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December 12, 2025Journal of Agricultural and Food Chemistry4 citations

Visual Tracking and Quantitative Analysis of Polystyrene Nanoplastics Uptake and Transport across Various Tomato Varieties

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XSXiao-Dong SunInstitute of Plant ProtectionWLWenwen LiLinyi UniversityJPJiawen PanHuzhou University

Key Points

  • This research aims to identify tomato varieties that exhibit differential resistance to polystyrene nanoplastics while understanding their uptake mechanisms.
  • Investigated six tomato cultivars for PS-NPs uptake and transport
  • Measured growth inhibition percentage in response to PS-NPs exposure
  • Analyzed translocation factors of PS-NPs in different plant tissues
  • Conducted correlation analysis between root PS-NPs accumulation and plant growth
  • Heinz 1706 showed the highest resistance with 13% growth inhibition
  • Moneymaker was the most sensitive to PS-NPs with 32% inhibition
  • PS-NPs accumulated primarily in root tissues and near the xylem in stems and leaves
  • Ailsa Craig had the highest translocation factor at 4.0%

Abstract

The mechanisms by which plants respond to microplastic pollution are still unclear. To identify resistant varieties for elucidating these mechanisms, this study investigated the differential accumulation and resistance of six tomato cultivars to polystyrene nanoplastics (PS-NPs). Significant varietal differences were observed. Heinz 1706 was the most resistant (13% growth inhibition), while Moneymaker was the most sensitive (32% inhibition). PS-NPs content was significantly lower in shoots than in roots. In stems and leaves, PS-NPs accumulated near the xylem, whereas in roots, they were distributed across all tissues. Translocation factors (TF) also varied, with Ailsa Craig having the highest TF (4.0%) and M82 having the lowest TF (0.89%). Correlation analysis revealed a strong negative relationship between root PS-NPs accumulation and plant growth. These findings provided key insights into microplastic accumulation and resistance factors in plants, forming the foundation for future molecular and physiological studies.

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Cite This Study

Sun et al. (2025) studied this question.

synapsesocial.com/papers/694019192d562116f28f66fbhttps://doi.org/10.1021/acs.jafc.5c13778
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