International audienceA central biological question is how natural organisms are so evolvable (capable of quickly adapting to new environments). A key driver of evolvability is the widespread modularity of biological networks—their organization as functional, sparsely connected subunits—but there is no consensus regarding why modularity itself evolved. Although most hypotheses assume indirect selection for evolvability, here we demonstrate that the ubiquitous, direct selection pressure to reduce the cost of connections between network nodes causes the emergence of modular networks. Computational evolution experiments with selection pressures to maximize network performance and minimize connection costs yield networks that are significantly ...
I introduce a novel method for evolving modularity in gene regulatory networks. Like previous models...
Many believe that an essential component for the discovery of the tremendous diversity in natural or...
A central question in brain evolution is how species-typical behaviors, and the neural function-stru...
A central biological question is how natural organisms are so evolvable (capable of quickly adapting...
Some biologists have abandoned the idea that computational efficiency in processing multipart tasks ...
Biological networks have evolved to be highly functional within uncertain environments while remaini...
By analyzing complex biological networks, I explore the nascent field of systems biology to address ...
Complex biological networks have very different origins than technologic ones. The latter involve ex...
Modularity is a widespread property in biological systems. It implies that interactions occur mainly...
Biological networks have evolved to be highly functional within uncertain environments while remaini...
Modularity is a major feature of biological central nervous systems. For ex-ample, the human/primate...
<div><p>Modularity is a widespread property in biological systems. It implies that interactions occu...
Evolution’s ability to find innovative phenotypes is an important ingredient in the emergence of com...
Hierarchical organization—the recursive composition of sub-modules—is ubiquitous in biological netwo...
International audienceHierarchical organization—the recursive composition of sub-modules—is ubiquito...
I introduce a novel method for evolving modularity in gene regulatory networks. Like previous models...
Many believe that an essential component for the discovery of the tremendous diversity in natural or...
A central question in brain evolution is how species-typical behaviors, and the neural function-stru...
A central biological question is how natural organisms are so evolvable (capable of quickly adapting...
Some biologists have abandoned the idea that computational efficiency in processing multipart tasks ...
Biological networks have evolved to be highly functional within uncertain environments while remaini...
By analyzing complex biological networks, I explore the nascent field of systems biology to address ...
Complex biological networks have very different origins than technologic ones. The latter involve ex...
Modularity is a widespread property in biological systems. It implies that interactions occur mainly...
Biological networks have evolved to be highly functional within uncertain environments while remaini...
Modularity is a major feature of biological central nervous systems. For ex-ample, the human/primate...
<div><p>Modularity is a widespread property in biological systems. It implies that interactions occu...
Evolution’s ability to find innovative phenotypes is an important ingredient in the emergence of com...
Hierarchical organization—the recursive composition of sub-modules—is ubiquitous in biological netwo...
International audienceHierarchical organization—the recursive composition of sub-modules—is ubiquito...
I introduce a novel method for evolving modularity in gene regulatory networks. Like previous models...
Many believe that an essential component for the discovery of the tremendous diversity in natural or...
A central question in brain evolution is how species-typical behaviors, and the neural function-stru...