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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Environmental Sources Gut & Microbiome Marine & Wildlife Remediation Sign in to save

Identification of rare microbial colonizers of plastic materials incubated in a coral reef environment

Frontiers in Microbiology 2023 16 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Sebastian L. Singleton, Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Edward W. Davis, Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Holly K. Arnold, Susanne M. Brander Susanne M. Brander Thomas J. Sharpton, Susanne M. Brander An Mei Y. Daniels, Susanne M. Brander Sebastian L. Singleton, An Mei Y. Daniels, Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Rachel Parsons, Susanne M. Brander Thomas J. Sharpton, Susanne M. Brander Susanne M. Brander Susanne M. Brander Stephen J. Giovannoni, Thomas J. Sharpton, Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander Susanne M. Brander

Summary

An in situ time-series experiment at the Bermuda Platform examined bacterial community succession on polyolefin plastics in oligotrophic coral reef waters, identifying rare but specialized colonizers and isolating culturable bacteria capable of colonizing plastic surfaces.

Study Type Environmental

Plastic waste accumulation in marine environments has complex, unintended impacts on ecology that cross levels of community organization. To measure succession in polyolefin-colonizing marine bacterial communities, an <i>in situ</i> time-series experiment was conducted in the oligotrophic coastal waters of the Bermuda Platform. Our goals were to identify polyolefin colonizing taxa and isolate bacterial cultures for future studies of the biochemistry of microbe-plastic interactions. HDPE, LDPE, PP, and glass coupons were incubated in surface seawater for 11 weeks and sampled at two-week intervals. 16S rDNA sequencing and ATR-FTIR/HIM were used to assess biofilm community structure and chemical changes in polymer surfaces. The dominant colonizing taxa were previously reported cosmopolitan colonizers of surfaces in marine environments, which were highly similar among the different plastic types. However, significant differences in rare community composition were observed between plastic types, potentially indicating specific interactions based on surface chemistry. Unexpectedly, a major transition in community composition occurred in all material treatments between days 42 and 56 (<i>p</i> < 0.01). Before the transition, Alteromonadaceae, Marinomonadaceae, Saccharospirillaceae, Vibrionaceae, Thalassospiraceae, and Flavobacteriaceae were the dominant colonizers. Following the transition, the relative abundance of these taxa declined, while Hyphomonadaceae, Rhodobacteraceae and Saprospiraceae increased. Over the course of the incubation, 8,641 colonizing taxa were observed, of which 25 were significantly enriched on specific polyolefins. Seven enriched taxa from families known to include hydrocarbon degraders (Hyphomonadaceae, Parvularculaceae and Rhodobacteraceae) and one n-alkane degrader (<i>Ketobacter</i> sp.). The ASVs that exhibited associations with specific polyolefins are targets of ongoing investigations aimed at retrieving plastic-degrading microbes in culture.

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