A neurodevelopmental origin of behavioral individuality in the <i>Drosophila</i> visual system.

Linneweber, Gerit Arne; Andriatsilavo, Maheva; Dutta, Suchetana Bias; Bengochea, Mercedes; Hellbruegge, Liz; Liu, Guangda; Ejsmont, Radoslaw K; Straw, Andrew D et al. · Science · 2020

basic_science · Level V

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Abstract

The genome versus experience dichotomy has dominated understanding of behavioral individuality. By contrast, the role of nonheritable noise during brain development in behavioral variation is understudied. Using <i>Drosophila melanogaster</i>, we demonstrate a link between stochastic variation in brain wiring and behavioral individuality. A visual system circuit called the dorsal cluster neurons (DCN) shows nonheritable, interindividual variation in right/left wiring asymmetry and controls object orientation in freely walking flies. We show that DCN wiring asymmetry instructs an individual's object responses: The greater the asymmetry, the better the individual orients toward a visual object. Silencing DCNs abolishes correlations between anatomy and behavior, whereas inducing DCN asymmetry suffices to improve object responses.

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