Novel Insights into the Promoted Accumulation of Nitro-Polycyclic Aromatic Hydrocarbons in the Roots of Legume Plants

IF 10.8 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Huiqiang Yang, Xianglei Zhang, Chenghe Yan, Run Zhou, Jiahui Li, Siqian Liu, Zhiqiang Wang, Jian Zhou, Lingyan Zhu* and Hanzhong Jia*, 
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Abstract

Substituted polycyclic aromatic hydrocarbons (sub-PAHs) are receiving increased attention due to their high toxicity and ubiquitous presence. However, the accumulation behaviors of sub-PAHs in crop roots remain unclear. In this study, the accumulation mechanism of sub-PAHs in crop roots was systematically disclosed by hydroponic experiments from the perspectives of utilization, uptake, and elimination. The obtained results showed an interesting phenomenon that despite not having the strongest hydrophobicity among the five sub-PAHs, nitro-PAHs (including 9-nitroanthracene and 1-nitropyrene) displayed the strongest accumulation potential in the roots of legume plants, including mung bean and soybean. The nitrogen-deficient experiments, inhibitor experiments, and transcriptomics analysis reveal that nitro-PAHs could be utilized by legumes as a nitrogen source, thus being significantly absorbed by active transport, which relies on amino acid transporters driven by H+-ATPase. Molecular docking simulation further demonstrates that the nitro group is a significant determinant of interaction with an amino acid transporter. Moreover, the depuration experiments indicate that the nitro-PAHs may enter the root cells, further slowing their elimination rates and enhancing the accumulation potential in legume roots. Our results shed light on a previously unappreciated mechanism for root accumulation of sub-PAHs, which may affect their biogeochemical processes in soils.

Abstract Image

Abstract Image

豆科植物根部促进硝基多环芳香烃积累的新见解。
替代多环芳烃(sub-PAHs)因其毒性高且无处不在而受到越来越多的关注。然而,亚 PAHs 在作物根系中的积累行为仍不清楚。本研究通过水培实验,从利用、吸收和消除的角度系统地揭示了亚 PAHs 在作物根系中的积累机制。研究结果表明了一个有趣的现象:尽管在五种亚-PAHs 中,硝基-PAHs(包括 9-硝基蒽和 1-硝基芘)的疏水性不是最强的,但它们在绿豆和大豆等豆科植物根系中的积累潜力却最强。缺氮实验、抑制剂实验和转录组学分析表明,豆科植物可以利用硝基-PAHs 作为氮源,从而通过主动转运(依赖于 H+-ATPase 驱动的氨基酸转运体)显著吸收硝基-PAHs。分子对接模拟进一步证明,硝基是与氨基酸转运体相互作用的重要决定因素。此外,净化实验表明,硝基-PAHs 可能会进入根细胞,从而进一步减缓其消除速度,提高在豆科植物根中的积累潜力。我们的研究结果揭示了一种以前未被重视的亚-PAHs 根系积累机制,它可能会影响亚-PAHs 在土壤中的生物地球化学过程。
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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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