聚苯乙烯微塑料在玉米种子萌发与幼苗生长过程中的吸收转运特征及毒害机制
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兰州大学生态学院

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国家重点研发计划项目(2024YFC3713900)资助


Characteristics and Mechanism of Polystyrene Microplastic Uptake and Transport in Maize Seeds and Seedlings
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State Key Laboratory of Herbage Innovation and Grassland Agro-ecosystems, College of Ecology, Lanzhou University

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Supported by the National Key Research and Development Programme of China (No. 2024YFC3713900)

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    摘要:

    为探究聚苯乙烯微塑料(PS-MPs)在梯度浓度与多粒径谱系中的内吞转运行为及生理毒性机制,以玉米为模式植物,设计种子萌发与水培胁迫实验,外源投加荧光标记PS-MPs,系统评估其对种子萌发和幼苗生长发育的抑制作用,并阐明其毒性作用机制。结果表明,玉米种子萌发及幼苗生长进程受微塑料胁迫的强度,呈现显著的浓度梯度效应与粒径依赖性规律。在种子萌发期,通过激光共聚焦电子显微镜观测发现,PS-MPs荧光微球主要聚集在胚根的根毛区域。此外,部分微球穿透了根表皮进入皮层组织,甚至抵达了负责水分和养分运输的木质部导管。这种在关键输导组织中的存在,干扰了种子的萌发过程并引发了氧化损伤。在幼苗时期,低浓度(20 mg·L-1)的PS-MPs荧光微球促进发芽,而中高浓度(50和100 mg·L-1)则抑制发芽。本研究证实了微塑料可被玉米吸收并向地上部转运,初步揭示了微塑料在玉米中的吸收和转移特征,进一步阐明了微塑料对玉米的毒害机理,为深入了解微塑料在植物中的迁移转化规律提供了重要的实验基础,也为评估其对农业生态和食品安全的影响提供了科学依据。

    Abstract:

    【Objective】This study aimed to investigate the absorption and transport characteristics and mechanism of microplastics of different concentrations and particle sizes in maize seeds and seedlings.【Method】Maize was used as the test material and fluorescent-labelled polystyrene microplastics (PS-MPs) microspheres were added to the seeds during germination and to the seedlings during hydroponic exposure. This platform quantified growth-suppressive impacts of the test compound on germinative capacity and early seedling establishment, and clarified its mechanism of action.【Result】The effects of microplastics on the germination of maize seeds and the growth of seedlings exhibited significant dependence on concentration and particle size. At the seed germination stage, when examined using laser confocal electron microscopy, it was found that PS-MPs fluorescent microspheres were enriched at the position of the root hairs on the embryonic root. Furthermore, some of the microspheres penetrated the root epidermis and entered the cortical tissue, ultimately reaching the xylem vessels that are responsible for transporting water and nutrients. Their presence in these critical conductive tissues disrupted the seed germination process and induced oxidative damage. This experiment demonstrated that low concentrations (20 mg·L-1) of fluorescent PS-MPs promoted germination, whereas medium-to-high concentrations (50 and 100 mg·L-1) inhibited it.【Conclusion】This study verified the internalization and shootward translocation of microplastics in maize plants and provided preliminary insights into the absorption and translocation characteristics of microplastics within maize plants. It also sheded light on the toxic mechanisms of microplastics on maize, providing a vital experimental basis for understanding the migration and transformation patterns of microplastics within plants, thus providing scientific evidence with which to assess the impact of microplastics on agricultural ecosystems and food safety.

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杨昌浪,惠亚云,李文杉,王鹏洋,赵泽瑛,熊友才.聚苯乙烯微塑料在玉米种子萌发与幼苗生长过程中的吸收转运特征及毒害机制[J].土壤学报,2026,63(2). DOI:10.11766/trxb202508150399 YANG Changlang, HUI Yayun, LI Wenshan, WANG Pengyang, ZHAO Zeying, Xiong Youcai. Characteristics and Mechanism of Polystyrene Microplastic Uptake and Transport in Maize Seeds and Seedlings[J]. Acta Pedologica Sinica,2026,63(2).

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  • 收稿日期:2025-08-15
  • 最后修改日期:2025-11-10
  • 录用日期:2025-12-01
  • 在线发布日期: 2025-12-02
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