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The Plastisphere – Uncovering tightly attached plastic “specific” microorganisms

2019/04/23 by Inga V. Kirstein, Antje Wichels, Elisabeth Gullans +2 · 2 citations
Environmental Science · #Microplastics and Plastic Pollution #Recycling and Waste Management Techniques

paper · doi:10.1371/journal.pone.0215859

openalex publication_date 2019/04/23 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/31

Abstract

In order to understand the degradation potential of plastics in the marine environment, microorganisms that preferentially colonize and interact with plastic surfaces, as opposed to generalists potentially colonising everything, need to be identified. Accordingly, it was hypothesized that i.) plastic "specific" microorganisms are closely attached to the polymeric surface and ii.) that specificity of plastics biofilms are rather related to members of the rare biosphere. To answer these hypotheses, a three phased experiment to stepwise uncover closely attached microbes was conducted. In Phase 1, nine chemically distinct plastic films and glass were incubated in situ for 21 months in a seawater flow through system. In Phase 2, a high-pressure water jet treatment technique was used to remove the upper biofilm layers to further, in Phase 3, enrich a plastic "specific" community. To proof whether microbes colonizing different plastics are distinct from each other and from other inert hard substrates, the bacterial communities of these different substrates were analysed using 16S rRNA gene tag sequencing. Our findings indicate that tightly attached microorganisms account to the rare biosphere and suggest the presence of plastic "specific" microorganisms/assemblages which could benefit from the given plastic properties or at least grow under limited carbon resources.

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