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Updated: Jun 22, 2025

Perspectives on Neuroscience
Published on: July 31, 2007
Neuronal Circuit Evolution: From Development to Structure and Adaptive Significance
Nikolaos Konstantinides1, Claude Desplan2
1Université Paris Cité, CNRS, Institut Jacques Monod, F-75013 Paris, France nikos.konstantinides@ijm.fr cd38@nyu.edu.
Abstract:
Neuronal circuits represent the functional units of the brain. Understanding how the circuits are generated to perform computations will help us understand how the brain functions. Nevertheless, neuronal circuits are not engineered, but have formed through millions of years of animal evolution. We posit that it is necessary to study neuronal circuit evolution to comprehensively understand circuit function. Here, we review our current knowledge regarding the mechanisms that underlie circuit evolution. First, we describe the possible genetic and developmental mechanisms that have contributed to circuit evolution. Then, we discuss the structural changes of circuits during evolution and how these changes affected circuit function. Finally, we try to put circuit evolution in an ecological context and assess the adaptive significance of specific examples. We argue that, thanks to the advent of new tools and technologies, evolutionary neurobiology now allows us to address questions regarding the evolution of circuitry and behavior that were unimaginable until very recently.
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