Exploring the interaction between polystyrene nanoplastics and Allium cepa during germination: Internalization in root cells, induction of toxicity and oxidative stress

遗传毒性 发芽 内化 有丝分裂指数 微核试验 氧化应激 分生组织 化学 根尖 生物物理学 毒性 植物 园艺 生物 开枪 有丝分裂 细胞生物学 生物化学 细胞 有机化学
作者
Lucia Giorgetti,Carmelina Spanò,Simonetta Muccifora,Stefania Bottega,Francesco Barbieri,Lorenza Bellani,Monica Ruffini Castiglione
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:149: 170-177 被引量:299
标识
DOI:10.1016/j.plaphy.2020.02.014
摘要

With the aim to investigate the mechanisms of action of nano plastics (nano PS) on plants, seeds of Allium cepa were germinated for 72 h in the presence of polystyrene nano PS (50 nm size, at concentrations of 0.01, 0.1 and 1 g L−1) and, subsequently, roots were analysed by a multifaceted approach. No effect was induced by any concentration of nano PS on the percentage of seed germination while root growth was inhibited by 0.1 and 1 g L−1 nano PS. Cytological analysis of the root meristems indicated cytotoxicity (reduction of mitotic index) and genotoxicity (induction of cytogenetic anomalies and micronuclei) starting from the lowest dose. Moreover, the biochemical and histochemical analysis of oxidative stress markers gave evidence of stress induction, especially at the highest doses. Damages reported could be due to mechanical surface contact in root external layers, as evidenced by histological localization, and to the internalization of nano PS in different cellular compartments, observed under TEM. The present research underlines the hazardous nature of nano PS, that for their ability to be internalized into crop plants, can enter into different trophic levels of the food chain.
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