Phototrophic marine benthic microbiomes: the ecophysiology of these biological entities.

Lucas J Stal, Henk Bolhuis, Mariana S Cretoiu

Journal: Environmental microbiology 2020;21(5):1529-1551

PMID: 30507057

Abstract

Phototrophic biofilms are multispecies, self-sustaining and largely closed microbial ecosystems. They form macroscopic structures such as microbial mats and stromatolites. These sunlight-driven consortia consist of a number of functional groups of microorganisms that recycle the elements internally. Particularly, the sulfur cycle is discussed in more detail as this is fundamental to marine benthic microbial communities and because recently exciting new insights have been obtained. The cycling of elements demands a tight tuning of the various metabolic processes and require cooperation between the different groups of microorganisms. This is likely achieved through cell-to-cell communication and a biological clock. Biofilms may be considered as a macroscopic biological entity with its own physiology. We review the various components of some marine phototrophic biofilms and discuss their roles in the system. The importance of extracellular polymeric substances (EPS) as the matrix for biofilm metabolism and as substrate for biofilm microorganisms is discussed. We particularly assess the importance of extracellular DNA, horizontal gene transfer and viruses for the generation of genetic diversity and innovation, and for rendering resilience to external forcing to these biological entities.

© 2018 Society for Applied Microbiology and John Wiley & Sons Ltd.

Address: IBED Department of Freshwater and Marine Ecology, University of Amsterdam, Amsterdam, The Netherlands.; Department of Marine Microbiology and Biogeochemistry, and Utrecht University, Netherlands Institute for Sea Research, Den Burg, Texel, The Netherlands.; Bigelow Laboratory for Ocean Sciences, East Boothbay, ME, 04544, USA.
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