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水培生菜中全氟和多氟烷基物质的吸收与转运研究

Insight into the uptake and translocation of per- and polyfluoroalkyl substances in hydroponically grown lettuce.

作者信息

Wang Wenfeng, Yuan Shu, Kwon Jung-Hwan

机构信息

Division of Environmental Science and Ecological Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Korea.

College of Agriculture, Shanxi Agricultural University, Shanxi, 080301, China.

出版信息

Environ Sci Pollut Res Int. 2022 Dec;29(56):85454-85464. doi: 10.1007/s11356-022-21886-4. Epub 2022 Jul 7.

Abstract

The prevalence of per- and polyfluoroalkyl substances (PFASs) in agricultural soils has raised concerns regarding the health risks associated with the consumption of PFAS-contaminated agricultural products. The present study investigated the uptake and translocation of nine PFASs in lettuce using a hydroponic setting. During the uptake experiments, long-chain PFASs (≥ C8) exhibited greater accumulations in lettuce roots, while short-chain PFASs (≤ C7) manifested preferential transport to the shoots. The average root concentration factors of PFASs were positively correlated with their log K values. A significantly negative relationship was found between the average translocation factors of PFASs and their molecular volume. Sorption of long-chain PFASs by lettuce roots was enhanced after heating the roots to increase the cell membrane permeability. The accumulation of perfluorododecanoic acid increased significantly in shoots of lettuce plants without roots as compared to whole lettuce plants. Results of the present study indicate that sorption to root surface tissues and efficiency in passing through the root Casparian strip are two important factors that affect the uptake and distribution of PFASs within plants.

摘要

农业土壤中全氟和多氟烷基物质(PFASs)的普遍存在引发了人们对食用受PFASs污染的农产品所带来健康风险的担忧。本研究利用水培环境研究了9种PFASs在生菜中的吸收和转运情况。在吸收实验中,长链PFASs(≥C8)在生菜根部的积累量更大,而短链PFASs(≤C7)则表现出向地上部的优先转运。PFASs的平均根富集系数与其log K值呈正相关。PFASs的平均转运系数与其分子体积之间存在显著的负相关关系。将根部加热以增加细胞膜通透性后,生菜根对长链PFASs的吸附增强。与完整生菜植株相比,无根生菜植株地上部全氟十二烷酸的积累显著增加。本研究结果表明,对根表面组织的吸附以及穿过根凯氏带的效率是影响PFASs在植物体内吸收和分布的两个重要因素。

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