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Open AccessJournal ArticleDOI

Marine biofilms on artificial surfaces: structure and dynamics

TLDR
Overall, differences have been identified in species composition between biofilm and planktonic forms for both diatoms and bacteria at various exposure sites, and issues such as reproducibility, differences in exposure sites and biofilm composition may influence the outcomes.
Abstract
The search for new antifouling (AF) coatings that are environmentally benign has led to renewed interest in the ways that micro-organisms colonize substrates in the marine environment. This review covers recently published research on the global species composition and dynamics of marine biofilms, consisting mainly of bacteria and diatoms found on man-made surfaces including AF coatings. Marine biofilms directly interact with larger organisms (macrofoulers) during colonization processes; hence, recent literature on understanding the basis of the biofilm/macrofouling interactions is essential and will also be reviewed here. Overall, differences have been identified in species composition between biofilm and planktonic forms for both diatoms and bacteria at various exposure sites. In most studies, the underlying biofilm was found to induce larval and spore settlement of macrofoulers; however, issues such as reproducibility, differences in exposure sites and biofilm composition (natural multispecies vs. monospecific species) may influence the outcomes.

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Microbial Ecotoxicology of Marine Plastic Debris: A Review on Colonization and Biodegradation by the "Plastisphere".

TL;DR: A critical view of the extent to which marine microorganisms can participate in the decomposition of plastic in the oceans and of the relevance of current standard tests for plastic biodegradability at sea is given.
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Evidence of niche partitioning among bacteria living on plastics, organic particles and surrounding seawaters.

TL;DR: Bacterial counts in PMD presented higher cell enrichment factors than generally observed for PA fraction, when compared to FL bacteria in the surrounding waters, and the community distinction between the three habitats was consistent across the large-scale sampling in the Western Mediterranean basin.
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Microplastics in the environment: Interactions with microbes and chemical contaminants

TL;DR: The distribution of MPs, the association of toxic chemicals with MPs, microbial association with MPs and the microbial-induced fate of MPs in the environment are discussed and the biodegradation and bioaccumulation of MPs by and in microbes and its potential impact on the food chain are reviewed.
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Marine Biofilms: A Successful Microbial Strategy With Economic Implications

TL;DR: The costs to maritime transport, aquaculture, oil and gas industries, desalination plants and other industries are significant which has led to the development of various strategies to prevent biofilm formation and cleaning of infected surfaces.
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Colonization of Non-biodegradable and Biodegradable Plastics by Marine Microorganisms.

TL;DR: This study investigated the different steps of plastic colonization of polyolefin-based plastics and highlighted different trends between polymer types with distinct surface properties and composition, with the biodegradable AA-OXO and PHBV presenting higher colonization by active and specific bacteria compared to non-biodesgradable polymers (PE and OXO).
References
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Journal ArticleDOI

Bacterial biofilms : A common cause of persistent infections

TL;DR: Improvements in understanding of the genetic and molecular basis of bacterial community behavior point to therapeutic targets that may provide a means for the control of biofilm infections.
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Phylogenetic identification and in situ detection of individual microbial cells without cultivation.

TL;DR: Phylogenetic analysis of the retrieved rRNA sequence of an uncultured microorganism reveals its closest culturable relatives and may, together with information on the physicochemical conditions of its natural habitat, facilitate more directed cultivation attempts.
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Bacterial biofilms: from the natural environment to infectious diseases.

TL;DR: It is evident that biofilm formation is an ancient and integral component of the prokaryotic life cycle, and is a key factor for survival in diverse environments.
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QUORUM SENSING: Cell-to-Cell Communication in Bacteria

TL;DR: This review focuses on the architectures of bacterial chemical communication networks; how chemical information is integrated, processed, and transduced to control gene expression; how intra- and interspecies cell-cell communication is accomplished; and the intriguing possibility of prokaryote-eukaryote cross-communication.
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Microbial Biofilms: from Ecology to Molecular Genetics

TL;DR: The recent explosion in the field of biofilm research has led to exciting progress in the development of new technologies for studying these communities, advanced the authors' understanding of the ecological significance of surface-attached bacteria, and provided new insights into the molecular genetic basis ofBiofilm development.
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