Surface-layer protein is a public-good matrix exopolymer for microbial community organisation in environmental anammox biofilms

Author:

Li Wong Lan12ORCID,Lu Yang3ORCID,Ho James Chin Shing1,Mugunthan Sudarsan12,Law Yingyu1,Conway Patricia14,Kjelleberg Staffan124ORCID,Seviour Thomas15ORCID

Affiliation:

1. Singapore Centre for Environmental Life Sciences Engineering, Nanyang Technological University , Singapore 637551, Singapore

2. School of Biological Sciences, Nanyang Technological University , Singapore 637551, Singapore

3. The Australian Centre for Ecogenomics, School of Chemistry and Molecular Biosciences, The University of Queensland , St Lucia, QLD 4072, Australia

4. School of Biological, Earth and Environmental Sciences, University of New South Wales Sydney , Sydney 2052, Australia

5. WATEC Aarhus University Centre for Water Technology , Universitetsbyen 36, Bldg 1783, 8000 Aarhus, Denmark

Abstract

Abstract Extracellular polymeric substances (EPS) are core biofilm components, yet how they mediate interactions within and contribute to the structuring of biofilms is largely unknown, particularly for non-culturable microbial communities that predominate in environmental habitats. To address this knowledge gap, we explored the role of EPS in an anaerobic ammonium oxidation (anammox) biofilm. An extracellular glycoprotein, BROSI_A1236, from an anammox bacterium, formed envelopes around the anammox cells, supporting its identification as a surface (S-) layer protein. However, the S-layer protein also appeared at the edge of the biofilm, in close proximity to the polysaccharide-coated filamentous Chloroflexi bacteria but distal to the anammox bacterial cells. The Chloroflexi bacteria assembled into a cross-linked network at the edge of the granules and surrounding anammox cell clusters, with the S-layer protein occupying the space around the Chloroflexi. The anammox S-layer protein was also abundant at junctions between Chloroflexi cells. Thus, the S-layer protein is likely transported through the matrix as an EPS and also acts as an adhesive to facilitate the assembly of filamentous Chloroflexi into a three-dimensional biofilm lattice. The spatial distribution of the S-layer protein within the mixed species biofilm suggests that it is a “public-good” EPS, which facilitates the assembly of other bacteria into a framework for the benefit of the biofilm community, and enables key syntrophic relationships, including anammox.

Funder

Ministry of Education - Singapore

Nanyang Technological University

National Research Foundation Singapore

Publisher

Oxford University Press (OUP)

Subject

Ecology, Evolution, Behavior and Systematics,Microbiology

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