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氧化锌纳米颗粒对水飞蓟中抗氧化剂、叶绿素含量和脯氨酸的影响及其对 Pb 的植物修复潜力。

Effects of zinc oxide nanoparticles on antioxidants, chlorophyll contents, and proline in Persicaria hydropiper L. and its potential for Pb phytoremediation.

机构信息

Department of Biotechnology, University of Malakand, KP, Chakdara, 18800, Pakistan.

School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou, 510275, China.

出版信息

Environ Sci Pollut Res Int. 2021 Jul;28(26):34697-34713. doi: 10.1007/s11356-021-13132-0. Epub 2021 Mar 3.

DOI:10.1007/s11356-021-13132-0
PMID:33655481
Abstract

Applications of nanoparticles and plants for efficient restoration of heavy metal-polluted water and soil are an emerging approach and need to be explored. Hydroponic study was performed to find the role of zinc oxide nanoparticles (ZnO NPs) in plant growth, antioxidative response, and lead (Pb) accumulation in Persicaria hydropiper. Seedlings were grown in Pb-polluted media amended with 5, 10, 15, and 20 mg L ZnO NPs. Inductively coupled plasma spectroscopy (ICP) was used for Pb analysis in plant tissues. Pb significantly inhibited seedling growth, and ZnO NPs alleviated Pb-induced stress by promoting plant growth, and improved chlorophyll and carotenoid contents. Oxidative stress ameliorated in ZnO NPs exposed seedlings through enhanced production of free proline, phenolics, flavonoids, and activation of antioxidative enzymes. Pb accumulation boosted in ZnO NP treatments, and highly significant increase in Pb accumulation in roots (255.60±4.80 mg kg), stem (124.07±2.84 mg kg), and leaves (92.00±3.22 mg kg) was observed in T3 (15 mg L ZnO NPs) for P. hydropiper. Contrarily, ZnO NPs at 20 mg L dose suppressed plant growth, Pb accumulation, secondary metabolites, and antioxidative enzyme activities. Moreover, positive correlation was found in Pb accumulation with free proline and secondary metabolite contents in plant tissues. These results suggest that ZnO NPs at optimum concentration may augment efficacy of plants to remove heavy metal from polluted water through nanophytoremediation.

摘要

应用纳米颗粒和植物来高效修复重金属污染的水和土壤是一种新兴的方法,需要进一步探索。进行了水培研究,以确定氧化锌纳米颗粒(ZnO NPs)在水蓑衣植物生长、抗氧化响应和铅(Pb)积累中的作用。将幼苗在添加 5、10、15 和 20 mg L ZnO NPs 的 Pb 污染培养基中生长。电感耦合等离子体光谱法(ICP)用于植物组织中的 Pb 分析。Pb 显著抑制了幼苗的生长,而 ZnO NPs 通过促进植物生长、提高叶绿素和类胡萝卜素含量来缓解 Pb 诱导的胁迫。在暴露于 ZnO NPs 的幼苗中,通过增加游离脯氨酸、酚类、类黄酮的产生和激活抗氧化酶来改善氧化应激。在 ZnO NPs 处理中,Pb 的积累增加,在 T3(15 mg L ZnO NPs)中观察到 Pb 在水蓑衣的根(255.60±4.80 mg kg)、茎(124.07±2.84 mg kg)和叶(92.00±3.22 mg kg)中的积累显著增加。相比之下,20 mg L ZnO NPs 抑制了植物的生长、Pb 积累、次生代谢物和抗氧化酶活性。此外,在植物组织中 Pb 积累与游离脯氨酸和次生代谢物含量之间发现了正相关关系。这些结果表明,在最佳浓度下,ZnO NPs 可能通过纳米植物修复增强植物从污染水中去除重金属的功效。

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