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(PFOS) from soil to plants [J]. Archives of Environmental concerns: Crop breeding as a potential strategy to address
Contamination and Toxicologyꎬ 57(2): 289-298. issues associated with the recently lowered reference doses for
THOMPSON JGꎬ MCNAUGHTON Cꎬ GASPARRINI Bꎬ et al.ꎬ perfluorooctanoic acid and perfluorooctane sulfonate [ J].
2000. Effect of inhibitors and uncouplers of oxidative Journal of Agricultural and Food Chemistryꎬ 68(1): 48-58.
phosphorylation during compaction and blastulation of bovine XIANG Lꎬ QIU Jꎬ CHEN QQꎬ et al.ꎬ 2023. Developmentꎬ
embryos cultured in vitro [J]. Journal of Reproduction and evaluation and application of machine learning models for
Fertilityꎬ 118(1): 47-55. accurate prediction of root uptake of pe ̄ and poly ̄fluoroalkyl
UNEPꎬ 2019. Listing of perfluorooctanoic acid ( PFOA)ꎬ its substances [ J ]. Environmental Science & Technologyꎬ
salts and PFOA ̄related compoundsꎻ UNEP / POP / COP. 9/ 57(46): 18317-18328.
SC-9/ 12 [ EB/ OL]. ( 2019 - 12 - 16) [ 2025 - 01 - 08]. XING YDꎬ ZHOU Yꎬ ZHANG Xꎬ et al.ꎬ 2023. The sources and
https:/ / chm. pops. int/ The Convention/ Conference of the bioaccumulation of per ̄ and polyfluoroalkyl substances in
Parties/ Meetings/ COP9/ tabid/ 7521/ Default.aspx. animal ̄derived foods and the potential risk of dietary intake
WANG Qꎬ ZHAO Zꎬ RUAN Yꎬ et al.ꎬ 2018. Occurrence and [J]. Science of the Total Environmentꎬ 905: 167313.
distribution of perfluorooctanoic acid ( PFOA ) and YANG Xꎬ YE Cꎬ LIU Yꎬ et al.ꎬ 2015. Accumulation and
perfluorooctane sulfonic acid (PFOS) in natural forest soils: phytotoxicity of perfluorooctanoic acid in the model plant
A nationwide study in China [ J]. Science of the Total species Arabidopsis thaliana [J]. Environmental Pollutionꎬ
Environmentꎬ 645: 596-602. 206: 560-566.
WANG TTꎬ YING GGꎬ HE LYꎬ et al.ꎬ 2020a. Uptake YOO Hꎬ WASHINGTON JWꎬ JENKINS TMꎬ et al.ꎬ 2011.
mechanismꎬ subcellular distributionꎬ and uptake process of Quantitative determination of perfluorochemicals and
perfluorooctanoic acid and perfluorooctane sulfonic acid by fluorotelomer alcohols in plants from biosolid ̄amended fields
wetland plant Alisma orientale [ J]. Science of the Total using LC/ MS/ MS and GC/ MS [J]. Environmental Science
Environmentꎬ 733: 139383. & Technologyꎬ 45(19): 7985.
WANG TTꎬ YING GGꎬ SHI WJꎬ et al.ꎬ 2020b. Uptake and YULIKASARI Aꎬ TANGAHU BVꎬ NURHAYATI Eꎬ et al.ꎬ
translocation of perfluorooctanoic acid ( PFOA ) and 2024. A comprehensive review of integrated phytoremediation
perfluorooctane sulfonic acid ( PFOS) by wetland plants: and nanoparticle methods for heavy metal in red mud
Tissue ̄ and cell ̄level distribution visualization with [J]. Ecotoxicology and Environmental Safetyꎬ 288: 117381.
desorption electrospray ionization mass spectrometry (DESI ̄ YU PFꎬ LI YWꎬ ZOU LJꎬ et al.ꎬ 2021. Variety ̄selective
MS) and transmission electron microscopy equipped with rhizospheric activationꎬ uptakeꎬ and subcellular distribution
energy ̄dispersive spectroscopy ( TEM ̄EDS ) [ J ]. of perfluorooctane sulfonate ( PFOS) in lettuce ( Lactuca
Environmental Science & Technologyꎬ 54(10): 6009-6020. sativa L.) [ J ]. Environmental Science & Technologyꎬ
WANG ZYꎬ BOUCHER JMꎬ SCHERINGER Mꎬ et al.ꎬ 55(13): 8730-8741.
2017. Toward a comprehensive global emission inventory of YU PFꎬ XIANG Lꎬ LI XHꎬ et al.ꎬ 2018. Cultivar ̄dependent
C ̄4 ̄C ̄10 perfluoroalkane sulfonic acids ( PFSAs ) and accumulation and translocation of perfluorooctane sulfonate
related precursors: focus on the life cycle of C ̄8 ̄based among lettuce ( Lactuca sativa L.) cultivars grown on
products and ongoing industrial transition [J]. Environmental perfluorooctane sulfonate ̄contaminated soil [ J]. Journal of
Science & Technologyꎬ 51(8): 4482-4493. Agricultural and Food Chemistryꎬ 66(50): 13096-13106.
WEN Bꎬ LI LFꎬ LIU Yꎬet al.ꎬ 2013. Mechanistic studies of ZHANG Pꎬ SUN LLꎬ LIU Fꎬ et al.ꎬ 2022. Perfluorooctanoic
perfluorooctane sulfonateꎬ perfluorooctanoic acid uptake by acid and perfluorooctane sulfonic acid inhibit plant growth
maize (Zea mays L. cv. TY2) [J]. Plant and Soilꎬ 370(1/ through the modulation of phytohormone signalling pathways:
2): 345-354. Evidence from molecular and genetic analysis in Arabidopsis
WEN Bꎬ WU YLꎬ ZHANG HNꎬ et al.ꎬ 2016. The roles of [J]. Science of the Total Environmentꎬ 851: 158287.
protein and lipid in the accumulation and distribution of ZHAN XHꎬ MA HLꎬ ZHOU LXꎬ et al.ꎬ 2010. Accumulation of
perfluorooctane sulfonate ( PFOS) and perfluorooctanoate phenanthrene by roots of intact wheat (Triticum acstivnm L.)
( PFOA ) in plants grown in biosolids ̄amended soils seedlings: Passive or active uptake [J]. BMC Plant Biologyꎬ
[J]. Environmental Pollutionꎬ 216: 682-688. 10: 52.
XIANG Lꎬ CHEN Lꎬ YU Lꎬ et al.ꎬ 2018. Genotypic variation ZHAO SPꎬ YAN Lꎬ KAMRAN Mꎬ et al.ꎬ 2024. Arbuscular
and mechanism in uptake and translocation of mycorrhizal fungi ̄assisted phytoremediation: A promising
perfluorooctanoic acid ( PFOA) in lettuce ( Lactuca sativa strategy for cadmium ̄contaminated soils [ J ]. Plantsꎬ
L.) cultivars grown in PFOA ̄polluted soils [J]. Science of 13: 3289.
the Total Environmentꎬ 636: 999-1008. ZHONG Yꎬ SHEN Lꎬ YE Xꎬ et al.ꎬ 2020. Mechanism of
XIANG Lꎬ CHEN XTꎬ YU PFꎬ et al.ꎬ 2020a. Oxalic acid in immunosuppression in zebrafish ( Danio rerio ) spleen
root exudates enhances accumulation of perfluorooctanoic induced by environmentally relevant concentrations of
acid in lettuce [J]. Environmental Science & Technologyꎬ perfluorooctanoic acid [J]. Chemosphereꎬ 249: 126200.
54(20): 13046-13055.
XIANG Lꎬ LI YWꎬ YU PFꎬ et al.ꎬ 2020b. Food safety (责任编辑 蒋巧媛 王登惠)

