Department of Molecular Biology, Ariel University, Ariel, Israel.
Israel Oceanographic and Limnological Research, National Institute of Oceanography, Tel Shikmona, Haifa, Israel.
Sci Rep. 2024 Oct 30;14(1):26131. doi: 10.1038/s41598-024-73281-3.
Marine plastic pollution poses a growing environmental threat, with microplastics accumulating in the global oceans. This study profiles the seasonal dynamics and taxonomic composition of the plastisphere, the microplastic ecosystem, in the Eastern Mediterranean Sea. Using long-read 16 S and 18 S metabarcoding, we analyzed offshore microplastic and whole seawater samples across each season over a two-year period. The analysis revealed a higher richness of prokaryotic communities on microplastics compared to seawater, which was predominantly composed of Proteobacteria and Bacteroidota and exhibited notable seasonal variability. Benthic eukaryotes were enriched on microplastics compared to the surrounding seawater. Diatoms (Bacillariophyceae), in particular, showed significant enrichment within the microplastic eukaryotic community with primarily pennate diatoms of Amphora, Navicula, and Nitzschia genera, whereas the seawater included mostly centric diatoms. Seasonal fluctuations were less pronounced in the microplastic communities than in seawater, highlighting the relative stability of this new human-made ecosystem. These findings underscore the unique ecological niche of microplastic-associated communities in marine environments.
海洋塑料污染构成了日益严重的环境威胁,微塑料在全球海洋中不断积累。本研究描绘了东地中海海洋塑料圈内(微塑料生态系统)的季节性动态和分类组成。我们使用长读 16S 和 18S 宏条形码分析了两年间每个季节的近海微塑料和全海水样本。分析显示,与海水相比,微塑料上的原核生物群落丰富度更高,主要由变形菌门和拟杆菌门组成,且表现出显著的季节性变化。与周围海水相比,底栖真核生物在微塑料上更为丰富。与微塑料真核生物群落中明显富集的硅藻(硅藻门),尤其是舟形藻属、舟形藻属和菱形藻属的羽纹硅藻,而海水中主要包含中心硅藻。微塑料群落的季节性波动比海水小,突出了这个新的人为生态系统的相对稳定性。这些发现强调了海洋环境中与微塑料相关的群落的独特生态位。