Microalgae colonization and trace element accumulation on the plastisphere of marine plastic debris in Monastir Bay (Eastern Tunisia)

被引:0
作者
Mondher Tarchi
Noureddine Zaaboub
Majed Alsubih
Bochra Brik
Maria Virgínia Alves Martins
Lotfi Aleya
Lamia Trabelsi
机构
[1] National Institute of Marine Sciences and Technology (INSTM),Marine Biodiversity Laboratory
[2] 2025 Salammbo,Marine Environment Laboratory
[3] University of Carthage,Department of Civil Engineering
[4] National Institute of Marine Sciences and Technology (INSTM),Faculdade de Geologia
[5] University of Carthage,GeoBioTec, Departamento de Geociencias, Campus de Santiago
[6] King Khalid University,Laboratoire de Chrono
[7] Universidade Do Estado Do Rio de Janeiro,Environnement, UMR CNRS 6249
[8] UERJ,undefined
[9] Universidade de Aveiro,undefined
[10] Université de Bourgogne Franche-Comté,undefined
来源
Environmental Science and Pollution Research | 2023年 / 30卷
关键词
Marine plastic debris; Plastisphere; Epiplastic microalgae; Potentially harmful microalgae; Potentially toxic elements;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, we examined the toxicity potential of the epiplastic microalgal community that developed on low-density polyethylene (LD-PE) plastic debris found in two distinct regions of the Monastir Bay (Tunisia): the coast exposed to anthropogenic discharges and the open sea in front of the Kuriat Islands. Concentrations of potentially toxic elements (PTEs) accumulated in sediments and plastisphere were compared in order to determine their toxicity potential to biological life. The collected plastispheres were predominantly composed of cyanobacteria, chlorophytes, and diatoms. Diatoms display a relatively high diversity (25 species). At all stations, potentially harmful microalgae (PHM) were more abundant in the plastisphere than in seawater and the coastal zone seems to harbour increased number of potentially harmful cyanobacteria within the plastisphere. At the offshore station S1, the PHM community was dominated by the potentially harmful diatoms belonging to the genus Pseudo-nitzschia. Phormidium sp. was the main potentially harmful cyanobacterium identified in the plastisphere of S1. PTEs concentration in the plastisphere was higher than in sediment and ranking with very high contamination factors at all sites according to the sequence Pb > Cu > Cd > Ni > Zn. The highest accumulation of PTEs in the plastisphere was recorded near harbors and industrial zones with important human interference. This work shows that plastisphere can be a threat to vulnerable species not only because it can contain PHM but also because it can accumulate PTEs.
引用
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页码:32427 / 32451
页数:24
相关论文
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