4.8 Article

Evolution of the complex transcription network controlling biofilm formation in Candida species

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ELIFE
Volume 10, Issue -, Pages -

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ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.64682

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The study investigates the evolution of a complex transcription network controlling biofilm formation in Candida species over approximately 70 million years. Two major types of changes were observed: long-term master regulator substitutions leading to different sets of master regulators in different species, and short-term massive changes in connections between master regulators and target genes. This analysis provides the first detailed empirical description of how a complex transcription network has evolved.
We examine how a complex transcription network composed of seven 'master' regulators and hundreds of target genes evolved over a span of approximately 70 million years. The network controls biofilm formation in several Candida species, a group of fungi that are present in humans both as constituents of the microbiota and as opportunistic pathogens. Using a variety of approaches, we observed two major types of changes that have occurred in the biofilm network since the four extant species we examined last shared a common ancestor. Master regulator 'substitutions' occurred over relatively long evolutionary times, resulting in different species having overlapping but different sets of master regulators of biofilm formation. Second, massive changes in the connections between the master regulators and their target genes occurred over much shorter timescales. We believe this analysis is the first detailed, empirical description of how a complex transcription network has evolved.

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