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聚苯乙烯纳米塑料暴露对体外培养的甜叶菊植株的影响。

Effects of polystyrene nanoplastics exposure on in vitro-grown Stevia rebaudiana plants.

作者信息

Coman Vasile, Scurtu Violeta-Florina, Coman Cristina, Clapa Doina, Iancu Ștefania D, Leopold Nicolae, Leopold Loredana-Florina

机构信息

Faculty of Food Science and Technology, University of Agricultural Sciences and Veterinary Medicine, 3-5 Calea Mănăștur, 400372, Cluj-Napoca, Romania; Life Sciences Institute, University of Agricultural Sciences and Veterinary Medicine, 3-5 Calea Mănăștur, 400372, Cluj-Napoca, Romania.

Life Sciences Institute, University of Agricultural Sciences and Veterinary Medicine, 3-5 Calea Mănăștur, 400372, Cluj-Napoca, Romania.

出版信息

Plant Physiol Biochem. 2023 Apr;197:107634. doi: 10.1016/j.plaphy.2023.03.011. Epub 2023 Mar 8.

Abstract

Nanoplastics (NPs) as environmental contaminants have received increased attention in recent years. Numerous studies have suggested possible negative effects of plants exposure to NPs, but more data are needed with various plants under different exposure conditions to clarify the underlying phytotoxicity mechanisms. In this study, we investigated the effect of polystyrene nanoplastics (PSNPs; 28.65 nm average diameter) exposure (10, 100 and 250 mg/L) on plant morphology and production of relevant metabolites (steviol glycosides, chlorophylls, carotenoids, and vitamins) of in vitro-grown Stevia rebaudiana plantlets. Additionally, we used dark field microscopy combined with fluorescence hyperspectral imaging for the visualization of internalized PSNPs inside plant tissues. At higher concentrations (>100 mg/L), PSNPs were shown to aggregate in roots and to be transported to leaves, having a significantly negative impact on plant growth (reduced size and biomass), while increasing the production of metabolites compared to controls, most probably because of response to stress. The production of steviol glycosides presented a biphasic dose-response suggestive of hormesis, with the highest values at 10 mg/L PSNPs (1.5-2.2-fold increase compared to controls), followed by a decline in production at higher concentrations (100 and 250 mg/L), but with values comparable to controls. These results are promising for future in vivo studies evaluating the effect of NP exposure on the production of steviol glycosides, the natural sweeteners from stevia.

摘要

作为环境污染物的纳米塑料(NPs)近年来受到了越来越多的关注。众多研究表明植物接触纳米塑料可能产生负面影响,但需要更多不同植物在不同暴露条件下的数据来阐明潜在的植物毒性机制。在本研究中,我们调查了聚苯乙烯纳米塑料(PSNPs;平均直径28.65纳米)暴露(10、100和250毫克/升)对体外培养的甜叶菊幼苗的植物形态以及相关代谢产物(甜菊糖苷、叶绿素、类胡萝卜素和维生素)生成的影响。此外,我们使用暗场显微镜结合荧光高光谱成像来观察植物组织内内化的PSNPs。在较高浓度(>100毫克/升)下,PSNPs在根中聚集并转运到叶片,对植物生长产生显著负面影响(尺寸和生物量减小),同时与对照相比代谢产物生成增加,这很可能是应激反应的结果。甜菊糖苷的生成呈现双相剂量反应,表明存在 hormesis效应,在10毫克/升PSNPs时达到最高值(与对照相比增加1.5 - 2.2倍),随后在较高浓度(100和250毫克/升)下生成量下降,但仍与对照相当。这些结果对于未来评估纳米塑料暴露对甜菊糖苷(甜叶菊中的天然甜味剂)生成影响的体内研究很有前景。

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