Bocci Valerio, Galafassi Silvia, Levantesi Caterina, Crognale Simona, Amalfitano Stefano, Congestri Roberta, Matturro Bruna, Rossetti Simona, Di Pippo Francesca
Water Research Institute, CNR-IRSA, National Research Council, Rome, Italy.
PhD Program in Evolutionary Biology and Ecology, Department of Biology, University of Rome "Tor Vergata", Rome, Italy.
Front Microbiol. 2024 Apr 18;15:1395401. doi: 10.3389/fmicb.2024.1395401. eCollection 2024.
The plastisphere, a unique microbial biofilm community colonizing plastic debris and microplastics (MPs) in aquatic environments, has attracted increasing attention owing to its ecological and public health implications. This review consolidates current state of knowledge on freshwater plastisphere, focussing on its biodiversity, community assembly, and interactions with environmental factors. Current biomolecular approaches revealed a variety of prokaryotic and eukaryotic taxa associated with plastic surfaces. Despite their ecological importance, the presence of potentially pathogenic bacteria and mobile genetic elements (i.e., antibiotic resistance genes) raises concerns for ecosystem and human health. However, the extent of these risks and their implications remain unclear. Advanced sequencing technologies are promising for elucidating the functions of plastisphere, particularly in plastic biodegradation processes. Overall, this review emphasizes the need for comprehensive studies to understand plastisphere dynamics in freshwater and to support effective management strategies to mitigate the impact of plastic pollution on freshwater resources.
塑料球界是一种独特的微生物生物膜群落,它在水生环境中定殖于塑料碎片和微塑料(MPs)上,由于其对生态和公共健康的影响而受到越来越多的关注。本综述整合了关于淡水塑料球界的当前知识状态,重点关注其生物多样性、群落组装以及与环境因素的相互作用。当前的生物分子方法揭示了与塑料表面相关的各种原核生物和真核生物分类群。尽管它们具有生态重要性,但潜在致病细菌和移动遗传元件(即抗生素抗性基因)的存在引发了对生态系统和人类健康的担忧。然而,这些风险的程度及其影响仍不清楚。先进的测序技术有望阐明塑料球界的功能,特别是在塑料生物降解过程中。总体而言,本综述强调需要进行全面研究,以了解淡水环境中塑料球界的动态,并支持有效的管理策略,以减轻塑料污染对淡水资源的影响。