Expression Profiles Reveal Parallel Evolution of Epistatic Interactions Involving the CRP Regulon in Escherichia coli
Профили экспрессии выявляют параллельную эволюцию эпистатических взаимодействий с участием регулона CRP у Escherichia coli
2008-02-12
SCID: 54.1/fkuuzqqd
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CRP regulonEscherichia coliepistatic interactionsgene expression profilesparallel evolution
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Abstract (AI)
The extent and nature of epistatic interactions between mutations are issues of fundamental importance in evolutionary biology. However, they are difficult to study and their influence on adaptation remains poorly understood. Here, we use a systems-level approach to examine epistatic interactions that arose during the evolution of Escherichia coli in a defined environment. We used expression arrays to compare the effect on global patterns of gene expression of deleting a central regulatory gene, crp. Effects were measured in two lineages that had independently evolved for 20,000 generations and in their common ancestor. We found that deleting crp had a much more dramatic effect on the expression profile of the two evolved lines than on the ancestor. Because the sequence of the crp gene was unchanged during evolution, these differences indicate epistatic interactions between crp and mutations at other loci that accumulated during evolution. Moreover, a striking degree of parallelism was observed between the two independently evolved lines; 115 genes that were not crp-dependent in the ancestor became dependent on crp in both evolved lines. An analysis of changes in crp dependence of well-characterized regulons identified a number of regulatory genes as candidates for harboring beneficial mutations that could account for these parallel expression changes. Mutations within three of these genes have previously been found and shown to contribute to fitness. Overall, these findings indicate that epistasis has been important in the adaptive evolution of these lines, and they provide new insight into the types of genetic changes through which epistasis can evolve. More generally, we demonstrate that expression profiles can be profitably used to investigate epistatic interactions.
Key Findings
1
Changes in crp dependence implicated several regulatory genes as potential targets of beneficial mutations; mutations in three had previously been shown to increase fitness.
2
Deleting the unchanged crp gene produced substantially larger global gene-expression changes in two 20,000-generation evolved E. coli lines than in their common ancestor.
3
Expression profiling provides a systems-level approach for detecting evolved epistatic interactions and indicates that epistasis contributed importantly to adaptation in these E. coli populations.
4
Parallel evolution was pronounced: 115 genes that were crp-independent in the ancestor became crp-dependent in both independently evolved lines.
5
The enhanced effects of crp deletion demonstrate epistatic interactions between crp and mutations that accumulated at other loci during evolution.
Research Object
Escherichia coli lineages independently evolved for 20,000 generations in a defined environment, including their common ancestor, with the CRP regulon
Research Subject
Parallel evolution of epistatic interactions between the CRP regulon and mutations at other loci, revealed by changes in global gene-expression dependence on crp
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2008-02-12
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