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Early Colonization of Weathered Polyethylene by Distinct Bacteria in Marine Coastal Seawater.


ABSTRACT: Plastic debris in aquatic environments is rapidly colonized by a diverse community of microorganisms, often referred to as the "Plastisphere." Given that common plastics are derived from fossil fuels, one would expect that Plastispheres should be enriched with obligate hydrocarbon-degrading bacteria (OHCB). So far, though, different polymer types do not seem to exert a strong effect on determining the composition of the Plastisphere, and putative biodegrading bacteria are only found as rare taxa within these biofilms. Here, we show through 16S rRNA gene sequencing that the enrichment of a prominent OHCB member on weathered and non-weathered polyethylene only occurred at early stages of colonization (i.e., after 2 days of incubation in coastal marine water; 5.8% and 3.7% of relative abundance, respectively, vs. 0.6% on glass controls). As biofilms matured, these bacteria decreased in relative abundance on all materials (

SUBMITTER: Erni-Cassola G 

PROVIDER: S-EPMC7176602 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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Early Colonization of Weathered Polyethylene by Distinct Bacteria in Marine Coastal Seawater.

Erni-Cassola Gabriel G   Wright Robyn J RJ   Gibson Matthew I MI   Christie-Oleza Joseph A JA  

Microbial ecology 20190829 3


Plastic debris in aquatic environments is rapidly colonized by a diverse community of microorganisms, often referred to as the "Plastisphere." Given that common plastics are derived from fossil fuels, one would expect that Plastispheres should be enriched with obligate hydrocarbon-degrading bacteria (OHCB). So far, though, different polymer types do not seem to exert a strong effect on determining the composition of the Plastisphere, and putative biodegrading bacteria are only found as rare taxa  ...[more]

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