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Selenium in Soil Inhibits Mercury Uptake and Translocation in Rice (Oryza sativa L.)
Hua Zhang;  Xinbin Feng;  Jianming Zhu;  Atindra Sapkota;  Bo Meng;  Heng Yao;  Haibo Qin;  Thorjørn Larssen
2012
发表期刊Environmental Science and Technology
卷号46期号:18页码:10040-10046
摘要

A great number of studies have confirmed that mercury–selenium (Hg–Se) antagonism is a widespread phenomenon in microorganisms, fish, poultry, humans, and other mammals. However, by comparison, little attention has been paid to plants. To investigate the influence of Se on the uptake and translocation of methylHg/inorganic Hg (MeHg/IHg) in the rice–soil system, we determined the levels of Se, IHg, and MeHg in different parts of rice plants (including the root, stem, leaf, husk, and grain (brown rice)) and corresponding soils of root zones collected from a Hg mined area, where Hg and Se co-occur due to historic Hg mining and retorting activities. The results showed that, in general, the Se levels were inversely related to the levels of both IHg and MeHg in the grains. In addition, a consistent reduction in translocation of both IHg and MeHg in the aerial shoots (i.e., the stem, leaf, husk, and grain) with increasing Se levels in the soils was observed. Furthermore, the Se levels were positively correlated with the IHg levels in the soils and the roots. These results suggest that Se may play an important role in limiting the bioaccessibility, absorption, and translocation/bioaccumulation of both IHg and MeHg in the aerial rice plant, which may be related to the formation of an Hg–Se insoluble complex in the rhizospheres and/or roots.

收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/42920512-1/10970
专题环境地球化学国家重点实验室
作者单位1.State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, 550002, China
2.Norwegian Institute for Water Research, Gaustadalleen 21, 0349 Oslo, Norway
推荐引用方式
GB/T 7714
Hua Zhang;Xinbin Feng;Jianming Zhu;Atindra Sapkota;Bo Meng;Heng Yao;Haibo Qin;Thorjørn Larssen. Selenium in Soil Inhibits Mercury Uptake and Translocation in Rice (Oryza sativa L.)[J]. Environmental Science and Technology,2012,46(18):10040-10046.
APA Hua Zhang;Xinbin Feng;Jianming Zhu;Atindra Sapkota;Bo Meng;Heng Yao;Haibo Qin;Thorjørn Larssen.(2012).Selenium in Soil Inhibits Mercury Uptake and Translocation in Rice (Oryza sativa L.).Environmental Science and Technology,46(18),10040-10046.
MLA Hua Zhang;Xinbin Feng;Jianming Zhu;Atindra Sapkota;Bo Meng;Heng Yao;Haibo Qin;Thorjørn Larssen."Selenium in Soil Inhibits Mercury Uptake and Translocation in Rice (Oryza sativa L.)".Environmental Science and Technology 46.18(2012):10040-10046.
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