Nano mercury selenide as a source of mercury for rice

IF 7.6 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Pollution Pub Date : 2023-02-01 DOI:10.1016/j.envpol.2022.120918
Hongxin Xie , Lina He , Xue Tian , Wei Zhang , Liwei Cui , Lihai Shang , Jiating Zhao , Bai Li , Yu-Feng Li
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引用次数: 3

Abstract

Mercury (Hg) is a persistent and toxic metal while mercury selenide (HgSe) is generally considered as the environmental sink of Hg in its biogeochemical cycle. Recent studies found nano-sized HgSe (nano-HgSe) could be transformed by certain bacteria. This raises safety concerns about the application of selenium (Se) to curb Hg contamination in farmlands. Therefore, hydroponic experiments were performed in which rice plants were cultured with different concentrations of nano-HgSe and micro-sized HgSe (micro-HgSe) to explore their bioavailability and toxicity. It was found that both nano-HgSe and micro-HgSe did not affect the germination of rice seeds but affected the growth of rice seedlings. However, nano-HgSe could be more readily absorbed by roots and transferred to the aboveground parts compared to micro-HgSe. The highest Hg and Se levels were found to be 5255.67 ± 2496.14 μg/g and 1743.75 ± 61.87 μg/g, respectively in roots when exposed to 5000 mg/L nano-HgSe. Besides, small portion (1.2%) of methylmercury (MeHg) to total Hg was found accumulated in rice stem when exposed to 100 mg/L nano-HgSe, suggesting that nano-HgSe could be decomposed. Furthermore, nano-HgSe exposure brought oxidative damage to rice with decreased chlorophyll content and GSH-Px activity. In all, nano-HgSe was found to be more absorbable, transportable and methylated in rice plant compared to micro-HgSe. This suggests that although Se application in Hg contaminated farmland is an effective way to reduce the bioavailability of Hg, the risk of the possible remobilization of HgSe should not be neglected. Besides, the finding that nano-HgSe can act as an environmental source of Hg for plants deepens the understanding of biogeochemical cycle of Hg. More works are required to study the factors affecting the formation of nano-HgSe in the environment and the mechanisms of Hg methylation in rice plants after exposure to nano-HgSe.

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纳米硒化汞作为大米汞的来源
汞(Hg)是一种持久性有毒金属,而硒化汞(HgSe)通常被认为是汞在其生物地球化学循环中的环境汇。最近的研究发现,纳米级HgSe(纳米HgSe)可以被某些细菌转化。这引起了人们对应用硒(Se)来抑制农田汞污染的安全担忧。因此,本研究采用不同浓度的纳米级和微级HgSe (micro-HgSe)培养水稻植株进行水培试验,探讨其生物利用度和毒性。结果表明,纳米和微hgse对水稻种子萌发均无影响,但对水稻幼苗生长有影响。然而,与微硒相比,纳米硒更容易被根系吸收并转移到地上部分。在5000 mg/L纳米汞硒处理下,根内汞和硒含量最高,分别为5255.67±2496.14 μg和1743.75±61.87 μg/g。此外,在100 mg/L的纳米汞硒处理下,水稻茎中甲基汞(MeHg)占总汞的比例为1.2%,表明纳米汞硒可以被分解。此外,纳米hgse暴露对水稻造成氧化损伤,导致叶绿素含量和GSH-Px活性降低。综上所述,纳米hgse在水稻植株中的可吸收性、可转运性和甲基化性均优于微hgse。这表明,虽然在汞污染的农田中施用硒是降低汞生物利用度的有效途径,但汞硒再活化的风险也不容忽视。此外,纳米汞硒可作为植物汞的环境源的发现加深了对汞的生物地球化学循环的认识,对环境中纳米汞硒形成的影响因素和水稻暴露于纳米汞硒后汞甲基化机制的研究还需要做更多的工作。
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来源期刊
Environmental Pollution
Environmental Pollution 环境科学-环境科学
CiteScore
16.00
自引率
6.70%
发文量
2082
审稿时长
2.9 months
期刊介绍: Environmental Pollution is an international peer-reviewed journal that publishes high-quality research papers and review articles covering all aspects of environmental pollution and its impacts on ecosystems and human health. Subject areas include, but are not limited to: • Sources and occurrences of pollutants that are clearly defined and measured in environmental compartments, food and food-related items, and human bodies; • Interlinks between contaminant exposure and biological, ecological, and human health effects, including those of climate change; • Contaminants of emerging concerns (including but not limited to antibiotic resistant microorganisms or genes, microplastics/nanoplastics, electronic wastes, light, and noise) and/or their biological, ecological, or human health effects; • Laboratory and field studies on the remediation/mitigation of environmental pollution via new techniques and with clear links to biological, ecological, or human health effects; • Modeling of pollution processes, patterns, or trends that is of clear environmental and/or human health interest; • New techniques that measure and examine environmental occurrences, transport, behavior, and effects of pollutants within the environment or the laboratory, provided that they can be clearly used to address problems within regional or global environmental compartments.
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