Micro- and Nano-Plastics Induced Release of Protein-Enriched Microbial Exopolymeric Substances (EPSs) in Marine Environments

Wei-Chun Chin, Peter H. Santschi, Antonietta Quigg, Chen Xu, Peng Lin, Manoj Kamalanathan
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Abstract

Plastics are produced, consumed, and disposed of worldwide, with more than eight million tons of plastic litter entering the ocean each year. Plastic litter accumulates in marine and terrestrial environments through a variety of pathways. Large plastic debris can be broken down into micro- and nano-plastic particles through physical/mechanical mechanisms and biologically or chemically mediated degradation. Their toxicity to aquatic organisms includes the scavenging of pollutant compounds and the production of reactive oxygen species (ROS). Higher levels of ROS cause oxidative damages to microalgae and bacteria; this triggers the release of large amounts of exopolymeric substances (EPSs) with distinct molecular characteristics. This review will address what is known about the molecular mechanisms phytoplankton and bacteria use to regulate the fate and transport of plastic particles and identify the knowledge gaps, which should be considered in future research. In particular, the microbial communities react to plastic pollution through the production of EPSs that can reduce the plastic impacts via marine plastic snow (MPS) formation, allowing plastics to settle into sediments and facilitating their removal from the water column to lessen the plastic burden to ecosystems.
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微塑料和纳米塑料诱导海洋环境中富含蛋白质的微生物外聚合物质 (EPS) 的释放
全世界都在生产、消费和丢弃塑料,每年有 800 多万吨塑料垃圾进入海洋。塑料垃圾通过各种途径在海洋和陆地环境中积累。大型塑料垃圾可通过物理/机械机制以及生物或化学介导的降解作用分解成微型和纳米塑料微粒。它们对水生生物的毒性包括清除污染物和产生活性氧(ROS)。较高水平的 ROS 会对微藻和细菌造成氧化损伤;从而引发大量具有独特分子特征的外聚物质 (EPS)的释放。本综述将探讨浮游植物和细菌用于调节塑料微粒的归宿和迁移的分子机制,并找出在未来研究中应考虑的知识差距。特别是,微生物群落通过产生 EPSs 对塑料污染做出反应,EPSs 可通过形成海洋塑料雪(MPS)来减少塑料的影响,使塑料沉降到沉积物中,促进塑料从水体中清除,从而减轻塑料对生态系统造成的负担。
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