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稀土元素扰乱拟南芥的根系结构和离子稳态。

Rare earth elements perturb root architecture and ion homeostasis in Arabidopsis thaliana.

作者信息

Grosjean Nicolas, Blaudez Damien, Chalot Michel, Flayac Justine, Gross Elisabeth M, Le Jean Marie

机构信息

Université de Lorraine, CNRS, LIEC, F-54000 Nancy, France.

Université de Lorraine, CNRS, LIEC, F-54000 Nancy, France.

出版信息

J Hazard Mater. 2024 Apr 15;468:133701. doi: 10.1016/j.jhazmat.2024.133701. Epub 2024 Feb 3.

DOI:10.1016/j.jhazmat.2024.133701
PMID:38364576
Abstract

Rare earth elements (REEs) are crucial elements for current high-technology and renewable energy advances. In addition to their increasing usage and their low recyclability leading to their release into the environment, REEs are also used as crop fertilizers. However, little is known regarding the cellular and molecular effects of REEs in plants, which is crucial for better risk assessment, crop safety and phytoremediation. Here, we analysed the ionome and transcriptomic response of Arabidopsis thaliana exposed to a light (lanthanum, La) and a heavy (ytterbium, Yb) REE. At the transcriptome level, we observed the contribution of ROS and auxin redistribution to the modified root architecture following REE exposure. We found indications for the perturbation of Fe homeostasis by REEs in both roots and leaves of Arabidopsis suggesting competition between REEs and Fe. Furthermore, we propose putative ways of entry of REEs inside cells through transporters of microelements. Finally, similar to REE accumulating species, organic acid homeostasis (e.g. malate and citrate) appears critical as a tolerance mechanism in response to REEs. By combining ionomics and transcriptomics, we elucidated essential patterns of REE uptake and toxicity response of Arabidopsis and provide new hypotheses for a better evaluation of the impact of REEs on plant homeostasis.

摘要

稀土元素(REEs)是当前高科技和可再生能源发展的关键元素。除了其使用量不断增加以及低可回收性导致其释放到环境中之外,稀土元素还被用作农作物肥料。然而,关于稀土元素对植物的细胞和分子影响知之甚少,而这对于更好地进行风险评估、作物安全和植物修复至关重要。在此,我们分析了暴露于轻稀土(镧,La)和重稀土(镱,Yb)的拟南芥的离子组和转录组反应。在转录组水平上,我们观察到活性氧(ROS)和生长素重新分布对稀土元素暴露后根系结构改变的作用。我们发现有迹象表明稀土元素在拟南芥的根和叶中均扰乱了铁稳态,这表明稀土元素与铁之间存在竞争。此外,我们提出了稀土元素通过微量元素转运蛋白进入细胞的推测途径。最后,与积累稀土元素的物种类似,有机酸稳态(例如苹果酸和柠檬酸)作为对稀土元素的耐受机制似乎至关重要。通过结合离子组学和转录组学,我们阐明了拟南芥吸收稀土元素和毒性反应的基本模式,并为更好地评估稀土元素对植物稳态的影响提供了新的假设。

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