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◆ Eco-Environment & Health2026-01-08· Pectin

Charge-selective polystyrene nanoplastic retention by plant cell walls: Pectin domains dictate differential accumulation in rice seedling roots and shoots

Chaofa Chen, Kanglu Chen, Qingqing Wu, Yan Lin, Yuxiao Shao, Miaozhen Cai, Yongming Luo, Hua Zhang

原始摘要(英文原文)· Original abstract
The escalating global plastic pollution necessitates urgent investigation into the distribution and accumulation pathways of nanoplastics (NPs) in crops to assess their threats to food security. Here, we reveal that plant cell walls serve as a charge-selective barrier governing the differential uptake of polystyrene (PS) NPs with distinct surface charges (PS-COOH NPs and PS-NH 2 NPs) in rice. Quantitative tracking showed that PS-COOH NPs accumulated 1.84- and 4.43-fold more in roots and shoots, respectively, than PS-NH 2 , with >92% of both NPs restricted to roots. Crucially, root cell walls selectively retained NPs based on charge: PS-NH 2 NPs accumulated 1.91–2.45-fold more than PS-COOH NPs within walls, primarily through binding to pectin (74.04%–87.28% sequestration). Furthermore, NPs induced cell wall remodeling, including pectin enrichment, hemicellulose I deposition, thereby reinforcing charge-selective retention and differential uptake. These findings reveal an adaptive mechanism of plant cell walls under NPs stress and provide mechanistic insights into charge-dependent NPs accumulation pathways in edible crops. • PS-NH 2 NPsexhibits higher rice phytotoxicity than PS-COOH NPs. • PS-COOH NPs accumulates more in rice than PS-NH 2 NPs. • Cell wall selectively retains more PS-NH 2 NPs than PS-COOH NPs. • Pectin captures the most nanoparticles among cell wall components. • PS-NH 2 NPs more strongly affects cell wall remodeling.
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Charge-selective polystyrene nanoplastic retention by plant cell walls: Pectin domains dictate differential accumulation in rice seedling roots and shoots — 科研速览 Science Skim