Stable isotope tracers identify sources and transformations of mercury in rice (Oryza sativa L.) growing in a mercury mining area

甲基汞 Mercury(编程语言) 水稻 水稻 环境化学 水田 化学 去甲基化 示踪剂 土壤水分 生长季节 糙米 农学 环境科学 生物累积 生物 土壤科学 DNA甲基化 食品科学 程序设计语言 核物理学 基因表达 物理 基因 生物化学 计算机科学
作者
Jiang Liu,Bo Meng,Alexandre J. Poulain,Qiyi Meng,Xinbin Feng
出处
期刊:Fundamental research [Elsevier BV]
卷期号:1 (3): 259-268 被引量:33
标识
DOI:10.1016/j.fmre.2021.04.003
摘要

Methylmercury (MeHg) contaminated rice is a global issue, particularly in mercury-polluted areas, posing a potential threat to human health. The sources and transformations of mercury (Hg) species in rice are critical points that are not yet fully understood. In this study, field experimental pots together with a stable Hg isotope tracing technique were used to provide direct evidence of the sources and transformations of Hg species in rice plants. Enriched inorganic Hg (IHg) isotope (200Hg(NO3)2) was spiked into paddy soils, and the concentrations of inorganic Hg tracer (I200Hg), MeHg tracer (Me200Hg), and ambient Hg species (IHg and MeHg) were measured in the tissues of rice plants and their corresponding soil samples during the rice growing season. Here, we show that, in addition to the atmosphere, the soil is an important source of IHg to rice grains and was previously largely underestimated. We also show that MeHg is formed in paddy soil via microbial IHg methylation, absorbed through the rice root, translocated from the root to above-ground parts, and finally accumulated in rice grains. Although in vivo methylation of IHg in rice plants is unlikely to occur during the rice growing season, we observed in vivo demethylation of MeHg in the above-ground parts of rice plants, possibly via photolytic demethylation. Promoting in vivo demethylation of MeHg may be an effective approach to mitigate MeHg accumulation in rice grains.
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