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线虫 Oncholaimus campylocercoides De Coninck 和 Schuurmans Stekhoven, 1933 的功能特性和生化生物标志物是否会受到荧蒽和聚苯乙烯微塑料的影响?来自微宇宙生物测定和分子建模的结果。

Do functional traits and biochemical biomarkers of the nematode Oncholaimus campylocercoides De Coninck and Schuurmans Stekhoven, 1933 affected by fluoranthene and polystyrene microplastics? Results from a microcosm bioassay and molecular modeling.

机构信息

Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia.

出版信息

Mar Pollut Bull. 2023 Sep;194(Pt B):115294. doi: 10.1016/j.marpolbul.2023.115294. Epub 2023 Jul 26.

DOI:10.1016/j.marpolbul.2023.115294
PMID:37506479
Abstract

The current experiment measured the multifaceted effects of polystyrene and fluoranthene, acting alone or in a mixture, on the meiobenthic nematode species Oncholaimus campylocercoides. This Oncholaimid was first experimentally selected from an entire nematode assemblage taken from the Jeddah coasts (Saudi Arabia). Several discernible changes were found in morphometry and functional traits after exposure to single and combined treatments. An increase in the activity of the biochemical biomarkers catalase and glutathione S-transferase was also observed following the exposure of males and gravid females of O. campylocercoides to 37.5 ng fluoranthene·g dry weight (DW) and 62.5 mg polystyrene·kg DW paralleled by a higher vulnerability of females. Moreover, the reproduction and feeding of this species were impaired, starting from 37.5 ng fluoranthene·g and 62.5 mg polystyrene·kg, respectively. These results have been confirmed by good binding affinities and molecular interactions of fluoranthene and polystyrene with both GLD-3 and SDP receptors.

摘要

本实验测量了单独或混合存在的聚苯乙烯和荧蒽对从沙特阿拉伯吉达海岸采集的整个线虫组合中首次经实验筛选出的小型底栖线虫 Oncholaimus campylocercoides 的多方面影响。暴露于单一和混合处理后,在形态计量学和功能特征方面发现了几个明显的变化。暴露于 37.5ng 荧蒽·g 干重(DW)和 62.5mg 聚苯乙烯·kg DW 的雄性和妊娠雌性 O. campylocercoides 的生化生物标志物过氧化氢酶和谷胱甘肽 S-转移酶的活性增加,同时雌性的脆弱性更高。此外,从 37.5ng 荧蒽和 62.5mg 聚苯乙烯起,该物种的繁殖和摄食受到损害。这些结果得到了荧蒽和聚苯乙烯与 GLD-3 和 SDP 受体的良好结合亲和力和分子相互作用的证实。

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