4.8 Article

Convection and the Extracellular Matrix Dictate Inter- and Intra-Biofilm Quorum Sensing Communication in Environmental Systems

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 54, Issue 11, Pages 6730-6740

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.0c00716

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Funding

  1. Singapore Centre for Environmental Life Science Engineering (SCELSE) - National Research Foundation Singapore
  2. National University of Singapore, under its Research Centre of Excellence Programme
  3. Ministry of Education
  4. Nanyang Technological University

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The mechanisms and impact of bacterial quorum sensing (QS) for the coordination of population-level behaviors are well studied under laboratory conditions. However, it is unclear how, in otherwise open environmental systems, QS signals accumulate to sufficient concentration to induce QS phenotypes, especially when quorum quenching (QQ) organisms are also present. We explore the impact of QQ activity on QS signaling in spatially organized biofilms in scenarios that mimic open systems of natural and engineered environments. Using a functionally differentiated biofilm system, we show that the extracellular matrix, local flow, and QQ interact to modulate communication. In still aqueous environments, convection facilitates signal dispersal while the matrix absorbs and relays signals to the cells. This process facilitates inter-biofilm communication even at low extracellular signal concentrations. Within the biofilm, the matrix further regulates the transport of the competing QS and QQ molecules, leading to heterogenous QS behavior. Importantly, only extracellular QQ enzymes can effectively control QS signaling, suggesting that the intracellular QQ enzymes may not have evolved to degrade environmental QS signals for competition.

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