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低密度聚乙烯微塑料对海洋微藻角毛藻的交互副作用。

Interactive adverse effects of low-density polyethylene microplastics on marine microalga Chaetoceros calcitrans.

作者信息

Senousy Hoda H, Khairy Hanan M, El-Sayed Heba S, Sallam Eman R, El-Sheikh Mohamed A, Elshobary Mostafa E

机构信息

Botany and Microbiology Department, Faculty of Science, Cairo University, Giza, 12613, Egypt.

National Institute of Oceanography and Fisheries, NIOF, Egypt.

出版信息

Chemosphere. 2023 Jan;311(Pt 2):137182. doi: 10.1016/j.chemosphere.2022.137182. Epub 2022 Nov 7.

Abstract

Low-density polyethylene (LDPE) is broadly utilized worldwide, increasing more dramatically during the COVID-19 pandemic, and the majority ends up in the aquatic environment as microplastics. The influence of polyethylene microplastics (LDPE-MPs) on aquatic ecosystems still needs further investigation, especially on microalgae as typical organisms represented in all aquatic systems and at the base of the trophic chain. Thereby, the biological and toxicity impacts of LDPE-MPs on Chaetoceros calcitrans were examined in this work. The results revealed that LDPE-MPs had a concentration-dependent adverse effect on the growth and performance of C. calcitrans. LDPE-MPs contributed the maximum inhibition rates of 85%, 51.3%, 21.49% and 16.13% on algal growth chlorophyll content, φPSII and F/F, respectively. The total protein content, superoxide dismutase (SOD), catalase (CAT) and peroxidase (POD) activities were significantly increased at 25 mg L LDPE-MPs by 1.37, 3.52, 2.75 and 1.84 folds higher than those of the controls to sustain the adverse effects of LDPE-MPs. Extracellular polymeric substance (EPS) and monosaccharides contents of C. calcitrans were improved under low concentration of LDPE-MPs, which could facilitate the adsorption of MPs particles on the microalgae cell wall. This adsorption caused significant physical damage to the algal cell structure, as observed by SEM. These results suggest that the ecological footprint of MPs may require more attention, particularly due to the continuing breakdown of plastics in the ecosystem.

摘要

低密度聚乙烯(LDPE)在全球范围内被广泛使用,在新冠疫情期间其使用量增长更为显著,并且大部分最终以微塑料的形式进入水生环境。聚乙烯微塑料(LDPE-MPs)对水生生态系统的影响仍需进一步研究,尤其是对微藻的影响,微藻是所有水生系统中典型的生物,处于营养链的基础位置。因此,本研究考察了LDPE-MPs对钙化角毛藻的生物学和毒性影响。结果表明,LDPE-MPs对钙化角毛藻的生长和性能具有浓度依赖性的不利影响。LDPE-MPs对藻类生长、叶绿素含量、光系统II有效量子产量(φPSII)和最大光化学效率(F/Fm)的最大抑制率分别为85%、51.3%、21.49%和16.13%。在25 mg/L LDPE-MPs处理下,总蛋白含量、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和过氧化物酶(POD)活性显著增加,分别比对照组高1.37、3.52、2.75和1.84倍,以维持对LDPE-MPs不利影响的耐受性。在低浓度LDPE-MPs处理下,钙化角毛藻的胞外聚合物(EPS)和单糖含量有所提高,这可能有助于微塑料颗粒吸附在微藻细胞壁上。扫描电子显微镜观察发现,这种吸附对藻类细胞结构造成了显著的物理损伤。这些结果表明,微塑料的生态足迹可能需要更多关注,特别是由于塑料在生态系统中持续分解。

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