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Marine biofilms on artificial surfaces: structure and dynamics

Environmental Microbiology · 2013 · Vol. 15(11) · pp. 2879–2893
Maria SaltaJ.A. WhartonYves BlacheK.R. StokesJean‐François Briand

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.

Marine Biology and Environmental ChemistryMarine Ecology and Invasive SpeciesMarine Biology and Ecology ResearchBiofilmBiofoulingBiologyMarine bacteriophageColonizationEcologyComposition (language)Bacteria

MeSH terms

BacteriaDisinfectantsSporesSurface PropertiesDiatomsBiofilms

Funding

  • Defence Science and Technology Laboratory
Citations
436
FWCI
29.90
field-weighted impact
References
108
Percentile
100%
vs. same field & year
Citations per year
References
Quorum sensing: the many languages of bacteria
FEMS Microbiology Letters · 2005 · 428 citations
Bacterial biofilms: from the Natural environment to infectious diseases
Nature Reviews Microbiology · 2004 · 6,971 citations
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