Breaking the Ice: From Antarctic Biofouling Colonization to Plastisphere-Mediated Ecological Risks

A synthesis of current knowledge on the composition and dynamics of marine biofouling, and its role in altering the ecological setting of Southern Ocean benthic communities, is presented here. Current research on biofouling focuses on two main drivers of change: the introduction of invasive marine species (IMS) via hull biofouling, and plastic debris, and the dispersal of antibiotic-resistant bacteria through the development of microbial biofilms, often mediated by the persistence of artificial substrates. Despite the logistical difficulties of conducting experimental studies in such a harsh polar environment, macrofouling communities have been found to display high levels of complexity, a feature also observed within microbial communities. Macrofouling assemblages are dominated by bryozoans and spirorbid polychaetes; however, colonization by these communities is extremely slow compared to temperate regions. The emerging role of plastic-associated microbial biofilms (plastisphere) as novel ecological niches in Antarctic waters is also addressed. These microbial assemblages may act as reservoirs and potential dispersal vectors of antibiotic resistance, raising new concerns regarding ecosystem health under increasing anthropogenic pressure and climate-driven environmental changes.

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Publication Details

Journal
Environments
Published
2026-09-28
DOI
https://doi.org/10.3390/environments13100538
Primary Topic
Marine Biology and Environmental Chemistry
Type
article
Field-Weighted Citation Impact
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article

Breaking the Ice: From Antarctic Biofouling Colonization to Plastisphere-Mediated Ecological Risks

Ombretta Dell’Acqua, Cinzia Gravili, Adriana Giangrande, Gabriella Caruso et al.
Environments
Marine Biology and Environmental Chemistry
article

Breaking the Ice: From Antarctic Biofouling Colonization to Plastisphere-Mediated Ecological Risks

Ombretta Dell’Acqua, Cinzia Gravili, Adriana Giangrande, Gabriella Caruso, María Cristina Gambi, Pasqualina Laganà, Francesco Smedile, Maurizio Azzaro, Conxita Àvila, Luigi Musco
article en

Abstract

A synthesis of current knowledge on the composition and dynamics of marine biofouling, and its role in altering the ecological setting of Southern Ocean benthic communities, is presented here. Current research on biofouling focuses on two main drivers of change: the introduction of invasive marine species (IMS) via hull biofouling, and plastic debris, and the dispersal of antibiotic-resistant bacteria through the development of microbial biofilms, often mediated by the persistence of artificial substrates. Despite the logistical difficulties of conducting experimental studies in such a harsh polar environment, macrofouling communities have been found to display high levels of complexity, a feature also observed within microbial communities. Macrofouling assemblages are dominated by bryozoans and spirorbid polychaetes; however, colonization by these communities is extremely slow compared to temperate regions. The emerging role of plastic-associated microbial biofilms (plastisphere) as novel ecological niches in Antarctic waters is also addressed. These microbial assemblages may act as reservoirs and potential dispersal vectors of antibiotic resistance, raising new concerns regarding ecosystem health under increasing anthropogenic pressure and climate-driven environmental changes.

EnvironmentsVol. 13(10)
University of Messina (IT), University of Salento (IT), CoNISMa (IT), National Research Council (IT), National Institute of Oceanography and Applied Geophysics (IT), Istituto di Scienze Polari (IT), Universitat de Barcelona (ES), University of Genoa (IT)
Life below water, Climate action
Openalex Percentile: Top 16%
Marine Biology and Environmental Chemistry
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