIATION; CADMIUM; LOCALIZATION; SPECTROSCOPY; PERSPECTIVES; GLUTATHIONE; SYMBIOSIS; DYNAMICS;
D O I
10.1016/j.envexpbot.2016.09.006
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Mercury (Hg) - plant - fungal interactions are only poorly studied. Hg speciation and ligand environment in maize roots inoculated with arbuscular mycorrhizal (AM) fungi were investigated in order to better understand the role of AM in Hg soil to root transfer. The maize plants were grown in Hg polluted substrate (50 mu gg(-1) as dissolved HgCl2) and inoculated with AM fungi originating from: a) highly Hg polluted environment of a former Hg smelting site in Idrija, Slovenia, (Glomus sp. - sample AmI), and b) non-polluted environment (commercial AM inoculum Symbivit (R) - sample AmC). Hg speciation and ligand environment in maize roots was studied by Hg-L-3 XANES and EXAFS with emphasis on XAS methodology - modelling and fitting the XAFS spectra to extract in a reliable way as much information on Hg coordination as possible. The Ami plants developed more arbuscules and less vesicles than the AmC plants, and also accumulated more Hg in the roots. A clear difference in Hg coordination between the AM (AmC & AmI) and the control (ConC & ConI) plants is recognized in Hg L-3-edge EXAFS analysis: in the ConC & ConI maize roots 73-80% of Hg is attached between two sulphur atoms at the distance of 2.34 angstrom. The remaining ligand is nitrogen at 2.04 angstrom. In AmI & AmC roots another Hg-S attachment encompassing four thiol groups at the S-distance of similar to 2.50 angstrom are identified, accounting for 21-26%. AM fungi can modify Hg ligand environment in plant roots, thus playing an important role in biogeochemical cycling of Hg in terrestrial ecosystems. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:12 / 23
页数:12
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