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北大西洋垃圾带中的塑料:一种为搭便车者和塑料降解者提供便利的船载微生物。

Plastics in the North Atlantic garbage patch: A boat-microbe for hitchhikers and plastic degraders.

机构信息

Université Clermont Auvergne, CNRS, Laboratoire Microorganismes: Génome et Environnement, F-63000 Clermont-Ferrand, France.

Université Clermont Auvergne, CNRS, Laboratoire Microorganismes: Génome et Environnement, F-63000 Clermont-Ferrand, France.

出版信息

Sci Total Environ. 2017 Dec 1;599-600:1222-1232. doi: 10.1016/j.scitotenv.2017.05.059. Epub 2017 May 13.

DOI:10.1016/j.scitotenv.2017.05.059
PMID:28514840
Abstract

Plastic is a broad name given to different polymers with high molecular weight that impact wildlife. Their fragmentation leads to a continuum of debris sizes (meso to microplastics) entrapped in gyres and colonized by microorganisms. In the present work, the structure of eukaryotes, bacteria and Archaea was studied by a metabarcoding approach, and statistical analysis associated with network building was used to define a core microbiome at the plastic surface. Most of the bacteria significantly associated with the plastic waste originated from non-marine ecosystems, and numerous species can be considered as hitchhikers, whereas others act as keystone species (e.g., Rhodobacterales, Rhizobiales, Streptomycetales and Cyanobacteria) in the biofilm. The chemical analysis provides evidence for a specific colonization of the polymers. Alphaproteobacteria and Gammaproteobacteria significantly dominated mesoplastics consisting of poly(ethylene terephthalate) and polystyrene. Polyethylene was also dominated by these bacterial classes and Actinobacteria. Microplastics were made of polyethylene but differed in their crystallinity, and the majorities were colonized by Betaproteobacteria. Our study indicated that the bacteria inhabiting plastics harboured distinct metabolisms from those present in the surrounding water. For instance, the metabolic pathway involved in xenobiotic degradation was overrepresented on the plastic surface.

摘要

塑料是对具有高分子量、影响野生动物的不同聚合物的统称。它们的碎片化导致了一系列不同尺寸的碎片(中观到微观塑料)被困在漩涡中,并被微生物殖民化。在本工作中,通过宏条形码方法研究了真核生物、细菌和古菌的结构,并使用相关的统计分析和网络构建来定义塑料表面的核心微生物组。与塑料废物显著相关的大多数细菌都来自非海洋生态系统,许多物种可以被视为搭便车者,而其他物种则在生物膜中充当关键种(例如,红杆菌目、根瘤菌目、链霉菌目和蓝细菌)。化学分析为聚合物的特定定殖提供了证据。α变形菌纲和γ变形菌纲显著支配着由聚对苯二甲酸乙二醇酯和聚苯乙烯组成的中观塑料。聚乙烯也主要由这些细菌类群和放线菌纲组成。微塑料由聚乙烯组成,但结晶度不同,大多数由β变形菌纲殖民化。我们的研究表明,栖息在塑料上的细菌具有与周围水中不同的代谢途径。例如,在塑料表面上,涉及外来物质降解的代谢途径被过度表达。

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