Higher Institute of Fishery and Aquaculture of Bizerte, University of Carthage, Tunisia.
University of Carthage, Faculty of Sciences of Bizerte, Laboratory of Environment Biomonitoring, Coastal Ecology and Ecotoxicology Unit, 7021 Zarzouna, Tunisia.
Mar Pollut Bull. 2023 Sep;194(Pt A):115390. doi: 10.1016/j.marpolbul.2023.115390. Epub 2023 Aug 12.
The current experiment measured the multifaceted effects of polystyrene and fluoranthene, acting alone or in a mixture on marine meiofauna, but with a special focus on nematodes' morphological and functional traits. The results showed changes in the abundances for all tested concentrations of both compounds. The nematode communities exposed to the highest concentrations of fluoranthene (30 ng.g Dry Weight (DW)) and polystyrene (100 mg.kg DW) alone or in a mixture, were significantly less diverse compared to control and were associated with significant changes in the percentage of taxonomic composition and feeding-guilds. The most sensitive taxa to fluoranthene comprised epistratum feeders, whereas the nematodes mostly affected by polystyrene were omnivores-carnivores. A new functional tool, the Index of Sensitivity (IOS), proved to be reliable in depicting the changes that occurred in the taxonomic and functional features of the nematofauna.
当前实验测量了聚苯乙烯和荧蒽单独或混合作用于海洋小型后生动物的多方面影响,但特别关注线虫形态和功能特征的变化。结果表明,所有测试浓度的两种化合物的丰度都发生了变化。与对照相比,暴露于荧蒽(30ng.g 干重 (DW))和聚苯乙烯(100mg.kg DW)最高浓度单独或混合的线虫群落的多样性显著降低,并且与分类组成和摄食群的百分比的显著变化相关。对荧蒽最敏感的类群是表生食者,而受聚苯乙烯影响最大的线虫是杂食-肉食者。一种新的功能工具,敏感性指数 (IOS),被证明能够可靠地描述线虫动物区系的分类和功能特征发生的变化。