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镉对芦竹汞积累与转化的影响

Effects of cadmium on mercury accumulation and transformation by Arundo donax L.

作者信息

Li Xiuhua, Zhao Ling, Teng Ying, Luo Yongming, Zhao Qiguo

机构信息

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, China.

University of the Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Sci Pollut Res Int. 2023 May;30(22):62461-62469. doi: 10.1007/s11356-023-26516-1. Epub 2023 Mar 21.

Abstract

High biomass energy plants are a promising alternative to hyperaccumulators for the remediation of heavy metals (HMs). Arundo donax L. (A. donax) is a rapidly growing rhizomatous grass with high biomass production. However, the feasibility of using A. donax for the phytoremediation of combined mercury (Hg) and cadmium (Cd) pollution under neutral conditions is unclear. In this study, a hydroponic experiment was performed to investigate the impact of Hg-Cd stress on the growth and physiological properties of A. donax and HMs accumulation and transformation. Either single Hg or Cd stress slightly enhanced stem height, fresh biomass, and chlorophyll content, whereas combined Hg-Cd stress reduced these parameters. Furthermore, combined Hg-Cd stress increased the leaf content of malondialdehyde in A. donax, indicating that the combined pollution aggravated oxidative stress in A. donax. Hg volatilization was observed during the 10-day experiment, implying that a portion of the Hg was transformed into Hg by A. donax. The bioaccumulation factor (BAF) values of A. donax were far greater than 1 for both Hg and Cd, whereas the translocation factor (TF) values were less than 1, indicating that phytovolatilization and phytostabilization rather than phytoextraction contributed to the remediation of Hg and Cd by A. donax. The solution pH decreased at the beginning of the experiment, suggesting that acidic root exudates of A. donax facilitated the accumulation and transformation of Hg under neutral conditions. Overall, the effects of Cd on Hg accumulation and transformation by A. donax followed the rule of "low promotion and high inhibition." This study demonstrates that A. donax is a potential candidate for the phytoremediation of combined Hg-Cd pollution under neutral conditions.

摘要

高生物量能源植物是用于修复重金属(HMs)的超富集植物的一种有前景的替代物。芦竹(Arundo donax L.)是一种生长迅速的根茎型禾本科植物,具有很高的生物量产量。然而,在中性条件下使用芦竹进行汞(Hg)和镉(Cd)复合污染植物修复的可行性尚不清楚。在本研究中,进行了一项水培实验,以研究Hg-Cd胁迫对芦竹生长和生理特性以及重金属积累和转化的影响。单一Hg或Cd胁迫略微提高了茎高、鲜生物量和叶绿素含量,而Hg-Cd复合胁迫降低了这些参数。此外,Hg-Cd复合胁迫增加了芦竹叶中丙二醛的含量,表明复合污染加剧了芦竹的氧化应激。在为期10天的实验中观察到了Hg挥发,这意味着一部分Hg被芦竹转化为气态Hg。芦竹对Hg和Cd的生物富集系数(BAF)值均远大于1,而转运系数(TF)值小于1,表明芦竹对Hg和Cd的修复主要通过植物挥发和植物稳定作用,而非植物提取作用。实验开始时溶液pH值下降,表明芦竹的酸性根系分泌物促进了中性条件下Hg的积累和转化。总体而言,Cd对芦竹Hg积累和转化的影响遵循“低促高抑”规律。本研究表明,芦竹是中性条件下Hg-Cd复合污染植物修复的潜在候选植物。

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