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聚乙烯微塑料对微藻(螺旋藻)的影响。

Impacts of polyethylene microplastics on the microalga, Spirulina (Arthrospira platensis).

机构信息

Department of Earth Sciences, School of Science, Shiraz University, Shiraz, 71454, Iran; Centre for Environmental Studies and Emerging Pollutants (ZISTANO), Shiraz University, Shiraz, 714545, Iran.

Department of Biology, School of Science, Shiraz University, Shiraz, 71454, Iran.

出版信息

Environ Pollut. 2023 Jun 15;327:121611. doi: 10.1016/j.envpol.2023.121611. Epub 2023 Apr 8.

Abstract

Microalgae play a critical role in the food web and biogeochemical cycling and produce compounds that are commercially exploited. However, their reactions and responses to microplastic contamination are not well understood. In this study, the widely distributed and commercially important cyanobacterium, Spirulina (Arthrospira platensis), was exposed to different concentrations (1-100 mg L) of low-density polyethylene microplastics (<5 μm) over a 20-d period. Various end-points were combined with different microscopic techniques in order to examine physiological and biochemical effects and interactions between the plastic and microalga. Growth rate and photosynthetic activity decreased with increasing microplastic concentration, and a maximum inhibition ratio of about 9% was calculated from optical density measurements. Plastic concentrations above 10 mg L resulted in oxidative stress and the intracellular production of proline. Fragmentation and swelling of trichomes and attachment of microplastics was observed in the exposures, and microplastics appeared to adhere or aggregate around fragmented or fragmenting regions. The latter effect may indicate trichome weakening by microplastics or their concentration around cytosolic debris; nevertheless, it provides a potential mechanism for internalisation of small particles. Although unrealistically high concentrations of well-defined microplastics have been employed, relatively small disruptions at the population level incurred by lower concentrations could have more serious implications for ecosystem services and functioning.

摘要

微藻在食物网和生物地球化学循环中起着至关重要的作用,并产生商业上可利用的化合物。然而,它们对微塑料污染的反应和响应还不是很清楚。在这项研究中,广泛分布且具有商业重要性的蓝藻(Spirulina,Arthrospira platensis)被暴露于不同浓度(1-100mg/L)的低密度聚乙烯微塑料(<5μm)中超过 20 天。为了研究塑料和微藻之间的相互作用以及生理生化效应,将各种终点与不同的显微镜技术结合使用。随着微塑料浓度的增加,生长速率和光合作用活性下降,从光密度测量中计算出最大抑制率约为 9%。在浓度高于 10mg/L 的塑料中,会导致氧化应激和细胞内脯氨酸的产生。在暴露实验中观察到了藻丝的片段化和肿胀以及微塑料的附着,微塑料似乎附着或聚集在片段化或正在片段化的区域周围。后一种效应可能表明微塑料削弱了藻丝,或者它们在胞质碎片周围聚集;然而,这为微塑料内部化提供了一个潜在的机制。尽管使用了不切实际的高浓度定义明确的微塑料,但较低浓度在种群水平上造成的相对较小的干扰可能对生态系统服务和功能产生更严重的影响。

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