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不同外源营养离子水平下根尖周围镉流入实时吸收法探究李氏禾超积累镉的影响因素

Influencing Factors of L. Hyperaccumulating Cadmium Explored by the Real-Time Uptake of Cd Influx around Root Apexes under Different Exogenous Nutrient Ion Levels.

作者信息

Wang Siqi, Dai Huiping, Ji Dandan, Cui Shuang, Jiang Chengzhi, Skuza Lidia, Li Lianzhen, Grzebelus Dariusz, Wei Shuhe

机构信息

Academy of Environmental and Chemical Engineering, Shenyang Ligong University, Shenyang 110159, China.

Shaanxi Province Key Laboratory of Bio-Resources, Qinling-Bashan Mountains Bioresources Comprehensive Development C.I.C, State Key Laboratory of Biological Resources and Ecological Environment Jointly Built by Qinba Province and Ministry, College of Biological Science & Engineering, Shaanxi University of Technology, Hanzhong 723001, China.

出版信息

Toxics. 2023 Feb 27;11(3):227. doi: 10.3390/toxics11030227.

Abstract

Though L. has been confirmed to be a potential Cd hyperaccumulator, the accumulation mechanism is not yet clear. The dynamic and real-time uptake of Cd influx by root apexes was determined using non-invasive micro-test technology (NMT), which partly explored the influencing factors of the Cd hyperaccumulation mechanism under the conditions of different exogenous nutrient ions. The results indicated that Cd influxes at 300 μm around the root tips decreased under Cd treatments with 16 mM Ca, 8 mM Mg, 0.5 mM Fe, 8 mM SO or 18 mM K compared to single Cd treatments. The Cd treatments with a high concentration of nutrient ions showed an antagonistic effect on Cd uptake. However, Cd treatments with 1 mM Ca, 0.5 mM Mg, 0.5 mM SO or 2 mM K had no effect on the Cd influxes as compared with single Cd treatments. It is worth noting that the Cd treatment with 0.05 mM Fe markedly increased Cd influxes. The addition of 0.05 mM Fe exhibited a synergistic effect on Cd uptake, which could be low concentration Fe rarely involved in blocking Cd influx and often forming an oxide membrane on the root surface to help the Cd uptake by . The results also showed that Cd treatments with high concentration of nutrient ions significantly increased the concentrations of chlorophyll and carotenoid in leaves and the root vigor of relative to single Cd treatments. Our research provides novel perspectives with respect to Cd uptake dynamic characteristics by roots under different exogenous nutrient ion levels, and shows that the addition of 0.05 mM Fe could promote the phytoremediation efficiency for .

摘要

尽管已证实L.是一种潜在的镉超积累植物,但其积累机制尚不清楚。利用非损伤微测技术(NMT)测定了根尖对镉流入的动态实时吸收情况,这在一定程度上探索了不同外源营养离子条件下镉超积累机制的影响因素。结果表明,与单一镉处理相比,在添加16 mM钙、8 mM镁、0.5 mM铁、8 mM硫酸根或18 mM钾的镉处理下,根尖周围300μm处的镉流入量降低。高浓度营养离子的镉处理对镉吸收表现出拮抗作用。然而,与单一镉处理相比,添加1 mM钙、0.5 mM镁、0.5 mM硫酸根或2 mM钾的镉处理对镉流入量没有影响。值得注意的是,添加0.05 mM铁的镉处理显著增加了镉流入量。添加0.05 mM铁对镉吸收表现出协同效应,这可能是因为低浓度铁很少参与阻止镉流入,且常于根表面形成氧化膜以帮助L.吸收镉。结果还表明,与单一镉处理相比,高浓度营养离子的镉处理显著提高了叶片中叶绿素和类胡萝卜素的含量以及L.的根系活力。我们的研究为不同外源营养离子水平下L.根系对镉吸收的动态特征提供了新的视角,并表明添加0.05 mM铁可提高L.的植物修复效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9779/10054121/282df28b7284/toxics-11-00227-g001.jpg

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