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◆ Environmental science & technology2026-09-01

Unveiling Underlying Mechanisms of Root Uptake, Bidirectional Translocation, and Biotransformation of Tire Rubber-Derived 6PPD and 6PPD-Q in Wheat (Triticum aestivum L.): Implications by Nontarget Screening, Transcriptomics, and Molecular Docking.

Shuaihao Liu, Guoguang Wang, Qing Qin, Aoduo Yang, Haiyue Chen, Jingya Zhang, Jiameng Hou, Guangzhi Rong, Qiao Ma, Haixia Wang, Yu Liu

原始摘要(英文原文)· Original abstract
N-(1,3-Dimethylbutyl)-N'-phenyl-p-phenylenediamine (6PPD) and its derivative 6PPD-quinone (6PPD-Q) are emerging pollutants in the environment due to widespread usage of tire rubber-related products, yet their uptake, translocation, and biotransformation behaviors in plants remain elusive. Here, we systematically investigated the uptake, translocation, and biotransformation mechanisms of 6PPD and 6PPD-Q in wheat. Results demonstrated that 6PPD and 6PPD-Q could be taken up by roots via apoplastic and symplastic pathways. Transmembrane transport of 6PPD and 6PPD-Q was found to enter the vascular bundle in roots, which was mediated by water and anion channels for 6PPD, and anion channel and energy-dependent active transport for 6PPD-Q. Split-root experiments revealed the bidirectional translocation of 6PPD and 6PPD-Q between roots and shoots, and secretion back into the environment from roots. Furthermore, four degradation products, including 6PPD-Q, were detected for 6PPD via nontarget screening. Transcriptomic and molecular docking analysis consistently indicated that the aquaporins and NRT2 transporter participated in root uptake of 6PPD and 6PPD-Q, respectively, and the SWEET transporter mediated their translocation in shoots. In addition, CYP450 enzymes were involved in the biotransformation of 6PPD to 6PPD-Q. Our findings verify the bioaccumulation and biotransformation of 6PPD and 6PPD-Q in plants, which highlight attention to the transfer of tire antioxidants along the food chain.
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Unveiling Underlying Mechanisms of Root Uptake, Bidirectional Translocation, and Biotransformation of Tire Rubber-Derived 6PPD and 6PPD-Q in Wheat (Triticum aestivum L.): Implications by Nontarget Screening, Transcriptomics, and Molecular Docking. — 科研速览 Science Skim