Changes in the genetic requirements for microbial interactions with increasing community complexity.

Morin, Manon; Pierce, Emily C; Dutton, Rachel J · Elife · 2018

basic_science · Level V

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Abstract

Microbial community structure and function rely on complex interactions whose underlying molecular mechanisms are poorly understood. To investigate these interactions in a simple microbiome, we introduced <i>E. coli</i> into an experimental community based on a cheese rind and identified the differences in <i>E. coli'</i>s genetic requirements for growth in interactive and non-interactive contexts using Random Barcode Transposon Sequencing (RB-TnSeq) and RNASeq. Genetic requirements varied among pairwise growth conditions and between pairwise and community conditions. Our analysis points to mechanisms by which growth conditions change as a result of increasing community complexity and suggests that growth within a community relies on a combination of pairwise and higher-order interactions. Our work provides a framework for using the model organism <i>E. coli</i> as a readout to investigate microbial interactions regardless of the genetic tractability of members of the studied ecosystem.

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