Comparative Analysis of Gene Regulatory Networks: From Network Reconstruction to Evolution

Author:

Thompson Dawn1,Regev Aviv12,Roy Sushmita34

Affiliation:

1. Broad Institute of MIT and Harvard, Cambridge, Massachusetts 02142

2. Howard Hughes Medical Institute and Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02140

3. Department of Biostatistics and Medical Informatics, University of Wisconsin–Madison, Madison, Wisconsin 53715;

4. Wisconsin Institute for Discovery, University of Wisconsin–Madison, Madison, Wisconsin 53715

Abstract

Regulation of gene expression is central to many biological processes. Although reconstruction of regulatory circuits from genomic data alone is therefore desirable, this remains a major computational challenge. Comparative approaches that examine the conservation and divergence of circuits and their components across strains and species can help reconstruct circuits as well as provide insights into the evolution of gene regulatory processes and their adaptive contribution. In recent years, advances in genomic and computational tools have led to a wealth of methods for such analysis at the sequence, expression, pathway, module, and entire network level. Here, we review computational methods developed to study transcriptional regulatory networks using comparative genomics, from sequence to functional data. We highlight how these methods use evolutionary conservation and divergence to reliably detect regulatory components as well as estimate the extent and rate of divergence. Finally, we discuss the promise and open challenges in linking regulatory divergence to phenotypic divergence and adaptation.

Publisher

Annual Reviews

Subject

Cell Biology,Developmental Biology

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