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热带沿海和海洋环境中塑料碎片上的沉积物驱动的塑料质圈群落组装。

Sediment-driven plastisphere community assembly on plastic debris in tropical coastal and marine environments.

机构信息

Singapore Centre for Environmental Life Sciences Engineering, Nanyang Technological University, Singapore.

Singapore Centre for Environmental Life Sciences Engineering, Nanyang Technological University, Singapore; School of Civil and Environmental Engineering, Nanyang Technological University, Singapore.

出版信息

Environ Int. 2023 Sep;179:108153. doi: 10.1016/j.envint.2023.108153. Epub 2023 Aug 16.

Abstract

Coastal habitats have been suggested to serve as a sink for unaccounted plastic debris, i.e., "missing plastic" in the sea, and hence, a hotspot of plastic pollution in the marine and coastal environments. Although the accumulation of plastic debris may pose significant threats to coastal ecosystems, we know little about the fate of these plastic debris and their ecological impacts due to the lack of studies on plastic-microbe interactions in coastal habitats, especially for the tropical marine and coastal environments. In this study, we collected plastic debris from 14 sites consisting of various coastal ecosystems (seagrass meadows, mangrove forests, and beaches), and marine ecosystem (coral reef) around Singapore and characterized the prokaryotic and eukaryotic microbial communities colonized on them. Our results showed that the composition of plastisphere communities in these intertidal ecosystems was predominantly influenced by the sediment than by the plastic materials. Compared with surrounding sediment and seawater, the plastic debris enriched potential plastic degraders, such as Muricauda, Halomonas, and Brevundimonas. The plastic debris was also found to host taxa that play significant roles in biogeochemical cycles (e.g., cyanobacteria, Erythrobacter), hygienically relevant bacteria (e.g., Chryseobacterium, Brevundimonas), and potential pathogens that may negatively impact the health of coastal ecosystems (e.g., Thraustochytriaceae, Labyrinthulaceae, Flavobacterium). Taken together, our study provides valuable insights into the plastic-microbe interactions in tropical coastal and marine ecosystems, highlighting the urgent need for plastisphere studies to understand the fate and ecological impacts of plastic debris accumulated in coastal habitats.

摘要

沿海生境被认为是未被记录的塑料碎片(即海洋中的“失踪塑料”)的汇,因此也是海洋和沿海环境中塑料污染的热点区域。尽管塑料碎片的积累可能对沿海生态系统构成重大威胁,但由于缺乏对沿海生境中塑料-微生物相互作用的研究,我们对这些塑料碎片的命运及其生态影响知之甚少,尤其是在热带海洋和沿海环境中。在这项研究中,我们从新加坡周围的各种沿海生态系统(海草草甸、红树林和海滩)和海洋生态系统(珊瑚礁)中收集了 14 个地点的塑料碎片,并对其附着的原核和真核微生物群落进行了特征描述。我们的结果表明,这些潮间带生态系统中塑料圈群落的组成主要受沉积物的影响,而不是塑料材料的影响。与周围的沉积物和海水相比,塑料碎片富集了潜在的塑料降解菌,如 Muricauda、Halomonas 和 Brevundimonas。还发现塑料碎片上存在在生物地球化学循环中发挥重要作用的分类群(如蓝藻、Erythrobacter)、与卫生相关的细菌(如 Chryseobacterium、Brevundimonas)以及可能对沿海生态系统健康产生负面影响的潜在病原体(如 Thraustochytriaceae、Labyrinthulaceae、Flavobacterium)。总之,我们的研究提供了有关热带沿海和海洋生态系统中塑料-微生物相互作用的有价值的见解,强调了迫切需要进行塑料圈研究,以了解在沿海生境中积累的塑料碎片的命运和生态影响。

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