Delacuvellerie Alice, Ballerini Tosca, Frère Laura, Matallana-Surget Sabine, Dumontet Bruno, Wattiez Ruddy
Proteomics and Microbiology department, University of Mons, 20 place du parc, 7000 Mons, Belgium.
Expédition MED, 4 Allée des Avettes, 56230 Questembert, France.
Mar Pollut Bull. 2022 Jun;179:113660. doi: 10.1016/j.marpolbul.2022.113660. Epub 2022 Apr 20.
Plastics accumulate in the environment and the Mediterranean Sea is one of the most polluted sea in the world. The plastic surface is rapidly colonized by microorganisms, forming the plastisphere. Our unique sampling supplied 107 plastic pieces from 22 geographical sites from four aquatic ecosystems (river, estuary, harbor and inshore) in the south of France in order to better understand the parameters which influence biofilm composition. In parallel, 48 enrichment cultures were performed to investigate the presence of plastic degrading-bacteria in the plastisphere. In this context, we showed that the most important drivers of microbial community structure were the sampling site followed by the polymer chemical composition. The study of pathogenic genus distribution highlighted that only 11% of our plastic samples contained higher proportions of Vibrio compared to the natural environment. Finally, results of the enrichment cultures showed a selection of hydrocarbon-degrading microorganisms suggesting their potential role in the plastic degradation.
塑料在环境中不断累积,地中海是世界上污染最严重的海域之一。塑料表面会迅速被微生物定殖,形成塑料圈。我们通过独特的采样,从法国南部四个水生生态系统(河流、河口、港口和近海)的22个地理位点采集了107个塑料碎片,以便更好地了解影响生物膜组成的参数。与此同时,进行了48次富集培养,以研究塑料圈中是否存在可降解塑料的细菌。在此背景下,我们发现微生物群落结构的最重要驱动因素是采样位点,其次是聚合物化学成分。对致病属分布的研究表明,与自然环境相比,我们的塑料样本中只有11%含有较高比例的弧菌。最后,富集培养的结果显示筛选出了可降解碳氢化合物的微生物,这表明它们在塑料降解中可能发挥作用。