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聚乙烯对土壤理化性质及甘薯生长和聚乙烯吸收特性的影响。

Impact of polyethylene on soil physicochemical properties and characteristics of sweet potato growth and polyethylene absorption.

机构信息

College of Life Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

College of Life Sciences, Nanjing Agricultural University, Nanjing, 210095, China; National Joint Local Engineering Research Center for Rural Land Resources Use and Consolidation, Nanjing Agricultural University, Nanjing, 210095, China; The Collaborated Lab. of Plant Molecular Ecology (between College of Life Sciences of Nanjing Agricultural University and Asian Natural Environmental Science Center of the University of Tokyo), Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Chemosphere. 2022 Sep;302:134734. doi: 10.1016/j.chemosphere.2022.134734. Epub 2022 Apr 27.

Abstract

Microplastic (MP) pollution problem is severe in China. As the main component of mulch film, whether polyethylene (PE) poses a threat to the safe production of sweet potato is unknown. In this study, micron-sized original or weathered PE was simulated as the field film particles, and pot, hydroponic experiment were conducted to explore the effects of original and weathered MPs on physicochemical properties in soil, growth and phosphorus (P), potassium (K) absorption in sweet potato; P and K adsorption in liquid environment, and also the distribution of original MPs in sweet potato tissues respectively. The results showed that 5 μm original PE MPs significantly reduced pH (5.6-7.9%) and increased EC (6.0-12.1%) of soil compared to weathered PE MPs. In addition, original PE MPs can also significantly improved the biomass growth rates (5.9-19.0%) of sweet potato compared with weathered PE MPs by adsorbing more Olsen-P and Olsen-K in soil, and increasing K concentration in stems compared with control (17.1-55.4%). Although there was no significant difference between original and weathered PE MPs on the degree of membrane lipid peroxidation in sweet potato leaves, the original PE MPs made sweet potato exhibit the stronger oxidative stress. The tissue distribution of PE MPs-fluorescent spheres were only observed in cortical tissues of roots and stems. Results from our study suggest that sweet potato were not significantly affected by a short term exposure to single PE MPs.

摘要

微塑料(MP)污染问题在中国十分严重。作为地膜的主要成分,聚乙烯(PE)是否会对甘薯安全生产构成威胁尚不清楚。本研究模拟田间地膜颗粒,采用原膜和风化膜,通过盆栽和水培实验,研究了原膜和风化膜 MPs 对土壤理化性质、甘薯生长和磷(P)、钾(K)吸收的影响;在液体环境中 P、K 的吸附以及原膜 MPs 在甘薯组织中的分布。结果表明,与风化膜 MPs 相比,5μm 原膜 PE MPs 显著降低了土壤 pH 值(5.6-7.9%),增加了土壤电导率(6.0-12.1%)。此外,原膜 PE MPs 通过吸附更多土壤中的 Olsen-P 和 Olsen-K,以及增加茎部 K 浓度(17.1-55.4%),与对照相比,还显著提高了甘薯的生物量增长率(5.9-19.0%)。尽管原膜和风化膜 PE MPs 对甘薯叶片膜脂过氧化程度的影响没有显著差异,但原膜 PE MPs 使甘薯表现出更强的氧化应激。PE 膜 MPs-荧光球的组织分布仅在根和茎的皮层组织中观察到。本研究结果表明,甘薯在短期暴露于单一 PE MPs 下未受到显著影响。

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